毕晓辉
近期热点
资料介绍
个人简历
教育背景1998.9-2002.7 吉林大学环境与资源学院 学士2002.9-2007.9 南开大学环境科学与工程学院 博士科研教学经历2007.7至今 南开大学环境科学与工程学院 教师2016.8-2017.7 美国RICE大学 访问学者科研项目主持科研项目:国家重点研发计划, 我国颗粒物源排放理化特征研究和示踪物谱库的建立,2016.07-2019.06.国家自然科学基金,基于稳定化学组分高分辨率粒径谱的大气颗粒物来源解析方法研究,2015.01-2017.12.中央高校基本科研业务费,基于化学质量平衡(CMB)模型的大气污染物综合来源解析方法研究,2016.01-2016.12.中央高校基本科研业务费,PM2.5测量不确定性影响因素评估及校验系统标准研究,2014.01-2015.12中央高校基本科研业务费,基于Calpuff-CMB复合模型的环境空气PM2.5中二次硫酸盐来源解析技术研究,2014.01-2014.12中央高校基本科研业务费,基于新型PCA-CMB模型的环境空气中重金属污染来源解析方法,2010.06-2012.05天津市环境监测中心,天津市典型场地扬尘样品信息库建立及模型运转分析,2016.06-2017.06天津滨海高新技术产业开发区城市管理和环境保护局,高新区大气污染成因分析,2015.12.01-12.31.陕西正大环保科技有限公司,颗粒物再悬浮采样器评估验证与可靠性分析研究,2015.07-2016.06.中科宇图天下科技有限公司, 洛阳市大气颗粒物源解析研究工作服务合同,2015.05-2016.05泰安市环境保护监测站, 泰安市大气中细颗粒物污染特性深度分析及来源解析项目,2015.04-2015.12.北京城市气象工程技术研究中心,北京地区气溶胶分级化学组分特征研究,2015.04-2016.10.安徽省环境监测中心站,合肥市环境空气中颗粒物来源解析研究,2014.11-2016.11河南省环境监测中心,河南省扬尘源清单编制,2014.7-2014.12克拉玛依市环境保护局,克拉玛依市PM2.5污染特性及防治对策研究(成分分析技术开发及应用部分),2014.09-2015.06.杭州市环境监测中心站,杭州市大气环境受体PM2.5成分分析技术开发与应用,2014.07-2015.04兰州市环境监测站,兰州市环境空气PM10和PM2.5来源解析研究, 2014.04-2015.12内蒙古自治区环境监测中心站,包头市大气颗粒物环境样品采集及化学分析,2013.12-2015.12.北京城市气象工程技术研究中心,北京地区气溶胶物理化学特征及其对低能见度形成的影响研究,2013.10-2014.06.杭州市环境监测中心站,杭州市环境空气细颗粒物化学组成分析技术开发与应用,2013.10-2014.05.青岛市环境监测中心站,青岛市空气颗粒物来源解析,2011.08-2012.09.荣誉与奖励天津市科技进步二等奖,北方特大型城市空气质量改善关键技术研究与综合示范,2016研究领域
"大气颗粒物来源解析技术方法;大气颗粒物综合源谱构建技术;大气综合观测技术与在线数据分析技术;扬尘源清单编制技术;大气污染成因与对策研究"近期论文
Bi X., Feng Y.*, Dai Q., Wu J., Zhang Q., Zhang W., Luo R., Cheng Y., Zhang J., Wang L., Yu Z., Zhang Y., Tian Y. Characteristics of the main primary source profiles of particulate matter across China from 1987 to 2017. Atmospheric Chemistry and Physics,19,3223-3243,2019. https://doi.org/10.5194/acp-19-3223-2019. 一区Dai Q., Bi X.*, Huangfu Y., Yang J., Li T., Khan J.Z, Song C., Xu J., Wu J., Zhang Y., Feng Y. A size-resolved chemical mass balance (SR-CMB) approach for source apportionment of ambient particulate matter by single element analysis. Atmospheric Environment, 197(2019), 45-52.一区Dai Q., Bi X.*, Song W., Li T., Liu B., Ding J., Xu J., Song C., Yang N., Schulze, B.C, Zhang Y., Feng Y., Hopke, P.K. Residential coal combustion as a source of primary sulfate in Xi'an, China. Atmospheric Environment, 196(2019), 66-76.一区Liu B., Bi X.*, Zhang J., Yuan J., Xiao Z., Dai Q., Feng Y., Zhang Y. Insight into the critical factors determining the particle number concentrations during summer at a megacity in China. Journal of Environmental Science, 2019,75(01):169-180.Li T., Bi X.*, Dai Q., Liu B., Han Y., You H., Wang L., Zhang J., Cheng Y., Zhang Y., Wu J., Tian Y., Feng Y. Improving spatial resolution of soil fugitive dust emission inventory using RS-GIS technology: An application case in Tianjin, China. Atmospheric Environment,191(2018), 46-54.Dai Q., Bi X.*, Liu B., Li L., Ding J., Song W., Bi S., Benjamin C. S., Song C., Wu J., Zhang Y., Feng Y., Hopke, P.K. Chemical nature of PM2.5 and PM10 in Xi'an, China: Insights into primary emissions and secondary particle formation. Environmental Pollution, 240(2018), 155-166.Fang X.Z., Bi X.H.*, Xu H., Wu J., Zhang Y., Feng Y.C. Source apportionment of ambient PM10 and PM2.5 in Haikou, China[J]. Atmospheric Research, 2017, 190:1-9.Liu, B.S., Yang, J.M., Yuan, J., Wang, J., Dai, Q.L., Li, T.K., Bi, X.H.*, Feng, Y.C., Xiao, Z.M., Zhang, Y.F., Xu, H. Source apportionment of atmospheric pollutants based on the online data by using PMF and ME2 models at a megacity, China. Atmospheric Research, 2017,185, 22–31.Liu B., Liang D., Yang J., Dai Q., Bi X.*, Feng Y., Yuan J., Xiao Z., Zhang Y., Xu H. Characterization and source apportionment of volatile organic compounds based on 1-year of observational data in Tianjin, China. Environmental Pollution, 2016, 218: 757-769.Liu, B.S., Song, Na., Dai, Q.L., Mei, R.B., Sui, B.H., Bi, X.H.*, Feng. Y.C. Chemical composition and source apportionment of ambient PM2.5 during the non-heating period in Taian, China. Atmospheric Research, 2016, 170, 23–33.Liu, B., Bi, X.*, Feng, Y., Dai, Q., Xiao, Z., & Li, L., et al. Fine carbonaceous aerosol characteristics at a megacity during the Chinese spring festival as given by OC/EC online measurements. Atmospheric Research, 2016, 181, 20-28.Xu, Hong; Han, Suqin; Bi Xiaohui* et al. Atmospheric metallic and arsenic pollution at an offshore drilling platform in the Bo Sea: A health risk assessment for the workers. Journal of Hazardous Materials, 2016, 304: 93-102.Dai, Q., Li, L., Li, T., Bi, X.*, Zhang, Y., & Wu, J., et al.. Atmospheric signature and potential sources of rare earth elements in size-resolved particulate matter in a megacity of china. Aerosol & Air Quality Research, 2016, 16(9), 2085-2095.Dai, Q., Li, L., Yang, J., Liu, B., Bi, X.*, & Wu, J., et al.. The fractionation and geochemical characteristics of rare earth elements measured in ambient size-resolved pm in an integrated iron and steelmaking industry zone. Environmental Science & Pollution Research, 2016, 23(17), 1-9.Dai, Qi-Li; Bi, Xiao-Hui*; Wu, Jian-Hui; et al. Characterization and Source Identification of Heavy Metals in Ambient PM10 and PM2.5 in an Integrated Iron and Steel Industry Zone Compared with a Background Site . Aerosol and Air Quality Research, 2015, 15(3): 875-887.Xu, Hong, Bi, Xiao-Hui*; Zheng, Wei-Wei; et al. Particulate matter mass and chemical component concentrations over four Chinese cities along the western Pacific coast. Environmental Science and Pollution Research,2015,22(3): 1940-1953.Chen, P., Bi, X.*, Zhang, J., Wu, J., & Feng, Y. Assessment of heavy metal pollution characteristics and human health risk of exposure to ambient PM2.5 in Tianjin, China. Particuology, 2015, 20(3), 104-109.Wang Q., Bi X.H.*, Wu Jian-Hui, Zhang Yu-Fen, Feng Yin-Chang. Heavy metals in urban ambient PM10 and soil background in eight cities around China[J]. Environmental Monitoring and Assessment, 2013, 185(2): 1473-1482.Han B., Bi X.H.*, Xue Y.H., Wu J.H., Zhu T., Zhang B.G., Ding J.Q., Du Y.X. Source apportionment of ambient PM10 in urban areas of Wuxi, China[J]. Frontiers of Environmental Science & Engineering in China, 2011, 5(4): 552-563.Xu H., Bi X.H.*, Feng Y.C., Lin F.M., Jiao L., Hong S.M., Liu W.G. Chemical Composition of Precipitation and its Sources in Hangzhou, China [J]. Environmental Monitoring and Assessment, 2011(183):581-592.Bi X.H., Feng Y*, Zhu T, Zhang Y, Wu J., Li X. Determination of Buffering Capacity of Total Suspended Particle and Its Source Apportionment Using the Chemical Mass Balance Approach [J]. Journal of Air &Waste Management Association, 2011, 61(2011): 7-13.Bi X.H., Feng Y*, Wu J, Wang Y, Zhu T. Source apportionment of PM10 in six cities of Northern China [J]. Atmospheric Environment, 2007, 41 (2007): 903-912.张家营, 刘保双, 毕晓辉*等. 天津市区夏季碳气溶胶特征及改进的二次有机碳估算方法[J]. 环境科学研究, 2018, 31(09): 1504-1518.程渊, 刘保双, 毕晓辉*等. 天津市区夏冬季环境空气PM2.5中碳组分污染特征及来源研究[J]. 环境科学学报, 2018, 38(9): 3394-3405.王露, 毕晓辉*等. 基于CALPUFF-CMB复合模型的燃煤源精细化来源解析[J]. 中国环境科学, 2018, 38(8): 2911-2920.杨佳美, 戴启立, 刘保双,毕晓辉*等. 关中地区背景点位环境空气PM2.5来源解析与多模型结果对比[J]. 环境科学研究, 2017, 30(2):184-192.王露,刘保双,毕晓辉*,等. 泰山顶PM2.5及其二次组分的输送路径与潜在源[J]. 环境科学研究, 2017, 30(10) :1505-1514.李立伟, 戴启立, 毕晓辉*,等. 杭州市冬季环境空气PM2.5中碳组分污染特征及来源[J]. 环境科学研究, 2017, 30(3):340-348.宋娜, 徐虹, 毕晓辉*,等. 海口市PM2.5和PM10来源解析[J]. 环境科学研究, 2015, 28(10):1501-1509.郑伟巍, 毕晓辉*, 吴建会,等. 宁波市大气挥发性有机物污染特征及关键活性组分[J]. 环境科学研究, 2014, 27(12):1411-1419.肖致美, 毕晓辉*, 冯银厂,等. 天津市大气颗粒物污染特征与来源构成变化[J]. 环境科学研究, 2014, 27(3):246-252.王敬, 毕晓辉*, 冯银厂,等. 乌鲁木齐市重污染期间PM2.5污染特征与来源解析[J]. 环境科学研究, 2014, 27(2):113-119.方小珍, 孙列, 毕晓辉*,等. 宁波城市扬尘化学组成特征及其来源解析[J]. 环境污染与防治, 2014, 36(1):55-59.陈培飞, 张嘉琪, 毕晓辉*,等. 天津市环境空气PM10和PM2.5中典型重金属污染特征与来源研究[J]. 南开大学学报(自然科学版), 2013(6):1-7.徐虹, 张晓勇, 毕晓辉*,等. 中国PM2.5中水溶性硫酸盐和硝酸盐的时空变化特征[J]. 南开大学学报(自然科学版), 2013(6):32-40.韩燕, 徐虹, 毕晓辉*,等. 降水对颗粒物的冲刷作用及其对雨水化学的影响[J]. 中国环境科学, 2013, 33(2):193-200.吴虹, 毕晓辉*, 冯银厂,等. 天津市大气颗粒物源成分谱特征研究[C]// 中国环境科学学会2013年学术年会. 2013.徐虹, 毕晓辉*, 冯银厂. 中国典型沿海城市PM2.5化学组分特征[C]// 中国环境科学学会2013年学术年会. 2013.肖致美, 毕晓辉*, 冯银厂,等. 宁波市环境空气中PM10和PM2.5来源解析[J]. 环境科学研究, 2012, 25(5):549-555.魏欣, 毕晓辉*, 董海燕,等. 天津市夏季灰霾与非灰霾天气下颗粒物污染特征与来源解析[J]. 环境科学研究, 2012, 25(11):1193-1200.宋晓晖, 毕晓辉*, 吴建会,等. 杭州市空气颗粒物污染特征及变化规律研究[J]. 环境污染与防治, 2012, 34(7):60-63.王琼, 毕晓辉*, 张裕芬,等. 杭州市大气颗粒物消光组分的粒径分布特征研究[J]. 中国环境科学, 2012, 32(1):10-16. 相关热点
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