科研项目 [1]. 典型工业锌电解过程颗粒物的组分富集转化机制及无组织排放规律,国家自然科学基金青年项目,22106081,24万,2022.01-2024.12(在研),课题负责人。 [2]. 锌电解过程颗粒物的影响机制及关键电解参数调控路径, ZR2021QB108,15万,2021.01-2023.12(在研),课题负责人。 [3]. 基于功能化金属-氮掺杂碳电催化剂的高灵敏甲醛传感器,山东省自然科学基金重点项目, ZR2020KE025,9万,2021.01-2023.12(在研),子课题负责人。 [4]. 锌电解过程颗粒物的超声减排机制及优化减排途径研究,环境模拟与污染控制国家重点联合实验室(清华大学)开放课题,21K09ESPCT,8万,2021.06-2023.05(在研),课题负责人。 [5]. 电解锌阳极氧化膜铅污染释放与分层结构成膜破膜过程交互影响机制,国家自然科学基金面上项目,41877392,61万,2019.01-2022.12(在研),参加。 [6]. 典型燃烧源细颗粒物及气态污染物排放规律研究,国家自然科学基金青年项目,21806086,25万,2019.01-2021.12(已结题),参加。 [7]. 锌电解过程槽面废气中颗粒物的释放机理与形成机理,国家自然科学基金面上项目,41673114,72万,2017.01-2020.12(已结题),主要完成人。 [8]. 有色冶金污染因子转化与大气污染物源头减量技术,国家重点研发计划,2017YFC0210402,478万, 2017.07-2020.12(已结题),主要完成人。 [9]. 重点行业水污染全过程控制技术集成与工程实证,水体污染控制与治理科技重大专项,2017ZX07402004,2499万,2016.07-2020.12(已结题),参加。 [10]. 烟气系统中细颗粒物转化机制与脱除增强的机理与方法,国家973计划,2013.07-2016.07(已结题),参加。 [11]. 燃煤电站湿式电除尘技术与装备,国家863计划,2013.07-2016.07(已结题),参加。 科研论文 [1] Ma, Z., Jiang, J., Duan, L., Li, Z., Deng, J., Li, J., Zhang, R., Zhou, C., Xu, F, Jiang, L., Duan, N., 2020. Ultrasonication to reduce particulate matter generated from bursting bubbles: A case study on zinc electrolysis. Journal of Cleaner Production 272, 122697.(IF=9.297) [2] Ma, Z., Duan, L., Jiang, J., Deng, J., Xu, F., Jiang, L., Li, J., Wang, G., Huang, X., Ye, W., Wen, Y., Zhang, G., Duan, N., 2020. Characteristics and threats of particulate matter from zinc electrolysis manufacturing facilities. Journal of Cleaner Production 259, 120874.(IF=9.297) [3] Li, Z,Ma, Z(Joint First),Zhang, Z,Zhang, L,et al, 2022. High-density volatile organic compound monitoring network for identifying pollution sources. Science of The Total Environment 855, 158872.(IF=10.75) [4] Wang, G., Ma, Z. (Joint First), Deng, J., Li, Z., Duan, L., Zhang, Q., Hao, J., Jiang, J., 2019. Characteristics of particulate matter from four coal–fired power plants with low–low temperature electrostatic precipitator in China. Science of The Total Environment 662, 455-461.(IF=7.963) [5] Ma, Z., Li, Z., Jiang, J., Deng, J., Duan, L., 2016b. PM2.5 Emission Reduction by Technical Improvement in a Typical Coal-Fired Power Plant in China. Journal of Aerosol Air Quality Research 17(2).(IF=3.063) [6] Ma, Z., Deng, J., Li, Z., Li, Q., Zhao, P., Wang, L., Sun, Y., Zheng, H., Pan, L., Zhao, S., Jiang, J., Wang, S., Duan, L., 2016a. Characteristics of NOx emission from Chinese coal-fired power plants equipped with new technologies. Atmospheric Environment 131, 164-170.(IF=4.798) [7] Wang, G., Deng, J., Ma, Z., Hao, J., Jiang, J., 2018. Characteristics of filterable and condensable particulate matter emitted from two waste incineration power plants in China. Science of The Total Environment 639, 695-704.(IF=7.963) [8] Li, Z., Jiang, J., Ma, Z., Fajardo, O.A., Deng, J., Duan, L., 2017. Influence of flue gas desulfurization (FGD) installations on emission characteristics of PM2.5 from coal-fired power plants equipped with selective catalytic reduction (SCR). Environmental Pollution 230, 655-662.(IF=8.072) [9] Li, Z., Jiang, J., Ma, Z., Wang, S., Duan, L., 2015. Effect of selective catalytic reduction (SCR) on fine particle emission from two coal-fired power plants in China. Atmospheric Environment 120, 227-233.(IF=4.798) [10] 邓建国, 马子轸, 李振, 段雷, 蒋靖坤, 2019. 不同湿法脱硫工艺对燃煤电厂PM2.5排放的影响. 环境科学 40(08), 3457-3462. [11] 段雷, 马子轸, 李振, 蒋靖坤, 叶芝祥, 2015. 燃煤电厂排放细颗粒物的水溶性无机离子特征综述. 环境科学 36(03), 1117-1122. [12] 蒋靖坤, 邓建国, 李振, 马子轸, 周伟, 张强, 段雷, 郝吉明, 2016. 双级虚拟撞击采样器应用于固定污染源PM10和PM2.5排放测量. 环境科学 37(06), 2003-2007. [13] 马子轸, 李振, 蒋靖坤, 叶芝祥, 邓建国, 段雷, 2015. 燃煤电厂产生和排放的PM2.5中水溶性离子特征. 环境科学 36(07), 2361-2366. 学术会议 [1] Zizhen Ma. Physical and Chemical Properties of Particulate Matter in a Chinese Electrolytic Zinc Manufacturing Facility. The 10th international aerosol conference. St Louis, U.S., 2018.09.01-09.05. [2] Zizhen Ma. Characteristics of NOx Emission from Novel Power Plants in China. The 4th International Conference on Environmental Simulation and Pollution Control. Beijing, P.R. China, 2015. [3] 马子轸. 电解锌过程硫酸雾控制新方法.第十届全国环境化学大会.天津. 2019. [4] 马子轸. 典型锌电解过程颗粒物源头减排研究. 第二十五届大气污染防治技术研讨会.西安.2021. |