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[96]Cao L,Tang Y,Cai B*,Wu P,Zhang Y,Zhang F,Xin B,Lv C,Chen K,Fang K*.Was it better or worse?Simulating the environmental and health impacts of emissions trading scheme in Hubei Province,China.Energy,2021,217:119427.DOI:10.1016/j.energy.2020.119427.(SCI Q1)
[95]Fang K,Wang S,He J,Song J,Fang C,Jia X*.Mapping the environmental footprints of nations partnering the Belt and Road Initiative.Resources,Conservation and Recycling,2021,164.DOI:10.1016/j.resconrec.2020.105068.(SCI Q1)
[94]Lu Q,Fang K*,Heijungs R,Feng K,Li J,Wen Q,Li Y,Huang X*.Imbalance and drivers of carbon emissions embodied in trade along the Belt and Road Initiative.Applied Energy,2020,280.DOI:10.1016/j.apenergy.2020.115934.(SCI Q1)
[93]Fang K,Wang T,He J,Wang T*,Xie X,Tang Y,Shen Y,Xu A.The distribution and drivers of PM2.5 in a rapidly urbanizing region:The Belt and Road Initiative in focus.Science of the Total Environment,2020,716.DOI:10.1016/j.scitotenv.2020.137010.(SSCI/SCI Q1)
[92]Chen X,Liu Q,Fang K*,He J,Chen Y,Wang T,Fang C,Shen Y.Tracking national sustainability of critical natural capital and the socioeconomic drivers in the context of the Belt and Road Initiative.Ecological Indicators,2020,114.DOI:10.1016/j.ecolind.2020.106315.(SSCI/SCI Q1)
[91]Long Y,Yoshida Y,Liu Q,Zhang H,Wang S,Fang K*.Comparison of city-level carbon footprint evaluation by applying single-and multi-regional input-output tables.Journal of Environmental Management,2020,260.DOI:10.1016/j.jenvman.2020.110108.(SSCI/SCI Q1)
[90]Fang K*,Tang Y,Zhang Q,Song J,Wen Q,Sun H,Ji C,Xu A.Will China peak its energy-related carbon emissions by 2030?Lessons from 30 Chinese provinces.Applied Energy,2019,255.DOI:10.1016/j.apenergy.2019.113852.(SSCI/SCI Q1)
[89]Fang K*,Zhang Q,Long Y,Yoshida Y,Sun L,Zhang H,Dou Y,Li S.How can China achieve its Intended Nationally Determined Contributions by 2030?A multi-criteria allocation of China’s carbon emission allowance.Applied Energy,2019,241.DOI:10.1016/j.apenergy.2019.03.055.(SSCI/SCI Q1)
[88]Long Y*,Yoshida Y,Fang K*,Dhondt M.City-level household carbon footprint from purchaser point of view by a modified input-output model.Applied Energy,2019,236.DOI:10.1016/j.apenergy.2018.12.002.(SSCI/SCI Q1)
[87]Zhang Q,Fang K*.Comment on“Consumption-based versus production-based accounting of CO2 emissions:Is there evidence for carbon leakage?”Environmental Science and Policy,2019,101:94-96.DOI:10.1016/j.envsci.2019.08.002.(SCI Q1)
[86]Fang K,Zhou Y,Wang S,Ye R,Guo S*.Assessing national renewable energy competitiveness of the G20:A revised Porter’s Diamond Model.Renewable and Sustainable Energy Reviews,2018,93.DOI:10.1016/j.rser.2018.05.011.(SSCI/SCI Q1)
[85]Fang K,Zhang Q,Yu H,Wang Y,Dong L,Shi L*.Sustainability of the use of natural capital in a city:Measuring the size and depth of urban ecological and water footprints.Science of the Total Environment,2018,631-632.DOI:10.1016/j.scitotenv.2018.02.299.(SSCI/SCI Q1)
[84]Fu H,Fang K*,Fang C.Characteristics of scientific impact of Resources Conservation and Recycling in the past 30 years.Resources,Conservation and Recycling,2018,137.DOI:10.1016/j.resconrec.2018.06.021.(SSCI/SCI Q1)
[83]Fang K,Dong L*,Ren J,Zhang Q,Han L,Fu H.Carbon footprints of urban transition:Tracking circular economy promotions in Guiyang,China.Ecological Modelling,2017,365.DOI:10.1016/j.ecolmodel.2017.09.024.(SSCI/SCI)
[82]Fang K*,Song S,Heijungs R,de Groot S,Dong L,Song J,Wiloso E I.The footprint’s fingerprint:On the classification of the footprint family.Current Opinion in Environmental Sustainability,2016,23.DOI:10.1016/j.cosust.2016.12.002.(SSCI/SCI Q1)
[81]Tan Y,Fang K*.Environmental Governance in China.Journal of Chinese Governance,2016,1(1).DOI 10.1080/23812346.2016.1138707.(SSCI)
[80]Fang K*,Heijungs R.The role of impact characterization in carbon footprinting.Frontiers in Ecology and the Environment,2015,13(3).DOI:10.1890/15.WB.005.(SCI Q1)
[79]Fang K*,Heijungs R.Rethinking the relationship between footprints and LCA.Environmental Science&Technology,2015,49(1).DOI:10.1021/es5057775.(SCI Q1)
[78]Fang K*,Heijungs R,de Snoo R G.Understanding the complementary linkages between environmental footprints and planetary boundaries in a footprint–boundary environmental sustainability assessment framework.Ecological Economics,2015,114.DOI:10.1016/j.ecolecon.2015.04.008.(SSCI/SCI Q1)
[77]Fang K*,Heijungs R.Investigating the inventory and characterization aspects of footprinting methods:lessons for the classification and integration of footprints.Journal of Cleaner Production,2015,108.DOI:10.1016/j.jclepro.2015.06.086.(SCI Q1)
[76]Fang K*,Heijungs R,Duan Z,de Snoo R G.The environmental sustainability of nations:Benchmarking the carbon,water and land footprints against allocated planetary boundaries.Sustainability,2015,7(8).DOI:10.3390/su70811285.(SSCI/SCI)Arjen Hoekstra约稿
[75]Fang K*,Heijungs R,de Snoo R G.Theoretical exploration for the combination of the ecological,energy,carbon,and water footprints:Overview of a footprint family.Ecological Indicators,2014,36.DOI:10.1016/j.ecolind.2013.08.017.(SSCI/SCI Q1)
[74]Fang K*,Heijungs R.There is still room for a footprint family without a life cycle approach:Comment on“towards an integrated family of footprint indicators”.Journal of Industrial Ecology,2014,18(1).DOI:10.1111/jiec.12067.(SCI Q1)
[73]Fang K*,Heijungs R.Moving from the material footprint to a resource depletion footprint.Integrated Environmental Assessment and Management,2014,10(4).DOI:10.1002/ieam.1564.(SCI)
[72]Fang K*,Heijungs R,de Snoo G.The footprint family:comparison and interaction of the ecological,energy,carbon and water footprints.Revue de Metallurgie-Cahiers D Informations Techniques,2013,110(1).DOI:10.1051/metal/2013051.(SSCI/SCI)
[71]Fang K*,Duan Z.Environmental Sustainability Assessment Dataset among 30 Countries of the World.Global Change Research Data Publishing&Repository,2016,(8).DOI:10.3974/geodb.2016.08.21.V1.
[70]Xia C,Xiang M,Fang K,Li Y,Ye Y,Shi Z,Liu J.Spatial-temporal distribution of carbon emissions by daily travel and its response to urban form:A case study of Hangzhou,China.Journal of Cleaner Production,2020,257.DOI:10.1016/j.jclepro.2020.120797.(SSCI/SCI Q1)
[69]Liu H,Fang C,Fang K.Coupled Human and Nnatural Cube:A novel framework for analyzing the multiple interactions between humans and nature.Journal of Geographical Sciences,2020,30(3).DOI:10.1007/s11442-020-1732-9.(SCI)
[68]Song J,Wang B,Fang K,Yang W.Unraveling economic and environmental implications of cutting overcapacity of industries:A city-level empirical simulation with input-output approach.Journal of Cleaner Production,2019,222.DOI:10.1016/j.jclepro.2019.03.138.(SSCI/SCI Q1)
[67]Zhong W,Song J,Yang W,Fang K,Liu X.Evolving household consumption-driven industrial energy consumption under urbanization:A dynamic input-output analysis.Journal of Cleaner Production,2021,289:125732.DOI:10.1016/j.jclepro.2020.125732.(SCI Q1)
[66]Wang Y,Song J,Yang W,Fang K,Duan H.Seeking spatiotemporal patterns and driving mechanism of atmospheric pollutant emissions from road transportation in China.Resources,Conservation and Recycling,2020,162:105032.DOI:10.1016/j.resconrec.2020.105032.(SSCI/SCI Q1)
[65]Zhang B,Zhang H,Long Y,Fang K,Xu N,Li Z,Liang Y.Economic and environmental co-benefit of natural gas supply chain considering the risk attitude of designers.Journal of Cleaner Production,20202020,272.DOI:10.1016/j.jclepro.2020.122681.(SCI Q1)
[64]Wiloso E I,Heijungs R,Huppes G,Fang K.Effect of biogenic carbon inventory on the life cycle assessment of bioenergy:challenges to the neutrality assumption.Journal of Cleaner Production,2016,125.DOI:10.1016/j.jclepro.2016.03.096.(SCI Q1)
[63]Sun L,Li H,Dong L,Fang K,Ren J,Geng Y,Fujii M,Zhang W,Zhang N,Liu Z.Eco-benefits assessment on urban industrial symbiosis based on material flows analysis and emergy evaluation approach:A case of Liuzhou City,China.Resources,Conservation and Recycling,2017,119.DOI:10.1016/j.resconrec.2016.06.007.(SCI Q1)
[62]Wang T,Huang H,Yu C,Fang K,Zheng M,Luo Z.Understanding cost reduction of China’s biomass direct combustion power generation—A study based on learning curve model.Journal of Cleaner Production,2018,188.DOI:10.1016/j.jclepro.2018.03.258.(SSCI/SCI Q1)
[61]Du Y,Sun T,Peng J,Fang K,Liu Y,Yang Y,Wang Y.Direct and spillover effects of urbanization on PM2.5 concentrations in China’s top three urban agglomerations.Journal of Cleaner Production,2018,190.DOI:10.1016/j.jclepro.2018.03.290.(SSCI/SCI Q1)
[60]Sun H,Clottey S,Geng Y,Fang K,Amissah J.Trade openness and carbon emissions:Evidence from Belt and Road countries.Sustainability,2019,11.DOI:10.3390/su11092682.(SSCI/SCI)
[59]Bjoern A,Chandrakumar C,Boulay A,Doka G,Fang K,Gondran N,Hauschild M,Kerkhof A,King H,Margni M,McLaren S,Mueller C,Owsianiak M,Peters G,Roos S,Sala S,Sandin G,Sim S,Vargas-Gonzalez M,Ryberg M.Review of life-cycle based methods for absolute environmental sustainability assessment and their applications.Environmental Research Letters,2020,in press.(SSCI/SCI Q1)
[58]Wang X,Li W,Song J,Duan H,Fang K,Diao W.Urban consumers’willingness to pay for higher-level energy-saving appliances:Focusing on a less developed region.Resources,Conservation and Recycling,2020,157:104760.DOI:10.1016/j.resconrec.2020.104760.(SSCI/SCI Q1)
[57]Yuan M,Zhang H,Wang B,Huang L,Fang K,Liang Y.Downstream oil supply security in China:Policy implications from quantifying the impact of oil import disruption.Energy Policy,2020,136.DOI:10.1016/j.enpol.2019.111077.(SSCI/SCI Q1)
[56]Zhang H,Song X,Long Y,Xia T,Fang K,Zheng J,Huang D,Shibasaki R,Liang Y.Mobile phone GPS data in urban bicycle-sharing:Layout optimization and emissions reduction analysis.Applied Energy,2019,242.DOI:10.1016/j.apenergy.2019.03.119.(SSCI/SCI Q1)
[55]Duan H,Cui L,Song J,Zhang L,Fang K,Duan Z.Allocation of pollutant emission permits at industrial level:Application of a bidirectional-coupling optimization model.Journal of Cleaner Production,2019,242:118489.DOI:10.1016/j.jclepro.2019.118489.(SCI Q1)
[54]Li Y,Sun L,Zhang H,Liu T,Fang K.Does industrial transfer within urban agglomerations promote dual control of total energy consumption and energy intensity?Journal of Cleaner Production,2018,204.DOI:10.1016/j.jclepro.2018.08.342.(SSCI/SCI Q1)
[53]Luo X,Dong L,Dou Y,Liang H,Ren J,Fang K.Regional disparity analysis of Chinese freight transport CO2 emissions from 1990 to 2007:driving forces and policy challenges.Journal of Transport Geography,2016,56.DOI:10.1016/j.jtrangeo.2016.08.010.(SSCI Q1)
[52]Song J,Yang W,Wang S,Wang X,Higano Y,Fang K.Exploring potential pathways towards fossil energy-related GHG emission peak prior to 2030 for China:An integrated input-output simulation model.Journal of Cleaner Production,2018,178.DOI:10.1016/j.jclepro.2018.01.062.(SSCI/SCI Q1)
[51]Leip A,Galli A,Kastner T,Bruckner M,Uwizeye A,van Dijk K,Ercin E,Dalin C,Brandão M,Bastianoni S,Fang K,Leach A,Chapagain A,van der Velde M,Sala S,Pant R,Mancini L,Monforti-Ferrario F,Carmona-Garcia G,Marques A,Weiss F,Hoekstra A.Environmental footprint family to address local to planetary sustainability and deliver on the SDGs.Science of the Total Environment,2019.693.DOI:10.1016/j.scitotenv.2019.133642.(SSCI/SCI Q1)
[50]Cai B,Lu J,Wang J,Dong H,Liu X,Chen Y,Chen Z,Cong J,Cui Z,Dai C,Fang K,et al.A benchmark city-level carbon dioxide emission inventory for China in 2005.Applied Energy,2019,233-234.DOI:10.1016/j.apenergy.2018.10.016.(SSCI/SCI Q1)
[49]Wiloso E I,Setiawan A A R,Prasetia H,Muryanto M,Wiloso A R,Subyakto S,Sudiana I M,Lestari R,Nugroho S,Hermawan D,Fang K,Heijungs R.Production of sorghum pellets and their utilization for electricity generation in Indonesia:A life cycle assessment study to estimate potential reductions in global warming impacts.Biofuel Research Journal,2020,27.DOI:10.18331/BRJ2020.7.3.2.(SCI Q1)
[48]Wiloso E I,Nazir N,Hanafi J,Siregar K,Harsono S S,Setiawan A A R,Muryanto,Romli M,Utama N A,Shantiko B,Jupesta J,Utomo T H A,Sari A A,Fang K.Life cycle assessment research and application in Indonesia.The International Journal of Life Cycle Assessment,2019,24.DOI:10.1007/s11367-018-1459-3.(SCI)
[47]方恺,许安琪,何坚坚,方创琳,刘庆燕.“一带一路”沿线国家可持续发展综合评估及分区管控.科学通报,2020.(一级刊物)
[46]方恺,张琦峰,杜立民.初始排放权分配对各省区碳交易策略及其减排成本的影响分析.环境科学学报,2020.(一级刊物)
[45]方恺,王婷婷,何坚坚,沈扬.“一带一路”沿线地区NO2浓度时空变化特征及其驱动因素分析.生态学报,2020,40(13):4241-4251.(一级刊物)
[44]陈先鹏,吴次芳,方恺*.资源环境承载力研究范式的分化与比较.中国土地科学,2020.(一级刊物,CSSCI)
[43]陈先鹏,方恺*,彭建,刘爱原.资源环境承载力评估新视角——行星边界框架的源起、发展与展望.自然资源学报,2020,35(3):513-531.(一级刊物,CSSCI)
[42]方恺,李帅,叶瑞克,张琦峰,龙吟.全球气候治理的新进展——区域碳排放权分配研究综述.生态学报,2020,40(1):10-23.(一级刊物)
[41]方恺,张琦峰,叶瑞克,周云亨.巴黎协定生效下的中国省际碳排放权分配研究.环境科学学报,2018,38(3):1224-1234.(一级刊物)
[40]方恺,吴次芳,董亮.城市化进程中的土地自然资本利用动态分析.自然资源学报,2018,33(1):1-13.(一级刊物,CSSCI)
[39]张琦峰,方恺*,徐明,刘庆燕.基于投入产出分析的碳足迹研究进展.自然资源学报,2018,33(4):696-708.(一级刊物,CSSCI)
[38]方恺.环境足迹的核算与整合框架——基于生命周期评价的视角.生态学报,2016,36(22):7228-7234.(一级刊物)
[37]方恺.足迹家族研究综述.生态学报,2015,35(24):7974-7986.(一级刊物)
[36]方恺,段峥.全球主要国家环境可持续性综合评估——基于碳、水、土地的足迹-边界整合分析.自然资源学报,2015,30(4):539-548.(一级刊物,CSSCI)
[35]方恺.基于改进生态足迹三维模型的自然资本利用特征分析——选取11个国家为数据源.生态学报,2015,35(11):3766-3777.(一级刊物)
[34]方恺.足迹家族:概念、类型、理论框架与整合模式.生态学报,2015,35(6):1647-1659.(一级刊物)
[33]方恺.生态足迹深度和广度:构建三维模型的新指标.生态学报,2013,33(1):267-274.(一级刊物)
[32]方恺,高凯,李焕承.基于三维生态足迹模型优化的自然资本利用国际比较.地理研究,2013,32(9):1657-1667.(一级刊物,CSSCI)
[31]方恺,董德明,林卓,沈万斌.基于全球净初级生产力的能源足迹计算方法.生态学报,2012,32(9):2900-2909.(一级刊物)
[30]方恺,李焕承.基于生态足迹深度和广度的中国自然资本利用省际格局.自然资源学报,2012,27(12):1995-2005.(一级刊物,CSSCI)
[29]方恺,沈万斌,董德明.能源足迹核算的改进与预测——以吉林省为例.地理研究,2011,30(10):1835-1846.(一级刊物)
[28]方恺,董德明,沈万斌.生态足迹理论在能源消费评价中的缺陷与改进探讨.自然资源学报,2010,25(6):1013-1021.(一级刊物,CSSCI)
[27]方恺,董德明,沈万斌.能源足迹改进方法及其在区域能源利用效益分析评价中的应用.地理科学,2010,30(5):686-692.(一级刊物)
[26]方恺,李程琳,许安琪.气候治理与可持续发展目标深度融合的机遇、挑战与对策.治理研究.(CSSCI)
[25]方恺,朱优蓉.自然资源资产负债表编制的理论与实践.中国环境管理,2019,11(3):24-30,35.(CSSCI)
[24]方恺.环境足迹的指标分类与整合范式.生态经济,2015,31(7):22-26.(CSSCI)
[23]方恺.1999-2008年G20国家自然资本利用空间格局变化.资源科学,2014,36(4):793-800.(CSSCI)
[22]方恺,沈万斌,高凯.能源足迹变化的多因素影响效应研究——以吉林省为例.生态与农村环境学报,2012,28(1):118-123.(CSSCI)
[21]方恺,沈万斌,王黎黎.基于能源足迹改进模型的农业区可持续性分析.地理与地理信息科学,2010,26(6):66-69.(CSSCI)
[20]方恺,王莉红,李焕承.基于生态系统服务价值的江南传统农业区土地利用规划影响评价.长江流域资源与环境,2010,19(S2):95-101.(CSSCI)
[19]陈先鹏,方恺*,吴次芳,王田雨,龙吟.2009-2015年中国耕地资源利用时空格局变化研究——基于粮食安全与生态安全双重视角.水土保持通报,2019,39(3):291-296,306.
[18]方恺.基于足迹家族和行星边界的主要国家环境可持续性多维评价.生态环境学报,2014,23(11):1868-1875.
[17]方恺,董德明,沈万斌.基于净初级生产力的能源足迹模型及其与传统模型的比较分析.生态环境学报,2010,19(9):2042-2047.
[16]方恺,沈万斌,董德明.经济增长和科技进步对吉林省能源足迹的影响分析.干旱区地理,2013,36(1):186-193.
[15]方恺,Heijungs R.自然资本核算的生态足迹三维模型研究进展.地理科学进展,2012,31(12):1700-1707.
[14]方恺,朱晓娟,高凯,沈万斌.全球电力碳足迹及其当量因子测算.生态学杂志,2012,31(12):3160-3166.
[13]方恺,沈万斌,郑沁敏,高凯,刘景帅.化石能源地生态承载力研究.环境科学与技术,2011,34(12):201-205.
[12]方恺,沈万斌.CO2排放承载力计算模型的构建与应用.生态科学,2010,29(6):558-562.
[11]方恺,许安琪.2030年可持续发展议程下的环境目标评估与落实:现状、挑战与对策.CIDEG决策参考,2018,(3):1-10
[10]方恺.自然资源资产和负债相关研究述评//吴次芳等(主编).全球土地2015:热点与前沿.浙江大学出版社,2017.
[9]熊锦惠,岳文泽,陈阳,廖蓉,方恺.面向SDGs的城市扩张多情景模拟研究——“一带一路”中亚区为例.自然资源学报,2020.(一级刊物,CSSCI)
[8]蔡博峰,刘晓曼,陆军,王金南,刘红光,陈洋,陈占明,丛建辉,崔志鹏,代春艳,董会娟,方恺,等.2005年中国城市CO2排放数据集.中国人口·资源与环境,2018,28(4):1-7.(一级刊物,CSSCI)
[7]蒋丹,张林荣,孙华平,方恺.中国征收碳税应对碳关税的经济分析——以美国为例.生态学报,2020,40(2):440-446.(一级刊物)
[6]刘海猛,胡森林,方恺,何光强,马海涛,崔学刚.“一带一路”沿线国家政治-经济-社会风险综合评估及防控.地理研究,2019,38(12):2966-2984.(一级刊物,CSSCI)
[5]袁晓玲,李朝鹏,方恺.中国城镇化进程中的空气污染研究回顾与展望.经济学动态,2019,22(5):88-103.(一级刊物,CSSCI)
[4]王凤婷,方恺,于畅.京津冀产业能源碳排放与经济增长脱钩弹性及驱动因素——基于Tapio脱钩和LMDI模型的实证.工业技术经济,2019,38(8):32-40.(CSSCI)
[3]周云亨,方恺,叶瑞克.能源安全观演进与中国能源转型.东北亚论坛,2018,(6):80-91.(CSSCI)
[2]刘庆燕,方恺,丛建辉.山西省贸易隐含碳排放的空间-产业转移及其影响因素研究:基于MRIO-SDA跨期方法.环境经济研究,2019,4(2):44-57.
[1]王君章,方恺.基于来源多样性特征的中国电力碳足迹估算.电力学报,2012,27(2):158-162.