2020年实验室发表论文发表时间:2021-12-09 15:57 1. Aromatic hydrocarbons production and synergistic effect of plastics and biomass via one-pot catalytic co-hydropyrolysis on HZSM-5. WenjunChen, JifuLu, ChangsenZhang, YunyunXie, YuhangWang, JieWang, RuiqinZhang. Journal of Analytical and Applied Pyrolysis. 2020, 147, 104800. 2. Emission characteristic and environmental impact of process-based VOCs from prebaked anode manufacturing industry in Zhengzhou, China. ShijieHan, QingyanZhao, RuiqinZhang, YonggangLiu, ChenLi, YishunZhang, YidanLi, ShashaYin, QisheYan. Atmospheric Pollution Research. 2020, 11(1), 67-77. 3. Photocatalyst Co3O4/red phosphorus for efficient degradation of malachite green under visible light irradiation. JianliTao, MengZhang, XiangGao, HaoZhao, ZhenpengRen, DonghuiLi, JiaojiaoLi, RuiqinZhang, YonggangLiu, YunpuZhai. Materials Chemistry and Physics. 2020, 240(15), 122185.4. Pollutant emission reduction of energy efficiency enhancement and energy cascade utilization in an energy-intensive industrial park in China.Jialin Ji,Shanshan Wang,Yilan Ma,Chunyang Lu,Tian Liang, Ruiqin Zhang. Environmental Science and Pollution Research. 2020, 27(28), 35017-35030. 5. Characteristics, source apportionment and health risks of ambient VOCs during high ozone period at an urban site in central plain, China. YidanLi, ShashaYin, ShijieYu, MinghaoYuan, ZheDong, DongZhang, LiumingYang, RuiqinZhanga. Chemosphere. 2020, 250, 126283. 6. Uncovering the benefits of integrating industrial symbiosis and urban symbiosis targeting a resource-dependent city: A case study of Yongcheng, China. ChunyangLu, ShanshanWang, KeWang, YuGao, RuiqinZhang. Journal of Cleaner Production. 2020, 255,120210. 8. On-road tailpipe emission characteristics and ozone formation potentials of VOCs from gasoline, diesel and liquefied petroleum gas fueled vehicles. MengleiWang, ShunyiLi, RenchengZhu, RuiqinZhang, LeiZu, YunjingWang, XiaofengBao. Atmospheric Environment. 2020, 223,117294. 9. Effect of ammonia on fine-particle pH in agricultural regions of China: comparison between urban and rural sites. Shenbo Wang,Lingling Wang,Yuqing Li,Chen Wang,Weisi Wang,Shasha Yin, Ruiqin Zhang. Atmospheric Chemistry and Physics. 2020, 20(5), 2719-2734. 11. Facile fabrication nano-sized red phosphorus with enhanced photocatalytic activity by hydrothermal and ultrasonic method. ZhenpengRen, DonghuiLi, QiangXue, JiaojiaoLi, YueweiSun, RuiqinZhang, YunpuZhai, YonggangLiu. Catalysis Today. 2020, 340,115-120. 12. Typical industrial sector-based volatile organic compounds source profiles and ozone formation potentials in Zhengzhou, China. YishunZhang, ChenLi, QisheYan, ShijieHan, QingyanZhao, LiumingYang, YonggangLiu, RuiqinZhang. Atmospheric Pollution Research. 2020, 11(5), 841-850. 13. County-level emission inventory for rural residential combustion and emission reduction potential by technology optimization: A case study of Henan, China. MingyueZhu, LeiLiu, ShashaYin, JingwangZhang, KeWang, RuiqinZhang. Atmospheric Environment. 2020, 228, 117436. 14. Characteristics, sources, and reactions of nitrous acid during winter at an urban site in the Central Plains Economic Region in China. Qi Hao, Nan Jiang*, Ruiqin Zhang, Liuming Yang, Shengli Li. Atmospheric Chemistry and Physics. 2020, 20, 7087–7102. 15. Characteristics and formation mechanisms of secondary inorganic ions in PM2.5 during winter in a central city of China: Based on a high time resolution data. Liuming Yang, Shenbo Wang, Shiguang Duan, Qishe Yan, Nan Jiang*, Ruiqin Zhang**. Atmospheric Research. 2020, 233, 104696. 16. Composition analysis of PM2.5 at multiple sites in Zhengzhou, China: Implications for characterization and source apportionment at different pollution levels. Xiaohan Liu, Nan Jiang*, Ruiqin Zhang, Xue Yu, Shengli Li, Qingqing Miao.Environmental Science and Pollution Research. 2021, 28, 59329–59344. 17. Visible-Light Responsive TiO2-Based Materials for Efficient Solar Energy Utilization. Wei Zhang, Haili He, Haoze Li, Linlin Duan, Lianhai Zu, Yunpu Zhai, Wei Li*, Lianzhou Wang*, Honggang Fu*, Dongyuan Zhao. Advanced Energy Materials.2020, 11(15), 2003303. 18. Oxygen-doped and nitrogen vacancy co-modified carbon nitride for the efficient visible light photocatalytic hydrogen evolution. Yuanyuan Yang, Wenting Guo, Yunpu Zhai*, Qianwei Jin, Hao Zhao, Ruiqin Zhang, Yonggang Liu*. New Journal of Chemistry. 2020, 44(38), 16320-16328. 19. A recent emission inventory of multiple air pollutant, PM2.5 chemical species and its spatial-temporal characteristics in Central China. LingBai, XuanLu, ShashaYin, HuanZhang, ShuangliangMa, ChenWang, YasongLi, RuiqinZhang. Journal of Cleaner Production. 2020, 269, 122114. 20. Establishment and evaluation of anthropogenic black and organic carbon emissions over Central Plain, China. HuanZhang, ShashaYin, LingBai, XuanLu, ChenWang, XingkeGu, YidanLi. Atmospheric Environment. 2020, 226, 117406. 21. Role of ammonia on fine-particle pH in agricultural regions of China: Comparison between urban and rural sites. Shenbo Wang, Lingling Wang, Yuqing Li, Chen Wang, Ruiqin Zhang. Atmospheric. Chemistry and Physics. 2020, 20, 2719-2734.22. Spatiotemporal characterization and regional contributions of O3 and NO2: An investigation of two years of monitoring data in Henan, China. ShijieYu, ShashaYin, RuiqinZhang, LinglingWang, FangchengSu, YixiangZhang, JianYang. Journal of Environmental Sciences. 2020, 90, 29-40. 23. Promoting the Generation of Active Oxygen over Ag-Modified Nanoflower-like α-MnO2 for Soot Oxidation: Experimental and DFT Studies. Yuhang Wang, Longzhu Zhang, Changsen Zhang*, Yunyun Xie, Wenjun Chen, Jie Wang, Ruiqin Zhang. Industrial & Engineering Chemistry Research. 2020, 59, 22, 10407–10417. 24. Facile construction of 3D hierarchical flake ball-shaped gamma-AgI/Bi2WO6 Z- scheme heterojunction towards enhanced visible-light photocatalytic performance. Peiying Wang, Yuyang Cao, Xiaohong Zhou, Chengyang Xu, Qishe Yan*. Applied Surface Science. 2020, 531, 147345. 25. Synthesis and characterization of Z-scheme Ag2WO4/Bi2MoO6 heterojunction photocatalyst: enhanced visible-light photodegradation of organic pollutant. Yushan Si, Yongyang Chen, Miao Xu, Xinyu Zhang, Fenfang Zuo, Qishe Yan*. Journal of Materials Science: Materials in Electronics. 2020, 31(2), 1191-1199. 26. Assessment of greenhouse gas emissions reduction potential in an industrial park in China. Zhang, M., Wang, C., Wang, S., Wang, K., Zhang, R.Clean Technologies and Environmental Policy, 2020, 22(7), pp. 1435–1448 27. 郑州市大气PM2.5中多环芳烃的污染特征及健康风险评价. 董喆, 姜楠, 王佳, 李利萍, 郭蒙蒙, 张瑞芹*. 郑州大学学报(理学版)[J],2020,52(2):108-113. 28. 郑州市氧化铝工业炉窑污染物及源谱特征. 靳孟洁, 张轶舜, 赵金帅, 何瑞东, 张瑞芹, 燕启社*. 中国环境科学[J], 2020,40(3): 1023-1029. 29. 郑州市某城区冬季不同污染水平大气VOCs特征及源解析. 李一丹, 尹沙沙*, 张瑞芹, 于世杰, 杨健, 张栋.环境科学[J], 2020,41(8):3500-3510. 30. 郑州市VOCs组分排放清单及其臭氧生成潜势. 卢轩, 张瑞芹, 韩跞锎*.环境科学[J], 2020,41(10):4426-4435. 31. 河南省臭氧污染特征与气象因子影响分析. 齐艳杰, 于世杰, 杨健, 尹沙沙*, 程家合, 张瑞芹. 环境科学[J], 2020,41(2):587-599. 32. 郑州市春季大气污染过程VOCs特征、臭氧生成潜势及源解析. 任义君, 马双良, 王思维, 于世杰, 李一丹, 张瑞芹*, 尹沙沙.环境科学[J], 2020,41(6):2577-2585. 33. 安阳市大气PM2.5中水溶性离子季节特征及来源解析. 孙有昌,姜楠*,王申博,段时光, 张瑞芹*.环境科学[J], 2020,41(1):75-81. 34. 河南省春节和疫情影响情景下PM2.5组分特征. 王申博, 范相阁, 和兵, 张瑞芹*,王玲玲. 中国环境科学[J], 2020,40(12): 5115-5123. 35. 郑州市民运会期间大气PM2.5改善效果评估. 王申博, 娄亚敏, 徐艺斐, 袁明浩, 苏方成, 张瑞芹*.环境科学[J], 2020,41(7):3004-3011. 36. 安阳市近地面臭氧污染特征及气象影响因素分析. 杨健, 尹沙沙*, 于世杰, 王丽娟, 张瑞芹, 郝建尤, 苏方成, 齐艳杰.环境科学[J], 2020,41(1):115-124. 37. 郑州市PM2.5化学组分的季节变化特征及来源解析. 张剑飞, 姜楠*, 段时光, 孙有昌, 郝祺, 张瑞芹.环境科学[J], 2020,41(11):4813-4824. 38. 郑州市少数民族运动会期间O3及VOCs污染特征的演变和评估. 赵金帅, 于世杰, 王楠, 马双良, 王维思, 尹沙沙, 李一丹, 张栋, 张瑞芹*. 环境科学[J], 2020,41(10):4436-4445. 39. 郑州市某城区冬季不同污染水平大气VOCs特征及源解析. 李一丹, 尹沙沙*, 张瑞芹. 环境科学, 2020,41(8):3500-3510. 40. 工业园区能量梯级利用节能减排效益分析及其对城市空气质量影响评估. 姬嘉琳, 马伊澜, 王姗姗*, 龙文琪, 王克, 张瑞芹. 环境科学学报,2020, 5(40), 1884-1893. 41. 郑州市民运会期间空气质量改善效果评估. 苏方成, 徐起翔, 王克, 尹沙沙, 王申博, 张瑞芹*. 2020中国环境科学学会科学技术年会论文集(第一卷)2020-09-21. 河南省第一期碳核算及碳资产管理培训 * 姓名:* 身份证号码: |