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程金平(Cheng Jinping)
职称:研究员 电话: 地址:
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一、大气环境与应对气候变化
在大气污染形成机制、臭氧/VOCs/颗粒物减排特征和削减机理、源解析、污染源高精度动态排放清单、重污染应急等方面具有很好的工作积累; 曾参与2016年杭州G20峰会、2018年上合组织青岛峰会、2018-2021年连续4年中国进博会空气质量保障,参与京津冀及其周边“2+26”城空气质量保障; 团队成员驻点十余个地级市生态局,深度参与当地政府的蓝天保卫战,为当地PM2.5、PM10、扬尘、臭氧的改善提供精准的科学策略,为多个城市制定了大气污染应急措施方案,负责驻点过的地级市空气质量排名得到明显改善。在碳核查、碳达峰、碳污协同减排、应对气候变化领域具有一定的工作基础,负责编制多个城市高精度温室气体排放清单,参与了多个省(直辖市)碳核查工作,参与了多个城市碳监测方案的编制,开发出具有知识产权的碳中和技术和工艺。
二、新污染物管理与环境风险
在新污染物环境风险筛查、环境风险评估方法、典型新污染物排放清单核算、监测方法、管控措施等方面具有一定的工作基础,曾在日本国立水俣病研究所WHO合作中心高级访问,发表新污染物复合暴露风险文章20余篇。
三、园区智慧环保与基于大数据非现场监管
在园区异味溯源、区域风险、复合污染过程及其复合反应机理方面具有很好的工作积累。在园区智慧环保和大数据应用技术方面开展了大量工作,建立了基于大数据的在线数据审核、填充、补遗方法,构建了基于大数据非现场监管跟踪技术;建立了园区污染源活动水平、排放量与环境质量等大数据实时汇聚、跟踪和融合方法体系,并得到了应用。
四、环境规划与环境风险应急管理
在环境风险预警、形成过程和爆发机制方面均具有很好的工作积累。为多个地方政府编制过“环保规划”,“水、大气、噪音环境功能区划”,“总量减排规划”,“节能规划和循环经济发展规划”,“农村环境综合整治规划”等,并通过当地政府审批执行;为多个地方生态局建立了“环境风险分级分区防控体系”、“环境应急管理平台”,并应用于当地日常环境应急管理工作中。
五、海洋环境领域
在赤潮毒素快速检测技术、海岛生态环境保护、海洋疏浚物处理处置及其对倾倒区影响方面均具有工作积累,申请相关专利3项,作为副主编出版专著3部,获海洋奖项3项。
六、土壤与地下水修复领域
在场地风险评估和修复技术方面具有一定的工作积累,作为副主编出版专著1部;曾为矿山场地、石化场地、重金属污染场地进行过风险评估和修复方案设计,修复的场地均得到当地政府部门的验收通过。
先后作为项目负责人或主要参与人,承担包括国家自然科学基金、国家863、国家973、上海科委、环保部门、海洋部门及企业委托等在内的项目200余项,代表课题如下:
发表刊物论文100余篇,其中英文SCI收录论文50余篇,作为副主编出版专著5部,代表论文如下:
[1] Jinping Cheng*, Masatake Fujimura, Wenchang Zhao, Wenhua Wang. Neurobehavioral effects, c-Fos/Jun expression and tissue distribution in rat offspring prenatally co-exposed to MeHg and PFOA: PFOA impairs Hg retention. Chemosphere 2013,91: 758–764.
[2] Jinping Cheng*, Wenchang Zhao, Qian Wang, Xiaojie Liu, Wenhua Wang. Accumulation of mercury, selenium and PCBs in domestic duck brain, liver and egg from a contaminated area with an investigation of their redox responses. Environmental Toxicology and Pharmacology, 2013,35:388–394.
[3] Cheng Jinping *, Yang Yichen, Ma Jing, Wang Wenhua, Liu Xiaojie, Sakamoto Mineshi , Qu Yiya, Shi Wei. Assessing noxious effects of dietary exposure to methylmercury, PCBs and Se coexisting in environmentally contaminated rice in male mice. Environ Int, 2009,35, 619-625.
[4] Wenchang Zhao,Jinping Cheng*, Jinmin Gu,Yuanyuan Liu ,Masatake Fujimura,Wenhua Wang. Assessment of neurotoxic effects and brain region distribution in rat offspring prenatally co-exposed to low doses of BDE-99 and methylmercury. Chemosphere,2014, 112: 170-176.
[5]Han DM, Fu QY, Gao S, Li L, Ma YG, Qiao LP, Xu H, Liang S, Cheng PF, Chen XJ, Zhou Y, Yu JZ, Cheng JP*. Non-polar organic compounds in autumn and winter aerosols in a typical city of eastern China: size distribution and impact of gas–particle partitioning on PM2.5 source apportionment. Atmos. Chem. Phys., 18(13), 9375–9391, 2018.
[6] Han DM, Zhang JQ, Hu ZH, Ma YG, Duan YS, Han Y, Chen XJ, Zhou Y, Cheng JP*, Wang WH. Particulate mercury in ambient air in Shanghai, China: Size-specific distribution, gas–particle partitioning, and association with carbonaceous composition. Environ. Pollution, 238, 543–553, 2018.
[7] Han DM, Gao S, Fu QY, Cheng JP*, Chen XJ, Xu H, Liang S, Zhou Y, Ma YN. Do volatile organic compounds (VOCs) emitted from petrochemical industries affect regional PM2.5? Atmos. Res., 209, 123–130, 2018.
[8] Han DM, Fu QY, Gao S, Hu ZH, Zhang XF, Chen XL, Feng JJ, Cheng JP*, Wang WH. Two-year monitoring of gaseous elementary mercury in a typical iron–steel plant in Yangtze River Delta, China: Characterization and estimation of its dynamic oxidation. Sci. Total Environ., 657, 1217–1226, 2019.
[9] Han DM, Ma YG, Huang C, Zhang XF, Xu H, Zhou Y, Liang S, Chen XJ, Huang XQ, Liao HX, Fu S, Hu X, Cheng JP*. Occurrence and source apportionment of perfluoroalkyl acids (PFAAs) in the atmosphere in China. Atmos. Chem. Phys., 19, 14107—14117, 2019.
[10] Chen XJ, Liu QZ, Sheng T, Li F, Xu ZF, Han DM, Zhang XF, Huang XQ, Fu QY, Cheng JP*. A high temporal-spatial emission inventory and updated emission factors for coal-fired power plants in Shanghai, China. Sci. Total Environ., 688, 94–102, 2019.
[11] Chen XJ, Liu QZ, Yuan C, Sheng T, Zhang XF, Han DM, Xu ZF, Huang XQ, Liao HX, Jiang YL, Dong W, Fu QY, Cheng JP*. Emission characteristics of fine particulate matter from ultra-low emission power plants. Environ. Pollution, 255, 113157, 2019.
[12] Wang ZY, Feng JJ*, Fu QY, Gao S, Chen XJ, Cheng JP*. Quality control of online monitoring data of air pollutants using artificial neural networks. Air Quality, Atmos. Health, 12, 1189–1196, 2019.
[13] Zhang XF, Yin YY, Wen JH, Huang SL, Han DM, Chen XJ, Cheng JP*. Characteristics, reactivity and source apportionment of ambient volatile organic compounds (VOCs) in a typical tourist city. Atmos. Environ., 215, 1189–1196, 2019.
[13] Haohao Jia,Juntao Huo, Qingyan Fu, Yusen Duan, Yanfen Lin, Xiaodan Jin, Xue Hu,Jinping Cheng*. Insights into chemical composition, abatement mechanisms and regional transport of atmospheric pollutants in the Yangtze River Delta region, China during the COVID-19 outbreak control period.Environmental Pollution 267 (2020) 115612.
[14] ShuangFu ,MeixiuGuo,Jinping Cheng⁎。Improving VOCs control strategies based on source characteristics and chemical reactivity in a typical coastal city of South China through measurement and emission inventory. Science of the Total Environment 744 (2020) 140825
[15] Xu, H., Xiao, K., Cheng, J., Yu, Y., Liu, Q., Pan, J., Chen, J., Chen, F., Fu, Q.* Characterizing aircraft engine fuel and emission parameters of taxi phase for Shanghai Hongqiao International Airport with aircraft operational data. Sci. Total Environ. 720, 137431, 2020.
[16] Xu, H., Yan, C., Fu, Q., Xiao, K., Yu, Y., Han, D., Wang, W., Cheng, J.* Possible environmental effects on the spread of COVID-19 in China. Sci. Total Environ. 731, 139211.
[17] Xu, H., Fu, Q., Yu, Y., Liu, Q., Pan, J., Cheng, J.*, Wang, Z., Liu, L. Quantifying aircraft emissions of Shanghai Pudong International Airport with aircraft ground operational data. Environ. Pollut. 261, 114115, 2020.
[18]Jia HH, Gao S, Duan YS, Fu QY, Che X, Xu H, Wang Z, Cheng JP*. Investigation of health risk assessment and odor pollution of volatile organic compounds from industrial activities in the Yangtze River Delta region, China. Ecotoxicol. Environ. Saf., 208, 111474, 2021.
[19] Fan LP, Fu S, Wang X, Fu QY, Jia HH, Xu H, Qin GM, Hu X, Cheng JP*. Spatiotemporal variations of ambient air pollutants and meteorological influences over typical urban agglomerations in China during the COVID-19 lockdown. J Environ Sci (China). 106, 26-38, 2021.
[20]Jia, HH, Huo, JT, Fu, QY, Duan, YS, Lin, YF, Hu, X, Fan, LP, Cheng, JP*. Atmospheric characteristics and population exposure assessment of black carbon at a regional representative site in the Yangtze River Delta region, China based on the five-year monitoring. Sci. Total Environ., 777, 145990, 2021.
[21]Jia, HH, Pan, J, Huo, JT, Fu, QY, Duan, YS, Lin, YF, Hu, X, Cheng, JP*. Atmospheric black carbon in urban and traffic areas in Shanghai: Temporal variations, source characteristics, and population exposure. Environ Pollut., 289, 117868, 2021.
[22]Jia, HH, Huo, JT, Fu, QY, Duan, YS, Lin, YF, He, YY, Cheng, JP*. Insights into characteristics, source variation, and health risks mitigation of airborne heavy metal(loid)s in Shanghai during China International Import Expo. Urban Clim., 44, 101201, 2022.
[23]Hao Xu, Kai Xiao, Jun Pan, Qingyan Fu, Jinping Cheng*, et tal. Evidence of aircraft activity impact on local air quality: A study in the context of uncommon airport operation. journal of environmental sciences 125 (2023) 603–615.
[24] Qing-rui Zeng, Zi-ang Jia, Xu Liu, Jin-ping Cheng*, et al . Multi-Interface polarization engineering constructed 1T-2H MoS2 QDs/ Y-NaBi(MoO4)2 multiple heterostructure for high-efficient piezoelectric-photoelectrocatalysis PDE-5i degradation. Applied Catalysis B: Environmental 327 (2023) 122460.
[25] Zining Huang, Haohao Jia, Xiahong Shi, Zhengyu Xie, Jinping Cheng*. Revealing the impact of China’s clean air policies on synergetic control of CO2 and air pollutant emissions: Evidence from Chinese cities, Journal of Environmental Management 344 (2023) 118373.
[26] Zhengyu Xie, Haohao Jia,Yiwen Cai, Zining Huang, Tongchen Luo, Jinping Cheng*. Emission accounting, sectoral contributions and gridded spatial distribution of greenhouse gases in a typical petrochemical district of Shanghai,Atmospheric Pollution Research 14 (2023) 101776.
[27] Huarui Ren,Wei Dong,Qi Zhang ,Jinping Cheng *. Identification of priority pollutants at an integrated iron and steel facility based on environmental and health impacts in the Yangtze River Delta region, China.
Ecotoxicology and Environmental Safety 264 (2023) 115464.
[28] Qingrui Zeng, , Ziang Jia, Xu Liu, Jinping Cheng*. A novel 1T-2H MoS2/NaBi(MoO4)2 alternating-phase piezoelectric composites for high-efficient ultrasound-drived piezoelectric catalytic removal of Sildenafil. Process Safety and Environmental Protection 179 (2023) 314–328.
[29] Yuntong Dai , Xiahong Shi , Zining Huang , Weiyi Du , Jinping Cheng *. Proposal of policies based on temporal-spatial dynamic characteristics and co-benefits of CO2 and air pollutants from vehicles in Shanghai, China. Journal of Environmental Management 351 (2024) 119736.
[30] Xiahong Shi, Zining Huang, Yuntong Dai, Weiyi Du, Jinping Cheng *. Evaluating emission reduction potential and co-benefits of CO2 and air pollutants from mobile sources: A case study in Shanghai, China. Resources, Conservation & Recycling 202 (2024) 107347.
[1] 程金平,曾庆瑞,龙明策,龚佑沄,等. 一种二氧化碳吸收剂及其制备方法与应用,申请号 202210318855.3
[2] 程金平,曾庆瑞,龙明策,龚佑沄,等. 一种高疏水耐腐蚀的MOFs基复合材料制备方法及碳中和应用,申请号:202210520225.4
[3] 龙明策,程金平,等. 高效铺集二氧化碳的胺改性多孔分子筛及制备方法和应用,申请号:202210516342.3
[4] 程金平,龚佑沄,等. 一种疏水性MOFs复合材料制备方法及碳中和应用,申请号:202210631438.4
[5] 程金平,史夏虹,等. 基于在线数据的企业非现场跟踪分析方法、系统、介质及设备,申请号:202211384034.6.
[6] 程金平,史夏虹,等. 空气质量研判、污染溯源及应急管控建议生成方法及系统, 申请号:202310674787.9。
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