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The“Last-mile Efforts”of Subseasonal Prediction and Services for Climate Resilience and Sustainability:Review and Outlook 认领 引用 被引量:1
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作者 Jing YANG Mengqian LU +26 位作者 Anling LIU Tat Fan CHENG Yuxian PAN Miaoni GAO Lun DAI Shentong LI Wen DENG Xinyao FENG Shiyu ZHANG Lu TANG Lujia ZHANG Han LI Tao ZHU Qing BAO Andrew W.ROBERTSON Tsz-cheung LEE Frederic VITART Ping LIANG Jun JIAN Linlin PAN Upmanu LALL Stacey NEW Lei WANG Qichao YAO Xiaolong JIA Xi LIANG Yaochi SU 《Advances in Atmospheric Sciences》 SCIE CAS CSCD 2026年第6期1103-1131,共29页
Subseasonal predictions from 2 weeks to 2 months have made significant advancements over the past decade,driven by progress in physical understanding,climate modeling,computational capabilities,and artificial intellig... Subseasonal predictions from 2 weeks to 2 months have made significant advancements over the past decade,driven by progress in physical understanding,climate modeling,computational capabilities,and artificial intelligence(AI).These predictions are increasingly in demand due to their potential to provide stakeholders with adequate lead time for effective disaster adaptation,mitigation,and resource management.However,there remain critical gaps in the engagement between prediction providers and service users.Providers often lack insight into the specific needs of users and do not have transferrable strategies to build trust through tailored evaluations and clear confidence levels,which often results in repeatedly devising approaches for each provider–user interaction.Further,users frequently struggle to interpret predictions and are hesitant to make decisions based on these uncertain outcomes.This paper attempts to make“last-mile efforts”by reviewing relevant literature,operational systems,and the most informative communications and engagement strategies with key sectors.It proposes a preliminary framework to standardize the approach for provider–user interaction in the context of subseasonal prediction and services,with potential applicability and extension to seamless prediction systems in the future.Lastly,we underscore future directions for subseasonal predictions,emphasizing the integration of dynamic climate modeling and AI-driven enhancements with large ensemble techniques to improve both reliability and confidence.This review is part of the United Nations Educational Scientific and Cultural Organization(UNESCO)International Decade of Sciences for Sustainable Development(2024–33)and contributes to the Seamless Prediction and Services for Sustainable Natural and Built Environment(SEPRESS)Program(2025–32),an initiative endorsed under this global framework. 展开更多
关键词 subseasonal prediction climate services last-mile efforts actionable map disaster risk reduction sustainability climate dynamical-AI framework
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Exploring strategies for agricultural sustainability in super hybrid rice using the food–carbon–nitrogen–water–energy–profit nexus framework 认领 引用
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作者 Jun Deng Ke Liu +8 位作者 Xiangqian Feng Jiayu Ye Matthew Tom Harrison Peter de Voil Tajamul Hussain Liying Huang Xiaohai Tian Meixue Zhou Yunbo Zhang 《Journal of Integrative Agriculture》 SCIE CAS CSCD 2026年第2期624-638,共15页
The breakthrough in super hybrid rice yield has significantly contributed to China’s and global food security.However,the inherent conflict between high productivity and environmentally sustainable agriculture poses ... The breakthrough in super hybrid rice yield has significantly contributed to China’s and global food security.However,the inherent conflict between high productivity and environmentally sustainable agriculture poses substantial challenges.Issues such as water scarcity,energy crises,escalating greenhouse gas emissions,and diminishing farm profitability threaten longterm agricultural sustainability.In response,we applied a holistic food–carbon–nitrogen–water–energy–profit (FCNWEP)nexus framework to comprehensively assess the sustainability of distinct crop management strategies across three subsites in Central China.Field experiments were conducted in Hubei and Hunan provinces from 2017 to 2021 using a widely adopted elite super hybrid rice cultivar (Y-liangyou 900).Four crop management treatments were implemented:a control(CK,0 kg N ha-1),conventional crop management (CCM,210–250 kg N ha-1,7:3 basal:mid-tiller fertilizer ratio),and two integrated crop management (ICM) treatments (ICM1,180–210 kg N ha-1,5:2:3 basal:mid-tiller:panicle initiation fertilizer ratio;ICM2,240–270 kg N ha-1,5:2:2:1 basal:mid-tiller:panicle initiation:flowering fertilizer ratio).Variables assessed included grain yield,carbon footprint,nitrogen footprint,water footprint,energy footprint,nitrogen use efficiency,and economic benefits.Our results showed significant yield variations,with ICM2 consistently outperforming CCM and ICM1across all three sites.In Jingzhou,Suizhou,and Changsha,ICM2’s grain yield was 30.2,24.7,and 13.3%higher than CCM,respectively.Net profits under ICM2 exceeded those of CCM and ICM1 by 31.8 and 115.2%in Jingzhou,32.2 and 109.9%in Suizhou,and 15.4 and 34.0%in Changsha,respectively.Integrated crop management,particularly ICM2,demonstrated improved nitrogen and energy use efficiency,leading to reduced carbon,nitrogen,water,and energy footprints.Overall,composite sustainability scores derived from the FCNWEP framework indicated that both ICM2 and ICM1 exhibited higher sustainability levels compared to CCM.This study provides valuable insights into practical management methodologies and offers recommendations for enhancing agricultural sustainability. 展开更多
关键词 super hybrid rice ecological footprint rice production integrated crop management sustainability
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Groundwater hydrodynamics and supply sustainability in Punjab,Pakistan:A geological statistical approach using the GAMEAS algorithm based on data from 1105 boreholes 认领 引用
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作者 Muhammad Afzal Tie Liu +6 位作者 An-ming Bao Xi Chen Xiao-hui Pan Solange Uwamahoro Ahmad Mujta Adeel Ahmed Nadeem Asim Qayyum Butt 《China Geology》 CAS CSCD 2026年第1期44-59,共16页
Effective groundwater management is crucial for economic sustainable development,particularly as climate change and population growth increase the uncertainty of aquifer dynamics.Due to limited geological data,Punjab&... Effective groundwater management is crucial for economic sustainable development,particularly as climate change and population growth increase the uncertainty of aquifer dynamics.Due to limited geological data,Punjab's complex hydrogeological conditions and Quaternary alluvial deposits present significant challenges for groundwater management.This study employs cost-effective numerical techniques as alternatives to traditional methods to safeguard groundwater quality,quantity,and accessibility.It introduces an edit-embedded transition frequency model that integrates regional datasets and utilizes algorithms such as GAMEAS,MCMOD,and TSIM to evaluate aquifer heterogeneity and simulate spatial variations using one-dimensional and three-dimensional Markov chains.Findings show that sand exhibits the highest self-transition(33.112 m),indicating strong stability,followed by silt,clay,and gravel,suggesting overall hydrofacies stability both horizontally and vertically.The model's predictions are largely consistent with actual material distribution,with a slight under-prediction of clay(-0.750%)and an over-prediction of sand(2.985%),which accounts for 58.77%of the aquifer material.It also highlights significant heterogeneity in the northern mountainous regions and minor variations in the south.The study emphasizes Punjab's severe water crisis,with groundwater reserves of 3502.3 BCM,declining water levels(0.38–33.62 m),and low hydraulic conductivity,urging government action on rainwater harvesting and sustainable groundwater management policies. 展开更多
关键词 Groundwater management Economic sustainable development T-progs modelling Aquifer heterogeneity Groundwater sustainability Environment degradation Catchment recharging
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Land system science for global environmental change and sustainability:Advances,challenges,and future directions 认领 引用
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作者 Ronald C.Estoque Jianguo Wu Peter H.Verburg 《Geography and Sustainability》 CSCD 2026年第2期7-18,共12页
Land System Science(LSS)has evolved as a core interdisciplinary field within human-environment system re search,with a particular focus on land use and land cover change(LUCC).This article reviews the emergence of LSS... Land System Science(LSS)has evolved as a core interdisciplinary field within human-environment system re search,with a particular focus on land use and land cover change(LUCC).This article reviews the emergence of LSS,explores its roles in social-ecological research on global environmental change and sustainability,and dis cusses its challenges and future directions.We develop a conceptual framework that highlights the role of LSS in informing sustainable land management and assessing its impacts on interrelated social-ecological goals(sustain ability,resilience,and quality of life,including wellbeing)for transformative planning and governance.To ensure the continued progress of the field and its ability to address evolving global challenges,LSS needs to better imple ment a systems-based approach through novel methodological developments,deepen the understanding of LUCC complexities,emphasize strong sustainability,bridge global-local gaps,and enhance the science-policy interface.In addition,while LSS is inherently interdisciplinary,its progress requires further broadening and deepening of collaboration and integration among contributing disciplines. 展开更多
关键词 Land useandlandcover Land change Deforestation Cropland expansion Urbanization Human-environment system Sustainability
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Sustainability trade-offs at the nexus of solar energy,agriculture,and biodiversity 认领 引用
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作者 Adam Gallaher Theodore Koch +2 位作者 Elizabeth L.Kalies Peter B.Woodbury Steven M.Grodsky 《Geography and Sustainability》 CSCD 2026年第3期292-304,共13页
A rapid transition to renewable energy is necessary for achieving global decarbonization targets,but siting conflicts,particularly beyond the built environment,remain a key barrier to sustainable development.At the sa... A rapid transition to renewable energy is necessary for achieving global decarbonization targets,but siting conflicts,particularly beyond the built environment,remain a key barrier to sustainable development.At the same time,climate-induced pressures on biodiversity intensify the socio-ecological trade-offs within the energyagriculture-biodiversity nexus.Using New York State as a case study,we assess the geographic implications of utility-scale solar energy development under competing land-use priorities.We apply a mixed-integer linear programming(MILP)optimization model to evaluate solar buildout across three distinct scenarios:minimizing cost,prioritizing agricultural preservation,and conserving biodiversity,employing a lexicographic hierarchy to enforce a strict ordering of stakeholder priorities.Results indicate that New York can meet its mid-century decarbonization goals by deploying 46,216 MWdc of solar energy,however,achieving this goal involves considerable land-use trade-offs.A cost-minimizing scenario disproportionately targets pasture and hay lands(>40,000 ha),nearly half of which overlap with grassland bird habitat and broader biodiversity areas.Prioritizing agriculture spares~80% of farmland but creates potential for deforestation of over 41,000 ha.Biodiversity-conscious siting avoids ecologically sensitive areas and increases the annualized total costs by 0.17%,indicating economic feasibility.Our findings highlight the need for spatially informed,integrative land-use strategies that reconcile climate goals with ecological and agricultural values.By linking geospatial optimization with socio-ecological criteria,this work contributes a transferable framework to inform just and ecologically responsible energy transitions in multifunctional landscapes,offering new insights into how geography can advance sustainable development. 展开更多
关键词 Biodiversity Energy transition Agriculture Renewable energy Technical potential Sustainability trade-offs Land-use change
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Global capacity of dietary sustainability to deal with climate change 认领 引用
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作者 Rui Zhao Xia Li +10 位作者 Zhenci Xu Fengting Li Ying Wang Haijun Wang Peng Zhu Zhimeng Jiang Qiang Ren Zhongbin B.Li Meiyu Xiong Nan Jia Yihui Ding 《Geography and Sustainability》 CSCD 2026年第3期164-174,共11页
The blueprint for feeding the world’s population within the planetary boundaries is to build“capacity of dietary sustainability”—everyone can access and afford a healthy and environmentally friendly diet with rela... The blueprint for feeding the world’s population within the planetary boundaries is to build“capacity of dietary sustainability”—everyone can access and afford a healthy and environmentally friendly diet with relatively greater stability under global shocks such as climate change.But the global capacity of dietary sustainability to deal with climate change remains unknown.Here we developed a novel framework to evaluate dietary sustainability and assess capacity of dietary sustainability to deal with climate change in nutritional security(Capacitynut),social equity(Capacitysoc),and environmental protection(Capacityenv)dimensions,based on publicly available dietary sustainability data and climate change data from websites.Descriptive statistics results showed that the average score for the three capacities in rural areas was 7.32% higher than in urban areas,and that the Gini coefficient for the three capacities in urban areas was 28%higher than in rural areas.Urban areas showed stronger synergy between Capacitynut and Capacitysoc than rural areas,with a Pearson coefficient of 0.622 in urban areas and 0.436 in rural areas.Education was the most important factor for Capacitysoc,with a standardized coefficient of 0.401;distance food trade was the most important factor for Capacityenv,with a standardized coefficient of 0.500.By 2100,the average score for the three capacities was expected to increase by 39.36%to 63.64%.Our results demonstrate the essence of targeted efforts in urban areas and stable international food trade for enhancing capacity of dietary sustainability to deal with climate change globally. 展开更多
关键词 Dietary sustainability Climate change Evaluation framework Spatial patterns Synergy and trade-offs Scenario analysis
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Recent Efforts on the Compressive and Tensile Strength Behavior of Thermoplastic-Based Recycled Aggregate Concrete toward Sustainability in Construction Materials 认领 引用
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作者 Mahmoud Alhashash Abdullah Alariyan +3 位作者 Ameen Mokhles Youns Favzi Ghreivati Ahed Habib Maan Habib 《Structural Durability & Health Monitoring》 EI 2026年第1期23-46,共24页
Concrete production often relies on natural aggregates,which can lead to resource depletion and environmental harm.In addition,improper disposal of thermoplastic waste exacerbates ecological problems.Although signific... Concrete production often relies on natural aggregates,which can lead to resource depletion and environmental harm.In addition,improper disposal of thermoplastic waste exacerbates ecological problems.Although significant attention has recently been given to recycling various waste materials into concrete,studies specifically addressing thermoplastic recycled aggregates are still trending.This underscores the need to comprehensively review existing literature,identify research trends,and recognize gaps in understanding the mechanical performance of thermoplastic-based recycled aggregate concrete.Accordingly,this review summarizes recent investigations focused on the mechanical properties of thermoplastic-based recycled aggregate concrete,emphasizing aspects such as compressive strength,tensile behavior,modulus of elasticity,and durability characteristics.The primary aim is to consolidate scattered research findings,identify key parameters influencing mechanical behavior,and propose future research directions.Understanding the influence of recycled thermoplastic aggregates on concrete performance significantly supports sustainable construction practices by reducing dependency on virgin aggregates and mitigating environmental impacts associated with waste disposal.In addition,assessing mechanical performance contributes to confidence in the practical application,encouraging the broader adoption of thermoplastic-based recycled aggregate concrete in construction projects.Through this critical synthesis,the review guides researchers and industry practitioners toward informed decisions on the feasibility and reliability of integrating thermoplastic waste into concrete,thereby promoting sustainable infrastructure development. 展开更多
关键词 Thermoplastic recycling aggregates concrete sustainability
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Sustainability in foot and ankle surgery:Top tips and review of practices 认领 引用
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作者 Soorya Siva Charlotte Mathews +1 位作者 Turab Syed Efstathios Drampalos 《World Journal of Orthopedics》 2026年第5期35-39,共5页
Orthopaedic surgery,particularly in foot and ankle procedures,generates significant waste,with the World Health Organization highlighting the potential for greener healthcare to benefit patient and worker health.This ... Orthopaedic surgery,particularly in foot and ankle procedures,generates significant waste,with the World Health Organization highlighting the potential for greener healthcare to benefit patient and worker health.This article reviews sustainability in foot and ankle surgery through the three pillars:Environmental,social,and economic.It examines cost-effective surgical practices,resource utilization,and operating theatre routines,noting the environmental impact of orthopaedic surgeries,such as the carbon emissions of up to 23.96 kg per lower limb arthroplasty.A gap in sustainability research specific to foot and ankle surgery was identified.Based on a narrative literature review of relevant studies,recommendations were developed for more sustainable practices in foot and ankle operations,including theatre practices,pre-operative setup,and postoperative care.The review collaborates existing literature to provide practical recommendations for optimizing surgical outcomes while reducing environmental impact. 展开更多
关键词 Foot and ankle Sustainability Orthopaedic surgery Green surgery Planet
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Green transplant:A scoping review of sustainability challenges and opportunities in transplantation 认领 引用
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作者 Angeliki Emmanouilidou Eleni Avramidou +3 位作者 Filippos F Karageorgos Nikolaos-Andreas Anastasopoulos Vassilios Papalois Georgios Tsoulfas 《World Journal of Transplantation》 2026年第1期63-74,共12页
Green transplant refers to the realization of the importance of understanding and improving the environmental footprint of transplantation through sustainable practices.This involves assessing the entire transplantati... Green transplant refers to the realization of the importance of understanding and improving the environmental footprint of transplantation through sustainable practices.This involves assessing the entire transplantation process including preoperative evaluation,donation,organ and patient transportation,surgery,postoperative recovery,and follow-up.This is a topic that has not been fully addressed yet,but its importance is being increasingly appreciated in surgery.The aim of this study was to investigate the carbon footprint associated with transplantation and propose sustainable mitigating solutions.A comprehensive review of the existing literature on transplantation was conducted and supplemented with findings from the broader fields of surgical and perioperative care,given the scarcity of available data.The analysis identified the most involved environmental factors and attempted to offer practical solutions based on current sustainability practices.Notably,no study has yet examined the carbon footprint associated with the entire transplantation procedure.Only five studies have attempted to assess the environmental impact of kidney or liver transplants,but they focused,almost explicitly,on specific steps of the process.By employing an extrapolative methodology from the broader surgical field,we determined that the primary contributors to the environmental impact of transplantation are energy,consumables and materials,anesthesia and pharmaceuticals,transportation,and water.This review offers practical solutions utilizing the 5R framework,emphasizing sustainability to ensure transplantation remains clinically and environmentally relevant. 展开更多
关键词 Green transplantation Sustainability Environmental impact Carbon footprint Review
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Renewable Energy and Urban Sustainability Using the Siemens Green City Index:Comprehensive Review 认领 引用
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作者 Media Nadhim Mahmood Oday I.Abdullah Amani I.Altmimi 《Energy Engineering》 EI 2026年第7期578-597,共20页
The highly important requirement for achieving urban sustainability for any city is the availability of renewable energy,as reducing carbon emissions is considered one of the most important factors in improving the qu... The highly important requirement for achieving urban sustainability for any city is the availability of renewable energy,as reducing carbon emissions is considered one of the most important factors in improving the quality of life and health of people in green cities.The main objective of this research is to provide an in-depth study and analysis of the role of renewable energies,especially solar energies,in promoting sustainable development in cities around the world,in general,and in Iraq in particular.Strategies for using clean energy sources in a hybrid manner,such as solar energy,wind energy,and bioenergy,in urban infrastructure were analyzed.The focus was also on highlighting the most important challenges associated with the transformation of traditional cities into semi-green or green cities that depend primarily or largely on renewable energy,with a focus on the environmental,economic,and social benefits or importance of this transformation.A comprehensive picture was provided on how to apply the Siemens Green Cities Index as a promising assessment tool or benchmark for city performance,in addition to highlighting the criteria of staff efficiency,carbon emissions,environmental resource management,and analyzing the extent to which global urban policy and planning are compatible with the index criteria.Finally,the necessary proposals and recommendations were presented to enhance the use of available renewable energies in cities,as this will contribute significantly to achieving a large percentage of sustainable development goals.This study is considered the cornerstone for providing a roadmap for decision-makers and companies to develop or transform traditional cities into cities that rely on renewable energy,and it also contributes to the transformation or improvement of the environmental and economic levels in the world. 展开更多
关键词 Renewable energy green cities urban sustainability siemens green city index sustainable development carbon emissions reduction
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Has the Belt and Road Initiative reshaped the ecological sustainability of Eurasia:A perspective of three-dimensional ecological footprint 认领 引用
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作者 Nan Yu Tianming Shao +1 位作者 Renjin Sun Chunming Xu 《Petroleum Science》 SCIE EI CAS CSCD 2026年第3期1553-1571,共19页
At present,environmental problems are becoming increasingly severe,and sustainable development concerns the common destiny of all mankind around the world.Leveraging ecological footprint and ecological carrying capaci... At present,environmental problems are becoming increasingly severe,and sustainable development concerns the common destiny of all mankind around the world.Leveraging ecological footprint and ecological carrying capacity data for Eurasia from 2000 to 2022,this study employs a three-dimensional ecological footprint model to conduct a multi-scale sustainability assessment.Further applying a difference-in-differences model,we analyze the impact mechanisms of the Belt and Road Initiative on Eurasia's ecological footprint.Quantile regression and heterogeneity analysis reveal Belt and Road Initiative's differential effects across countries.Key findings indicate that:(1)Eurasia's unsustainable development intensified from 2000 to 2022,with ecological footprint depth rising from 1.966 to 2.513 ha/cap,while per capita ecological footprint size declined slightly from 1.092 to 1.023 ha/cap.(2)Classifying 83 countries into 9 sustainability types based on ecological footprint depth and size,Asia showed weak sustainability(low size-medium depth and low size-low depth types),while Europe was primarily low size-medium depth with relatively stronger sustainability.Six countries experienced weakened sustainability and six improved.(3)The Belt and Road Initiative significantly increased ecological footprint in Eurasian countries,mediated by industrial structure,technological innovation,and foreign direct investment.Quantile regression indicates Belt and Road Initiative's effect is stronger in nations with lower initial ecological footprint.Heterogeneity analysis further shows Belt and Road Initiative disproportionately impacts countries with lower ecological footprint depth,smaller per capita ecological footprint size,and weaker sustainability.These insights provide critical guidance for implementing the UN 2030 Agenda and formulating Belt and Road Initiative policies to enhance long-term sustainability. 展开更多
关键词 Ecological footprint Eurasia The Belt and Road initiative Difference-in-differences Sustainable development
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Pseudomonadota:Biodiversity,functional annotation for plant growth and biotechnological applications for agro-environmental sustainability 认领 引用
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作者 Rajeshwari Negi Babita Sharma +9 位作者 Tanvir Kaur S.Renuka Jyothi Anirudh Gupta Neelam Thakur Samiksha Jhamta Suchitra Rathore Neelam Yadav Manish Kapoor Sangram Singh Ajar Nath Yadav 《Ecological Frontiers》 CSCD 2026年第2期459-474,共16页
Pseudomonadota represent a diverse and ecologically significant group of microbes renowned for their metabolic ver-satility,resilience,and beneficial interactions with plants.As key plant growth promoting(PGP)microorg... Pseudomonadota represent a diverse and ecologically significant group of microbes renowned for their metabolic ver-satility,resilience,and beneficial interactions with plants.As key plant growth promoting(PGP)microorganisms,they enhance agricultural productivity through multiple mechanisms,including nutrient solubilization,phytohormones modulation,stress alleviation,and biocontrol of pathogens.Beyond their classical PGP functions,Pseudomonadota offer emerging biotechnological applications as biofertilizers and biopesticides,reducing reliance on synthetic agro-chemicals and mitigating environmental pollution.Their roles in bioremediation,heavy metal detoxification,and pes-ticide degradation further highlight their ecological value in restoring soil health and enhancing crop resilience under stress prone conditions.Recent advances in genomics,synthetic biology,and microbial biotechnology have expanded their utility in precision agriculture,enabling the design of tailored inoculants for specific crops and environments.The present review highlights current knowledge on the biodiversity,functional mechanisms,and applied potential of Pseudomonadota,while also addressing biosafety and ecological considerations.By integrating these microbes into modern agricultural practices,Pseudomonadota can serve as pivotal agents in climate-resilient,sustainable farming systems,contributing to global food security and reduced ecological footprints. 展开更多
关键词 Biodiversity Pseudomonadota Mechanisms Sustainability
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Eco-Innovation in Transportation:Linking Smart Vehicle Technologies with Environmental Sustainability 认领 引用
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作者 Yan Xie Mengwei Yang 《Journal of Environmental & Earth Sciences》 CAS 2026年第3期126-153,共28页
The decarbonization of transportation and environmental quality enhancement have become more and more reliant on eco-innovation,which incorporates both technological change and systemic coordination and governance.The... The decarbonization of transportation and environmental quality enhancement have become more and more reliant on eco-innovation,which incorporates both technological change and systemic coordination and governance.The review is a summary of the evidence that can be translated into environmental sustainability outcomes on how smart vehicle technologies,including electrified powertrains and vehicle-grid interfaces,connected and cooperative systems(Vehicleto-Everything,V2X),automation and advanced automation,and Artificial Intelligence(AI)-enabled optimization can be transformed.Using a structured analytical framework linking technology capability to eco-innovation mechanisms and sustainability impacts,we reconcile findings across operational,well-to-wheel,and life-cycle boundaries.The literature indicates that electrification delivers strong local air-quality benefits and,in most contexts,substantial climate gains,but net outcomes depend on grid carbon intensity,charging time profiles,battery production,and end-of-life pathways,making managed charging and circularity pivotal complements.Connectivity and cooperative control improve energy efficiency primarily through coordination effects such as traffic smoothing,eco-routing,and platooning,yet benefits are non-linear and sensitive to penetration rates and infrastructure interoperability.Automation offers efficiency and safety co-benefits but exhibits the widest uncertainty because induced demand,empty travel,and mode substitution can offset per-vehicle improvements.AI-driven fleet optimization can reduce empty miles and extend component life,although computational and hardware overhead and rapid obsolescence can introduce trade-offs.We identify persistent gaps in comparability,non-exhaust emissions assessment,causal evaluation at scale,and equity-aware impact metrics,and propose a research and policy agenda emphasizing integrated Life Cycle Assessment(LCA)system modeling,standardized reporting,interoperable data governance,and demand management to secure durable environmental gains. 展开更多
关键词 Eco-Innovation Smart Vehicles Vehicle Electrification Connected and Automated Mobility Life-Cycle Sustainability
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Nature-Based Water Treatment Systems:Global Progress,Performance Metrics,and Sustainability Outcomes 认领 引用
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作者 Hong Wang 《Journal of Environmental & Earth Sciences》 CAS 2026年第3期51-70,共20页
Nature-based water treatment systems are becoming a promising substitute to conventional wastewater treatment technologies because of their potential to advance water quality while providing larger environmental and s... Nature-based water treatment systems are becoming a promising substitute to conventional wastewater treatment technologies because of their potential to advance water quality while providing larger environmental and socio-economic benefits.This review provides a comprehensive synthesis of global performance metrics,progress,and sustainability aids linked with these systems.The study tracks a structured narrative review approach,drawing on peer-reviewed literature from the main scientific databases published primarily over the past decade.Articles were chosen based on their relevance to system typology,treatment performance,implementation context,and sustainability assessment.The review evaluates a wide range of systems,including constructed wetlands,biofiltration and bioretention systems,riparian buffers,floodplain restoration interventions,floating treatment wetlands,and hybrid nature-engineered solutions.In different climatic and socio-economic conditions,these systems establish substantial pollutant removal capability,generally obtaining organic matter and suspended solids removal efficiencies above 70–90%,nutrient reductions normally ranging from 40–80%,and variable pathogen attenuation depending on hydraulic and environmental conditions.Performance,however,is strongly influenced by design configuration,hydraulic loading,substrate properties,vegetation composition,and climatic variability.Beyond treatment effectiveness,the synthesis highlights the multifunctional sustainability outcomes of nature-based systems,including reduced energy and chemical inputs,enhanced biodiversity,climate resilience,and improved social and landscape values.By combining global execution trends with relative sustainability perspectives,this review provides new insights into the scalability,long-term performance,and ecosystem-service integration of nature-based water treatment systems within future resilient water management strategies. 展开更多
关键词 Nature-Based Water Treatment Constructed Wetlands Water Quality Performance Sustainability Outcomes Ecosystem Services
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Longevity as a Predictor of Sustainability Intentions 认领 引用
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作者 Felita M.Salvacion Gwi-gon Kim 《Psychology Research》 2026年第1期22-32,共11页
This study examines the impact of increased life expectancy on sustainability intentions employing a mixed-method approach with 300 respondents.Findings reveal that 75%of the respondents perceive and value environment... This study examines the impact of increased life expectancy on sustainability intentions employing a mixed-method approach with 300 respondents.Findings reveal that 75%of the respondents perceive and value environmental sustainability.Longer lifespans adopt a broader time horizon,fostering a sense of responsibility toward environmental preservation for themselves and subsequent generations.Empathy for future generations mediates this relationship,enhancing the likelihood of engaging in sustainable practices.The research aims to contribute to behavioral science by demonstrating how psychological and societal factors derived from longevity.This framework has significant implications for policymakers,educators,and advocates seeking to align long-term personal well-being with global environmental goals.Part of the survey underscores strong participation from South Korea,China and Philippines with limited engagement from Western countries,suggesting potential cultural or regional variations in interest.Platforms like Kakaotalk and Facebook proved most effective in reaching respondents,particularly in Korea and the Philippines. 展开更多
关键词 longer lifespans intention Kakaotalk Facebook sustainability
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Mapping the evolution of the water-energy-food-ecosystem(WEFE)nexus:A comprehensive review of the methods,scales,and sustainability challenges 认领 引用 被引量:1
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作者 Xiyan Wang Weili Duan +5 位作者 Shan Zou Zhonghao Zhang Wei Wei Meiqing Feng Yanfeng Di Chengkun Li 《Geography and Sustainability》 CSCD 2026年第3期6-18,共13页
Worldwide crises related to water,energy,food,and ecosystems are expected in the future.Although a number of studies have focused on the water-energy-food-ecosystem(WEFE)nexus,a comprehensive review that integrates bi... Worldwide crises related to water,energy,food,and ecosystems are expected in the future.Although a number of studies have focused on the water-energy-food-ecosystem(WEFE)nexus,a comprehensive review that integrates bibliometric patterns,methodological approaches,and multi-scale applications within a unified WEFE framework remains lacking.To address this gap,this study applies the Preferred Reporting Items for Systematic Reviews and Meta-Analyses(PRISMA)systematic review protocol and conducts bibliometric and content analyses of publications from 2010 to 2024.The results show a steady increase in WEFE-related studies and a paradigm shift from the traditional water-energy-food(WEF)triad toward a four-component framework that explicitly incorporates ecosystems.Moreover,the WEF nexus remains a central research theme.Methodological approaches can be categorized into quantitative assessment,simulation and prediction,and integrated management;however,most rely on static analysis and therefore cannot sufficiently capture dynamic feedbacks.Scale-based analysis indicates that regional and urban studies dominate the field and focus on resource integration and internal resource management optimisation,respectively,whereas transboundary-scale research remains limited.This review is the first to systematically synthesize the conceptual evolution,methodological pathways,and scale-specific challenges of the WEFE nexus within a unified paradigm.Moreover,this review identifies key directions for future research,including framework standardization,multi-source data integration,and scale-appropriate governance strategies,thereby providing theoretical insights and empirical support for advancing sustainable WEFE nexus research. 展开更多
关键词 Water-energy-food-ecosystem nexus Comprehensive case studies Geographic scale Sustainable development Systematic review
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While others are still“competing on specs”,FLYTEC tackles sustainability challenges through“transparency” 认领 引用
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作者 Xiao Ying Qiu Shuchen 《China Textile》 2026年第3期9-11,共3页
At the recently announced 2026 Greendot Fashion Awards,FLYTEC has won two major awards:the"FLYTEC DEFEND Series LCA Traceable Project"received the"ESG Concept Communication Award",and the"FLYT... At the recently announced 2026 Greendot Fashion Awards,FLYTEC has won two major awards:the"FLYTEC DEFEND Series LCA Traceable Project"received the"ESG Concept Communication Award",and the"FLYTEC Reshaping Wool"fabric won the"Best Technology Innovation Award".For this company,this is more than just an honor.It shows that the team,which has been almost obsessed with sustainable practices for the past few years,has finally been recognized by the industry. 展开更多
关键词 fashion awards defend series lca traceable projectreceived ESG concept communication sustainable practices transparency reshaping woolfabric sustainability
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Evaluation and Forecasting of Water Sustainability in China Under Shared Socio-economic Pathways 认领 引用 被引量:1
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作者 SONG Song XIE Yufeng +2 位作者 WANG Zeyu YANG Jinxin YANG Zhiqi 《Chinese Geographical Science》 SCIE CSCD 2025年第4期675-692,共18页
Water resources play a fundamental role in maintaining ecosystem well-being and supporting socio-economic progress.Nevertheless,the water sustainability confronts unprecedented challenges exacerbated by climate change... Water resources play a fundamental role in maintaining ecosystem well-being and supporting socio-economic progress.Nevertheless,the water sustainability confronts unprecedented challenges exacerbated by climate change and human interventions.This research establishes a comprehensive evaluation framework aligned with the United Nations'Sustainability Development Goals(SDGs)to assess water sustainability across 30 Chinese provinces,municipalities,and autonomous regions(excluding Xizang,Hong Kong,Macao and Taiwan).By integrating natural,economic,and social factors,this research elucidated the spatiotemporal evolution patterns of water sustainability from 2010 to 2020,and projected future trajectories under diverse socio-economic pathways(SSPs)for 2030 and 2050.The main findings include:1)China's water sustainability demonstrated gradual improvement during 2010–2020,yet baseline levels remain suboptimal for achieving SDG targets in 2030.Projections suggest significant enhancements by 2050,particularly under the SSP1-2.6 sustainability-oriented scenario.2)Persistent regional disparities are evident,with acute sustainability deficits observed in densely populated,intensively cultivated northern and the arid northwestern territories.These disparities are projected to attenuate by 2050.3)Natural ecological processes emerge as the dominant contributor to water sustainability,with projected growth potential.Economic processes constitute a secondary driver,while social dimensions exhibit more limited influence,both displaying heterogeneous developmental trajectories.4)SDG 6.4(Water Use Efficiency)demonstrates the highest implementation efficiency,whereas SDG 6.3(Water Quality)and SDG 15.1(Terrestrial Ecosystem Conservation)require urgent policy interventions.This study demonstrates the applicability of the proposed SDGs-aligned framework in diagnosing China's water sustainability challenges,providing actionable insights for regional policy prioritization.The interdisciplinary methodology bridges scientific analysis and governance strategies,enabling robust decision-making under complex future uncertainties. 展开更多
关键词 Sustainability Development Goals(SDGs) water sustainability shared socio-economic pathways(SSPs) future projections China
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Long-term combined application of organic and inorganic fertilizers increases crop yield sustainability by improving soil fertility in maize-wheat cropping systems 认领 引用 被引量:8
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作者 Jinfeng Wang Xueyun Yang +3 位作者 Shaomin Huang Lei Wu Zejiang Cai Minggang Xu 《Journal of Integrative Agriculture》 SCIE CAS CSCD 2025年第1期290-305,共16页
Organic material combined with inorganic fertilizer has been shown to greatly improve crop yield and maintain soil fertility globally. However, it remains unclear if crop yield and soil fertility can be sustained in t... Organic material combined with inorganic fertilizer has been shown to greatly improve crop yield and maintain soil fertility globally. However, it remains unclear if crop yield and soil fertility can be sustained in the long term under the combined application of organic and inorganic fertilizers. Three long-term field trials were conducted to investigate the effects of organic amendments on the grain sustainable yield index(SYI), soil fertility index(SFI)and nutrient balance in maize–wheat cropping systems of central and southern China during 1991–2019. Five treatments were included in the trials: 1) no fertilization(control);2) balanced mineral fertilization(NPK);3) NPK plus manure(NPKM);4) high dose of NPK plus manure(1.5NPKM);and 5) NPK plus crop straw(NPKS). Over time, the grain yields of wheat and maize showed an increasing trend in all four fertilization treatments at the Yangling(YL) and Zhengzhou(ZZ) locations, while they declined at Qiyang(QY). The grain yield in the NPKM and 1.5NPKM treatments gradually exceeded that of the NPK and NPKS treatments at the QY site. The largest SYI was recorded in the NPKM treatment across the three sites, suggesting that inorganic fertilizer combined with manure can effectively improve crop yield sustainability. Higher SYI values were recorded at the YL and ZZ sites than at the QY site, possibly because the soil was more acid at QY. The key factors affecting grain yield were soil available phosphorus(AP) and available potassium(AK) at the YL and ZZ sites, and pH and AP at the QY site.All fertilization treatments resulted in soil N and P surpluses at the three sites, but soil K surpluses were recorded only at the QY site. The SFI was greater in the 1.5NPKM, NPKM and NPKS treatments than in the NPK treatment by 13.3–40.0 and 16.4–63.6% at the YL and ZZ sites, respectively, and was significantly higher in the NPKM and 1.5NPKM treatments than in the NPK and NPKS treatments at the QY site. A significant, positive linear relationship was found between SFI and crop yield, and SYI and nutrient balance, indicating that grain yield and its sustainability significantly increased with increasing soil fertility. The apparent N, P and K balances positively affected SFI.This study suggests that the appropriate amount of manure mixed with mineral NPK fertilizer is beneficial to the development of sustainable agriculture, which effectively increases the crop yield and yield sustainability by improving soil fertility. 展开更多
关键词 organic amendments crop yield yield sustainability soil fertility nutrient balance
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From breadbasket to sustainability challenge:A rice-wheat system of Punjab,India 认领 引用
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作者 Anindita SARKAR 《Regional Sustainability》 CAS CSCD 2026年第4期20-36,共17页
This study is set against the backdrop of agricultural intensification in the Indian Punjab,which began with the Green Revolution in the late 1960s—an initiative originally launched to secure India's food supply ... This study is set against the backdrop of agricultural intensification in the Indian Punjab,which began with the Green Revolution in the late 1960s—an initiative originally launched to secure India's food supply after independence.Therefore,this paper examined how the policy-driven gains since the 197Os have generated long-term lock-in trade-offs across interconnected Sustainable Development Goals(SDGs),particularly within the waterenergy-food nexus.Drawing on crop area,crop yield,irrigation,and energy indicators(19702022),and groundwater extraction data(19842021),this study explored how groundwater irrigation,subsidized electricity,and assured procurement policies drove the transition to a rice-wheat system.While these interventions strengthened food security(SDG 2)and contributed to poverty reduction(SDG 1),they also created a water-energyfood nexus that has accelerated groundwater depletion,soil degradation,and environmental stress,undermining SDGs 6,7,and 12.The result showed that Punjab's agricultural trajectory is deeply shaped by public policies operating across multiple scales.These policies generated short-term productivity gains but neglected long-term ecological consequences.Therefore,Punjab offers a critical case for understanding how intensive agricultural economies experience trade-offs among SDGs.These findings emphasized the need for integrated governance that moves beyond linear policy interventions to address systemic interconnections across water,energy,and food systems.Transformative policy pathways are essential to sustain farmer livelihoods while restoring ecological balance.Punjab's experience reflects broader global challenges in regions where early agricultural intensification not only produced rapid food gains,but also deepened ecological vulnerabilities over time.Understanding this trajectory is vital for informing transitions toward more sustainable,climate-resilient farming systems that can meet productivity needs while advancing environmental goals. 展开更多
关键词 Green Revolution Sustainable Development Goals(SDGs) Water-energy-food nexus Groundwater irrigation Subsidized electricity
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