張力小,男,博士,環境學院教授,博士生導師,副院長。
基本介紹
- 中文名:張力小
- 職業:教師
- 學位/學歷:博士
- 專業方向:食物-能源-水關聯關係等
- 職務:博士生導師
- 職稱:博士
- 任職院校:北京師範大學
個人經歷,教育經歷,工作經歷,社會任職,教學信息,研究方向,學術成果,科研項目,科教成果,著作,英文文章,中文論文,榮譽獎勵,
個人經歷
教育經歷
1999.09-2004.07 北京大學環境學院環境科學系獲理學博士學位
1995.09-1999.07 青島大學環境科學系獲理學學士學位
工作經歷
2016.07- 至今 北京師範大學環境學院,教授,博士生導師
2011.07-2016.07 北京師範大學環境學院,副教授,博士生導師
2007.06-2011.07 北京師範大學環境學院,講師
2005.07-2007.06 北京師範大學環境學院,博士後
2004.09-2005.05 Institute of Botany, Universität für Bodenkultur Wien,訪問學者
社會任職
Journal of Environmental Management 副主編
Resource, Conservation & Recycling 編委
Development of Energy Science 編委
International Journal of EnergyandEnvironmental Science編委
Frontiers in Sustainable Cities編委
《中國環境管理》編委
中國環境科學學會環境地學分會秘書長
中國生態學會產業生態專業委員會副主任
北京能源協會青年專家委員會副主任
中國“雙法”研究會能源經濟與管理研究分會常務理事
中國自然資源學會資源流動與管理研究專業委員會副主任委員
環境規劃專業委員會委員 委員
國際產業生態學會 會員
國際生態模擬學會 會員
國際能值協會 會員
國際環境信息學會 會員
中國生態學會 會員
中國自然資源學會 會員
教學信息
生態模擬(Ecological Modelling):碩士研究生學位基礎課
環境變化與生態文明:本科生全校公選課
景觀生態學:本科生專業選修課(與劉世梁教授共建)
研究方向
食物-能源-水關聯關係
生態系統核算與管理
城市物質能量代謝
可再生能源系統分析
學術成果
科研項目
2035年生態系統保護路線圖及協同機制研究(深圳市生態環境局委託項目)
政策環境影響評價案例研究-新能源汽車生命周期評價(生態環境部環境與經濟政策研究中心委託項目)
典型環境經濟政策專題調研(生態環境部政研中心委託項目)
上海合作組織國家城市生態環境建設研究(中國-東協環境保護合作中心)
面向可持續發展的城市食物-能源-水關聯關係模擬研究(自然基金委國際合作與交流項目)
城市資源代謝結構及其變化機理研究(國家自然基金)
全國生態環境變化(2010-2015)調查評估(中國科學院科技服務網路計畫項目)
西藏自治區環境功能區劃與生態紅線(自治區委託項目)
國家重點生態功能區自然資源資產評估與管理體系研究(亞行技術援助項目)
城市與區域能流-物流-信息流傳輸過程與耦合機制(國家重點研發計畫)
區域循環經濟技術及其發展模式的風險評估及決策支持研究(國家科技支撐項目)
我國典型生物質能的可再生性與碳減排潛力研究(國家自然基金)
城市熱環境調控技術集成及示範(國家科技支撐項目)
城市資源代謝結構及其變化機理研究(國家自然基金)
珠海市富山工業園規劃環境影響評價
北京市環境與生態發展戰略規劃(北京市環保局委託項目)
重大環境污染事件風險源識別與監控技術(863項目);
城市規劃實施的生態安全評估與調控關鍵技術及套用示範(國家科技支撐計畫);
現代城市“病”的系統識別理論與生態調控機理(國家973項目);
中國環境巨觀戰略研究-生態保護戰略研究(亞行項目);
中國典型城市包頭市生態城市建設規劃(世行項目);
中國典型城市武夷山市生態城市建設規劃(世行項目);
北京通州區區域戰略環境影響評價(北京市環保局委託項目);
通州新城生態建設與環境保護規劃(通州區環保局委託項目)
廣州南沙區環境保護規劃(廣州市環境保護局委託項目)
德化縣推進縣域循環經濟發展規劃(德化縣政府委託項目)
中國城市生態環境問題研究(中國工程院諮詢項目)
廣州生態城市規劃諮詢項目(廣州市政府委託項目)
淮河流域可持續發展戰略研究(水利部淮委、中日據點大學合作項目)
科爾沁沙地人地系統演變與調控(中科院沙漠所開放基金)
騰格里沙漠東南緣人地系統演變與調控(中科院沙漠所開放基金)
渾善達克沙地沙漠化過程的人地關係(中國科學院重大創新項目)
河南省濬縣旅遊規劃(濬縣政府委託項目)
河南省西峽縣旅遊規劃(西峽縣政府委託項目)
河南省西峽縣生態示範縣規劃(西峽縣政府委託項目)
科教成果
目前已發表學術論文130餘篇,其中SCI收錄80餘篇,已出版專著、譯著2本,參編著作7本。
著作
[1]張力小著.城市能量過程及其結構解析.科學出版社,2018
[2]張力小譯 (Alexey Voinov著).生態經濟學中的系統分析與模擬.高等教育出版社,2014
[3]徐新良,喬治,田光進,張力小.城市熱環境:格局·機理·模擬.科學出版社,2015
[4]參編多尺度突發環境污染事故風險區劃(曾維華等編著).北京:科學出版社,2013
[5]參編生態系統的理論和實踐(蔡曉明,蔡博峰編著).北京:化學工業出版社,2012
[6]參編中國環境巨觀戰略研究環境要素保護戰略卷(中國工程院、環境保護部編).北京:中國環境科學出版社2010.6
[7]宋豫秦,張力小等.淮河流域可持續發展戰略初論(專著).北京:化學工業出版社環境科學與工程出版中心,2003
[8]參編中國的沙漠與沙漠化(王濤主編).石家莊:河北科技出版社出版,2004
[9]參編面向21 世紀的環境科學與可持續發展:北京大學百年校慶國際研討會論文集 (唐孝炎主編).北京:科學出版社,2000
英文文章
[1] Zhang, P. P., Zhang, L.X.*,Hao,Y., Liang, S., Liu, G.Y., Xiong, X., Yang, M., Tang, W.Z.2019. Understandingthetele-coupling mechanism of urban food-energy-water nexus: Criticalsources,nodes, and supply chains. Journal of Cleaner Production 235, 297-307
[2] Chang, Y., Lei, S.H., Teng, J.J.,Zhang, J.X., Zhang, L.X., Xu,X..2019. The energy use and environmentalemissions of high-speed railtransportation in China: A bottom-up modeling. Energy.
[3]Liu, J., Liu, R.Z., Zhang, Z.J., Cai,Y.P., Zhang, L.X.2019. ABayesian Network-based risk dynamic simulationmodel for accidental waterpollution discharge of mine tailings ponds atwatershed-scale. Journal ofEnvironmental Management. 246, 821-831
[4]Wang, C.B., Zhang, L.X.,Zhou, P., Chang, Y., Zhou, D.Q., Pang, M.Y., Yin,H.2019. Assessing theenvironmental externalities for biomass- and coal-firedelectricity generationin China: A supply chain perspective. Journal ofEnvironmental Management, 246,758-767
[5]Wu, X.L., Zhang, L.X.,Zhao, C.F., Gegen, T., Zheng, C.W., Shi, X.Q.,Geng, J. Letu, H.2019.Satellite‐Based Assessment of LocalEnvironment Change by Wind Farms in China.Earth and Space Science,
[6]Cai, B.F., Yang, W.S., Zhang,L.X.*,Feng, Y.Y. 2019. China CO2 emissions performance analysis atsub-province level.Environmental Engineering and Management Journal.18, 203-212
[7]Li, D., Zhao, L.M., Ma, S., Shao, S., Zhang, L.X.2019.What influences an individual’s pro-environmentalbehavior? A literature review. Resources,Conservation and Recycling. 146, 28-34
[8]Su, M.R., Xie, H., Yue, W.C., Zhang,L.X.,Yang, Z.F., Chen, S.H. 2019.Urban ecosystem health evaluation fortypicalChinese cities along the Belt and Road. Ecological Indicators 101, 572–582
[9]Pang, M.Y., Yang, S.Y., Zhang,L.X.*,Li, Y., Kong, F.L., Wang, C.B.2019.Understanding the linkagesbetween productionactivities and ecosystem degradation in China: An ecologicalinput-output modelof 2012. Journal of Cleaner Production 218,975-984
[10]Zhang, P.P., Zhang, L.X.*,Chang,Y., Xu, M., Hao, Y., Liang, S., Liu, G.Y., Yang, Z.F., Wang, C.2019.Food-energy-water (FEW) nexus for urban sustainability: A comprehensivereview.Resources, Conservation & Recycling 142, 215–224
[11]Zhang, C., Shan, B.Q., Tang, W.Z., Wang,C., Zhang, L.X.2019.Identifyingsediment-associated toxicity in riversaffected by multiple pollutants from thecontaminant bioavailability. Ecotoxicologyand Environmental Safety, 171, 84–91
[12]Han, J., Chen, W.Q., Zhang,L.X., Liu, G.2018.Uncovering the Spatiotemporal Dynamics of UrbanInfrastructure Development:A High Spatial Resolution Material Stock and Flow Analysis.Environ. Sci.Technol., 52, 12122−12132
[13]Chang, Y., Li, X.D., Masanet, E., Zhang, L.X. ,Huang, Z.Y.,,Riese, R.2018.Unlocking the greenopportunity for prefabricated buildings andconstruction in China. Resources,Conservation & Recycling 139, 259–261
[14]Rutebuka, E., Zhang, L.X.*,Asamoah,E.F., Pang M.Y., Rukundo, E.2018. Resource Dynamism of the RwandanEconomy: AnEmergy Approach. Sustainability 10, 1791, 1-19
[15]Wang, C.B., Chang, Y., Zhang,L.X.*,Chen, Y.S., Pang, M.Y.2018.Quantifying uncertainties in greenhousegasaccounting of biomass power generation in China: System boundary andparameters.Energy 158,121-127
[16]Liu, S.Y., Wang, C., Shi, L., Cai, W.J., Zhang, L.X. 2018.Waterconservation implications for decarbonizingnon-electric energy supply: A hybridlife-cycle analysis. Journal ofEnvironmental Management 219, 208-217
[17] Rutebuka, E., Zhang, L.X.*,Asamoah, E.F., Rukundo,E., William, A.2018.Evaluating the Conservation Effortsof Multi-Projects UsingRemote Sensing. urban Open Journal of Forestry 8, 68-86
[18] Zhang, P.P., Zhang, L.X.*,Tian, X., Hao, Y., Wang,C.B., 2018.Urban energy transition in China: Insightsfrom trends, socioeconomicdrivers, and environmental impacts of Beijing. Energy Policy 117, 173–183
[19]Zhang, J.X., Chang, Y.,Zhang, L.X., Li, D.2018.Dotechnological innovations promote urban greendevelopment? -A spatialeconometric analysis of 105 cities in China. Journal ofCleaner Production 182,395-403
[20]Pang, M.Y., Zhang, L.X.*,Bahaj,A.S., Xu, K.P, Wang, C.B. 2018.Small hydropower development in Tibet:Insightsfrom a survey in Nagqu Prefecture. Renewable and Sustainable EnergyReviews. 81,3032-3040
[21]Song, B., Zhang, Y., Zhang,L.X.*,Zhang, F. 2018. A top-down framework for cross-regional payments forecosystemservices. Journal of Cleaner Production 182, 238-245
[22]Zhang, L.X.*, Tang, S.J., Pang,M.Y. 2018.Integrated emergy and economicevaluation of a case tidal power plantin China. Journal of Cleaner Production182, 38-45
[23]Yang, J.H., Chang, Y., Zhang,L.X.*,Hao, Y., Yan, Q., Wang, C.B. 2018.The life-cycle energy andenvironmentalemissions of a typical offshore wind farm in China. Journal ofCleanerProduction 180, 316-324
[24]Asamoah, E.F., Zhang, L.X.*,Liang, S., Pang, M.Y., Tang, S.J. 2017.Emergy Perspectives on theEnvironmentalPerformance and Sustainability of Small-Scale Gold ProductionSystems in Ghana.Sustainability 9, 2034
[25]Asamoah, E.F., Zhang, L.X.*, Liu,G.Y., Owusu-Prempeh, N., Rukundo,E.2017.Estimating the “Forgone” ESVs forSmall-Scale Gold Mining UsingHistorical Image Data Sustainability 9, 1976
[26]Xu, L., Pang,M.Y., Zhang, L.X.*,Poganietz,W.R., Marathe,S.D..2018. Life cycle assessment of onshore wind power systems inChina. Resources, Conservation and Recycling 132, 361-368
[27]Yao, Y., Chang, Y., Huang,R.ZE., Zhang,L.X., Masanet, E. 2018.Environmental implications of the methanoleconomy in China: well-to-wheelcomparison of energy and environmental emissionsfor different methanol fuelproduction pathways. Journal of Cleaner Production.172, 484-492
[28]Zhang, J.X., Chang, Y., Wang,C.B., Zhang, L.X. 2018. The greenefficiency of industrial sectors inChina: A comparative analysis based onsectoral and supply-chainquantifications. Resources, Conservation andRecycling 132, 269-277
[29]Zhang, B., Meng, Z., Zhang, L.X., Sun,X.D., Hayat, T.,Alsaedi, A., Ahmad, B.2018.Exergy-based systems account ofnational resourceutilization: China 2012. Resources, Conservation and Recycling132, 324-338
[30]Liu, G.Y., Casazza, M., Tian, X.,Zhang,Y., Hao, Y., Zhang, L.X.,Liang, S., Giannetti, B. F.2017.Tracing theinter-regional coal flows andenvironmental impacts in Jing-Jin-Ji region. EcologicalModelling 364,98–112.
[31]Chang ,Y., Gu, Y.R., Zhang,L.X., Wu, C.Y., Liang, L.2017.Energyand environmental implications of usinggeothermal heat pumps in buildings: Anexample from north China. Journal ofCleaner Production. 167, 484-492
[32]Zhang, J.X., Liu, Y.M., Chang,Y., Zhang,L.X.2017. Industrialeco-efficiency in China: A provincial quantificationusing three-stage dataenvelopment analysis. Journal of Cleaner Production 143,238-249
[33]Pang, M.Y., Zhang, L.X.*,Liang, S., Liu, G.Y.,Wang, C.B., Hao, Y., Wang, Y.F., Xu, M.2017.Trade-offbetween carbon reductionbenefits and ecological costs of biomass-based powerplants with carbon captureand storage (CCS) in China. Journal of CleanerProduction 144, 279-286
[34]Wang, C.B., Chang, Y., Zhang,L.X..*, Pang M.Y., Hao, Y., 2017.A life-cycle comparison of the energy,environmental and economic impacts ofcoal versus wood pellets for generatingheat in China. Energy 120, 374-384
[35]Zhang, L.X., Hao, Y., Chang, Y.,Pang,M.Y., Tang, S.J.2017. Emergy based resource intensities of industrysectors inChina. Journal of Cleaner Production. 142,829-836
[36]Zhang, L.X., Yang, Z.F.,Voinov, A.,Gao, S.L.2016. Nature-inspired stormwater management practice: Theecologicalwisdom underlying the Tuanchen drainage system in Beijing, China anditscontemporary relevance. Landscape and Urban Planning.155,11-20. (SCI)
[37]Hao, Y., Zhang, L.X., Cai,Y.P., Su, M.R., Yang, Z.F. 2016. High-ResolutionMapping of Carbon Flows inUrban Systems: A Case Study in Guanyuan, anEarthquake-Affected Mountainous Cityof China. Journal of EnvironmentalInformatics 27, 106-115(SCI)
[38]Zhang, L.X., Pang, M.Y., Wang,C.B.,Ulgiati, S.2016. Environmental sustainability of small hydropower schemesinTibet: an emergy-based comparative analysis, Journal of Cleaner Production135,97–104
[39]Cai, B.F., Bo, X., Zhang, L.X.*,Boyce, J.K., Zhang, Y.S.,Lei, Y.2016.Gearing carbon trading towardsenvironmental co-benefits in China:Measurement model and policy implications.Global Environmental Change 39,275-284
[40]Wang, C.B., Zhang, Y.Q., Zhang,L.X.*, Pang, M.Y.2016.Alternativepolicies to subsidize rural householdbiogas digesters. Energy Policy 93,187–195(SCI, EI)
[41]Hao, Y., Cai, Y.P., Zhang, L.X.,Su, M.R., Yang, Z.F.2016.Identificationof low-carbon strategies forpost-earthquake development in the city ofGuangyuan based on an inexact twostage stochastic programming approach. HabitatInternational 53, 413-429(SCI)
[42]Chang, Y., Li, G.J., Yao, Y., Zhang,L.X., Yu, C.2016.Quantifying theWater-Energy-Food Nexus: Current Status andTrends.Energies2016, 9(2), 65 (SCI, EI)
[43]Cai, B.F., Wang, J.N., Long, Y.,Li, W.X., Liu, J.G., Ni, Z., Bo, X., Li,D., Wang, J.H., Chen, X.J., Gao, Q.X.,Zhang,L.X. 2015.Evaluating theimpact of odors from the 1955 landfills in Chinausing a bottom-up approach. Journalof Environmental Management.64,206-214(SCI)
[44]Wang, C.B., Zhang, L.X.*,Chang, Y., Pang, M.Y.2015.Biomass direct-fired power generation system inChina: An integratedenergy, GHG emissions, and economic evaluation for Salix.Energy Policy. 84,155–165(SCI, EI)
[45]Pang, M.Y., Zhang, L.X.*,Ulgiati, S., Wang, C.B.2015.Ecological impacts of small hydropower in China:Insights from an emergyanalysis of a case plant. Energy Policy. 76,112-122 (SCI, EI)
[46]Pang, M.Y., Zhang, L.X.*, Wang,C.B., Liu, G.Y.2015.Environmental life cycle assessment of a small hydropowerplant in China.Int J Life Cycle Assess. 20, 796–806(SCI,EI)
[47] Zhang, L.X., Feng, Y.Y.,Zhao, B.H.2015.Disaggregation of energy-saving targets for China's provinces:modeling resultsand real choices. Journal of Cleaner Production.103,837-846 (SCI,EI)
[48]Cai, B.F., Yang, W.S., Zhang,L.X.*, Feng, Y.Y. 2014. China CO2 emissions performance analysis atsub-province level. Environmental Engineeringand ManagementJournal. online
[49]Hao, Y., Su, M.R., Zhang,L.X., Cai, Y.P., Yang, Z.F.2015. Integrated accounting of urban carboncycle in Guangyuan, a mountainouscity of China: the impacts of earthquake andreconstruction. Journal of CleanerProduction. 103, 231-240(SCI,EI)
[50]Zhu, J., Wang, X., Zhang,L.X., Cheng, H.G., Yang, Z.F.2015. System dynamics modeling of theinfluence of the TN/TP concentrations insocioeconomic water on NDVI in shallowlakes. Ecological Engineering.76, 27-35(SCI,EI)
[51]Liu, G.Y., Yang, Z.F., Chen, B., Zhang,L.X., Zhang, Y., Su, M.R.2015. An Ecological Network Perspective in ImprovingReserve Design and Connectivity:A Case Study of Wuyishan Nature Reserve inChina. Ecological Modelling. 306,185-194(SCI,EI)
[52]Wang, J.N., Cai, B.F., Zhang,L.X., Cao, D., Liu, L.C., Zhou,Y., Zhang, Z.S. and Xue, W.B. 2014.Highresolution carbon dioxide emission griddeddata for China derived from pointsources. Environ. Sci. Technol. 48, 7085−7093(SCI,EI)
[53]Qiao Z., Tian, G.J., Zhang,L.X., Xu, X.L.2014.Influences ofUrban Expansion on Urban Heat Island inBeijing during 1989–2010.Advances inMeteorology.1-11 (SCI)
[54] Zhang, L.X., Hu, Q.H., Zhang,F.2014.Input-outputmodeling for urban energy consumption in Beijing: Dynamicsand Comparison. Plosone 9(3):1-11(SCI)
[55] Zhang, L.X., Wang,C.B.2014.Energyand GHG Analysis of Rural Household Biogas Systems in China.Energies, 7,767-784 (SCI, EI)
[56] Zhang, L.X., Wang, C.B., Bahaj,A.S. 2014.Carbon emissions by rural energy in China. Renewable Energy. 66,641-649 (SSCI, EI)
[57]Cai B.F., Zhang, L.X. * 2014.UrbanCO2 emissions in China:Spatial boundary and performance comparison. EnergyPolicy. 66, 557-567(SCI, EI)
[58] Zhang, L.X., Pang, M.Y.,Wang, C.B.,2014.Emergy analysis of a small hydropower plant in southwesternChina.Ecological Indicators. 38, 81–88(SCI, EI)
[59]Shi W.F., Zeng W.H., Zhang,L.X.2013. Modeling the vulnerability of an industrial system: Anidealsystem of a simplified reactor vessel. Safety Science. 59, 193-199(SCI,EI)
[60]Liu G.Y., Yang Z.F., Chen B., Zhang, Y., Zhang, L.X. 2013. Modelling a thermodynamic-basedcomparativeframework for urban sustainability: Incorporating economic andecologicallosses into emergy analysis. Ecological Modelling, 252, 280-287(SCI,EI)
[61]Liu G.Y., Yang Z.F., Chen B., Zhang, Y., Su, M.R., Zhang, L.X.2013.Emergy Evaluation oftheUrban Solid Waste Handling in Liaoning Province, China. Energies 2013,6(10),5486-5506(SCI, EI)
[62]Su M.R., Yang Z.F., Chen B., Liu G.Y., Zhang Y., Zhang, L.X., Xu L.Y., Zhao Y.W.UrbanEcosystem Health Assessment and its Application in Management: AMulti-ScalePerspective. Entropy, 2013, 15(1): 1-9. (SCI)
[63]Su M.R., Zhang Y., Liu G.Y., Xu, L.Y., Zhang, L.X., Yang, Z.F., 2013.Urban Ecosystem HealthAssessment:Perspectives and Chinese Practice. International Journal ofEnvironment Researchand Public Health 10, 5874-5885 (SCI)
[64]Wang C.B., Zhang, L.X.*,Liu J. 2013. Cost of non-renewable energy in production of wood pelletsinChina. Frontiers of Earth Science. 7(2):199-205(SCI)
[65]Feng, Y.Y., Chen, S.Q., Zhang,L.X. *2013. System dynamics modeling for urban energy consumption andCO2emissions: A case study of Beijing, China. Ecological Modelling 252,44–52(SCI,EI)
[66] Zhang, L.X.*, Wang,C.B., Song, B.2013.Carbon emission reduction potential of a typical householdbiogas system inrural China. Journal of Cleaner Production 47, 415–421 (SCI,EI)
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中文論文
[1]趙元浩,張力小,梁賽,郝岩,龐明月,王長波.生命周期視角下廢棄餐飲油脂煉製生物柴油的環境效益分析.環境科學學報.2019,XX(XX):1-8.
[2]曹明蘭,李亞東,張力小.浙南海岸帶紅樹林建設情景設計與模擬.中國人口·資源與環境.2018 28(12): 42-45
[3]熊欣,張力小*,張鵬鵬,郝岩,常遠,王燦.城市食物代謝的動態過程及其水-碳足跡回響—以北京市為例.自然資源學報.2018, 33(11): 1886-1896
[4]張江雪,張力小,李.綠色技術創新:制度障礙與政策體系.中國行政管理.2018,392(2):153-155
[5]唐守娟,張力小,龐明月,郝岩.基於能值分析的中國潮汐能發電可持續性研究——以浙江省江廈潮汐試驗電站為例.生態學雜誌, 2017 , 36 (4):1060-1066
[6]葛榮鳳,許開鵬,遲妍妍,王晶晶,張力小,張簫,張麗苹.京津冀地區礦產資源開發的生態環境影響研究.中國環境管理.2017.3,47-51
[7]王長波,陳永生,張力小,常遠,龐明月.秸稈壓塊與燃煤供熱系統生命周期環境排放對比研究. 環境科學學報. 2017.
[8]楊舉華,張力小*,王長波,蔡宴朋.郝岩.基於混合生命周期分析的我國海上風電場能耗及溫室氣體排放研究.環境科學學報.2017, 37 (2) :786-792
[9]葛榮鳳,王京麗,張力小*,田光進,馮悅怡.北京市城市化進程中熱環境回響.生態學報,2016,36(19):
[10]葛榮鳳,張力小*,王京麗,田光進,馮悅怡.城市熱島效應的多尺度變化特徵及其周期分析—以北京市為例.2016.52(2):210-215
[11]曹明蘭,張力小*,王強.無人機遙感影像中行道樹信息快速提取 [J]. 中南林業科技大學學報,2016, 36(10):89-93
[12]王長波,張力小*,龐明月.生命周期評價方法研究綜述——兼論混合生命周期評價的發展與套用.自然資源學報.2015,30(7):1232-1242
[13]龐明月,張力小*,王長波.基於能值分析的我國小水電生態影響研究.生態學報,生態學報,2015,35(8):2741-2749.
[14]蔡博峰,張力小.上海城市二氧化碳排放空間特徵.氣候變化研究進展.2014.10(6):417-426
[15]馮悅怡,胡潭高,張力小*.城市公園景觀空間結構對其熱環境效應的影響研究.生態學報,2014,34( 12): 3179-3187.
[16]馮悅怡,李恩敬,張力小.校園綠地夏季小氣候效應分析.北京大學學報(自然科學版)2014, 50(9):812-818
[17]龐明月,張力小∗,王長波.基於生態能量視角的我國小水電可持續性分析.生態學報,2014,3: 537-545
[18]張力小,馬奇菊.投入產出技術在城市環境總體規劃中的套用研究.環境科學與管理.2013.38(12):117-121
[19]張力小,馮悅怡,胡秋紅.城市能源系統的體現能過程解析——以北京市為例.能源科學發展,2013,1(3):22-30
[20]馮悅怡,張力小.城市節能與碳減排政策情景分析——以北京市為例. 資源科學 ,2012,34(3):541-550
[21]張力小,胡秋紅.城市物質能量代謝相關研究述評-兼論資源代謝的內涵與研究方法.自然資源學報.2011, 26(10):1801-1810
[22]王長波,張力小.中國農村能源消費的碳排放核算. 農業工程學報.2011,27(supp1), 6-11(EI).
[23]張力小,胡秋紅,王長波.中國農村能源消費的時空分布特徵及其政策演變.農業工程學報.2011.27(1),1-9(EI)
[24]胡秋紅,張力小,王長波.兩種典型養雞模式的能值分析.生態學報.2011,31(23):7227-7234
[25]張力小.關於重大生態建設工程系統整合的思考.中國人口﹒資源與環境. 2011,21(12):73-77
[26]梁競,張力小.基於Theil指數的城市能源消費空間差異測度分析.中國人口資源與環境.2010,20(3):85-88
[27]張力小,梁競.區域資源稟賦對資源利用效率影響研究.自然資源學報.2010,25(7):1-11
[28]梁競,張力小.中國省會城市能源消費的空間分布特徵分析.資源科學.2009,31(12):2086-2092
[29]張力小,劉傑.2009.北方沙漠化地區生態移民的關鍵問題.生態學雜誌,28(7):1394-1398
[30]張力小,楊志峰,陳彬等.2008.基於生物物理視角的城市生態競爭力.生態學報,28(9):4344-4351
[31]張力小,楊志峰,張妍.生態邊緣正負效應的理論分析.中國人口資源與環境.2007,17(5):1-4
[32]張力小.中國北方農牧交錯帶農牧業選擇適宜性分析——以科爾沁沙地為例.水土保持研究.2007, 14(5):44-47
[33]張力小.人地作用關係中生態陷阱現象解析.生態學報.2006,26(7):216-2173
[34]宋波;張力小.套用牧草生長—消費模型分析牧民的放牧行為——作為對政府管理行為的建議. 草業學報.2005,14(3):11-15
[35]張力小,宋豫秦.三種生產理論在北方荒漠化地區人地系統分析中的套用.中國人口、資源與環境.2003,13(6):101-104
[36]張力小,宋豫秦.三北防護林體系工程政策有效性分析.北京大學學報(自然科學版).2003,39(4):594-600
[37]張力小,何英.西部大開發退耕還林(草)的政策有效性評析.林業科學,2002,38(1):130-13
[38]張力小,宋豫秦.青藏高原的隆起對中國沙漠與沙漠化時空格局的影響. 中國人口、資源與環境.2001,11(4):98-101
[39]宋豫秦,張力小等.淮河流域人地系統的自組織分析.中國人口、資源與環境.2002,12(4):85-88
[40]前川孝昭,宋豫秦,程必定,張力小.淮河流域可持續發展研究的重點問題. 中國人口、資源與環境.2002,12(4):77-80
[41]曹淑艷,宋豫秦,程必定,張振亞,張力小.淮河流域可持續發展狀態評價. 中國人口、資源與環境.2002,12(4):81-84
[42]宋豫秦,張力小.歷史時期我國沙塵暴東漸原因分析.中國沙漠.2002,22(6):632-635
[43]蔡博峰,張力小等.我國北方農牧交錯帶人地系統脆弱性芻議.環境保護2002,11:22-27
[44]宋豫秦,前川孝昭,張振亞,魏斌,張力小.《淮河流域可持續發展戰略研究》擷要.長江流域資源與環境.2002,11(4):349-351
[45]宋豫秦,張力小等.耗散結構理論在我國北方農牧交錯帶人地系統分析中的套用, 中國沙漠,2000,20(supp):15-21
[46]宋豫秦,張力小等.科爾沁沙地襯膜水稻與灘涂水稻主要營養元素分析.中國沙漠2000,20(supp): 77-80
[47]宋豫秦,曹淑艷,張力小.試論中國北方農牧交錯帶人地系統的主要特徵及其度量指標——以科爾沁沙地為例,中國沙漠2000,20(supp): 53-57
[48]宋豫秦,曹淑艷,張力小.試論景觀格局在荒漠化研究中的套用.中國沙漠2000,20(supp): 73-76
榮譽獎勵
2016年高等學校科學研究優秀成果獎(科學技術)二等獎
2010年高等學校科學研究優秀成果獎(科學技術)一等獎
2012年國家科技進步二等獎