广东工业大学环境科学与工程学院讲师
一 基本信息
马盛韬,男,讲师、博士、博士后,环境健康与污染控制研究院大型仪器主管。主要利用多种色谱和质谱联用技术,开展环境介质及人体生物样品中新兴有机物及其转化产物的暴露、代谢转化及其潜在早期健康效应的研究。主持和参与国家自然科学基金青年基金、面上、重点和重大项目等,在Environ Sci & Tech,Environ Int等期刊上发表SCI论文40余篇。
二 研究方向
1、新兴有机物;
2、大气污染与人体早期健康效应。
三 教育经历
2007/09-2012/07,中国科学院广州地球化学研究所,环境科学专业,博士;
2003/09-2007/06,中南大学,化学与化工学院,化学工程与工艺专业,学士;
四 工作经历
2012/08-2016/09,中国科学院广州地球化学研究所,有机地球化学国家重点实验室,博士后;
2016/10至今,广东工业大学,环境科学与工程学院,讲师。
五 科研项目
1. 国家自然科学基金青年基金,室内灰尘中溴氯混合联苯醚(PXDEs)的筛查、鉴定及转化机理研究,2018.01-2020.12,24万元(主持);
2. 国家自然科学基金重点项目,电子垃圾拆解排放典型大气毒害有机污染物的环境地球化学转化过程及其人体代谢产物研究,2018.01-2022.12,323万元(参与);
3. 国家自然科学基金重大项目,化工园区典型毒害有机污染物的排放特征与排放清单,2020.01-2023.12,398万元(参与)
4. 国家自然科学基金面上项目,典型工业园区大气中卤代多环芳烃的来源、形成机制及健康风险研究,2020.01-2023.12,61万元(参与);
六 科研成果
1. Lin, M., Ma, S., Yu, Y., Li, G., Mai, B., and An, T., Simultaneous Determination of Multiple Classes of Phenolic Compounds in Human Urine: Insight into Metabolic Biomarkers of Occupational Exposure to E-Waste. Environmental Science & Technology Letters, 2020. 10.1021/acs.estlett.0c00187.
2. Tang, J., Ma, S., Liu, R., Yue, C., Li, G., Yu, Y., Yang, Y., and An, T., The pollution profiles and human exposure risks of chlorinated and brominated PAHs in indoor dusts from e-waste dismantling workshops: Comparison of GC–MS, GC–MS/MS and GC?×?GC–MS/MS determination methods. Journal of Hazardous Materials, 2020. 394: p. 122573.
3. Lin, M., Tang, J., Ma, S., Yu, Y., Li, G., Fan, R., Mai, B., and An, T., Insights into biomonitoring of human exposure to polycyclic aromatic hydrocarbons with hair analysis: A case study in e-waste recycling area. Environment International, 2020. 136: p. 105432.
4. Peng, M., Lu, S., Yu, Y., Liu, S., Zhao, Y., Li, C., and Ma, S., Urinary monohydroxylated polycyclic aromatic hydrocarbons in primiparas from Shenzhen, South China: Levels, risk factors, and oxidative stress. Environmental Pollution, 2020. 259: p. 113854.
5. Luo, H., Li, G., Chen, J., Lin, Q., Ma, S., Wang, Y., and An, T., Spatial and temporal distribution characteristics and ozone formation potentials of volatile organic compounds from three typical functional areas in China. Environmental Research, 2020. 183: p. 109141.
6. Zhuo, M., Ma, S., Li, G., Yu, Y., and An, T., Chlorinated paraffins in the indoor and outdoor atmospheric particles from the Pearl River Delta: Characteristics, sources, and human exposure risks. Science of The Total Environment, 2019. 650: p. 1041-1049.
7. Yu, Y., Li, W., Lu, S., Wu, S., Wang, F., Tse, L.A., Kang, L., and Ma, S., Urinary parabens in adults from South China: Implications for human exposure and health risks. Ecotoxicology and Environmental Safety, 2019. 182: p. 109419.
8. Wang, N., Hu, X., Lu, S., Ma, S., Kang, L., Liao, S., and Yu, Y., Interrelationship of anthropogenic activity and parabens in fish from Taihu Lake during 2009–2017. Environmental Pollution, 2019. 252: p. 1002-1009.
9. Ma, S., Yu, Y., Yang, Y., Li, G., and An, T., A new advance in the potential exposure to “old” and “new” halogenated flame retardants in the atmospheric environments and biota: From occurrence to transformation products and metabolites. Critical Reviews in Environmental Science and Technology, 2019. 10.1080/**.2019.**: p. 1-49.
10. Lu, S., Wang, N., Ma, S., Hu, X., Kang, L., and Yu, Y., Parabens and triclosan in shellfish from Shenzhen coastal waters: Bioindication of pollution and human health risks. Environmental Pollution, 2019. 246: p. 257-263.
11. Liu, R., Ma, S., Li, G., Yu, Y., and An, T., Comparing pollution patterns and human exposure to atmospheric PBDEs and PCBs emitted from different e-waste dismantling processes. Journal of Hazardous Materials, 2019. 369: p. 142-149.
12. Liu, H., Ma, S., Zhang, X., and Yu, Y., Application of thermal desorption methods for airborne polycyclic aromatic hydrocarbon measurement: A critical review. Environmental Pollution, 2019. 254: p. 113018.
13. Lin, M., Tang, J., Ma, S., Yu, Y., Li, G., Mai, B., Fan, R., and An, T., Simultaneous determination of polybrominated diphenyl ethers, polycyclic aromatic hydrocarbons and their hydroxylated metabolites in human hair: a potential methodology to distinguish external from internal exposure. undefinedyst, 2019. 144(24): p. 7227-7235.
14. Kuang, H., Li, Y., Jiang, W., Wu, P., Tan, J., Zhang, H., Pang, Q., Ma, S., An, T., and Fan, R., Simultaneous determination of urinary 31 metabolites of VOCs, 8-hydroxy-2′-deoxyguanosine, and trans-3′-hydroxycotinine by UPLC-MS/MS: 13C- and 15N-labeled isotoped internal standards are more effective on reduction of matrix effect. undefinedytical and Bioanalytical Chemistry, 2019. 411(29): p. 7841-7855.
15. Han, C., Liu, R., Luo, H., Li, G., Ma, S., Chen, J., and An, T., Pollution profiles of volatile organic compounds from different urban functional areas in Guangzhou China based on GC/MS and PTR-TOF-MS: Atmospheric environmental implications. Atmospheric Environment, 2019. 214: p. 116843.
16. Chen, H., Ma, S., Yu, Y., Liu, R., Li, G., Huang, H., and An, T., Seasonal profiles of atmospheric PAHs in an e-waste dismantling area and their associated health risk considering bioaccessible PAHs in the human lung. Science of The Total Environment, 2019. 683: p. 371-379.
17. Yu, Y., Jiang, Z.A., Zhao, Z., Chong, D., Li, G., Ma, S., Zhang, Y., and An, T., Novel in vitro method for measuring the mass fraction of bioaccessible atmospheric polycyclic aromatic hydrocarbons using simulated human lung fluids. Environmental Pollution, 2018. 242: p. 1633-1641.
18. Ma, S., Ren, G., Zeng, X., Yu, Z., Sheng, G., and Fu, J., Polychlorinated biphenyls and their hydroxylated metabolites in the serum of e-waste dismantling workers from eastern China. Environmental Geochemistry and Health, 2018. 10.1007/s10653-017-9958-x.
19. Lu, S., Long, F., Lu, P., Lei, B., Jiang, Z.a., Liu, G., Zhang, J., Ma, S., and Yu, Y., Benzophenone-UV filters in personal care products and urine of schoolchildren from Shenzhen, China: Exposure assessment and possible source. Science of The Total Environment, 2018. 640-641: p. 1214-1220.
20. Lu, S., Kang, L., Liao, S., Ma, S., Zhou, L., Chen, D., and Yu, Y., Phthalates in PM2.5 from Shenzhen, China and human exposure assessment factored their bioaccessibility in lung. Chemosphere, 2018. 202: p. 726-732.
21. Zeng, X., He, L., Cao, S., Ma, S., Yu, Z., Gui, H., Sheng, G., and Fu, J., Occurrence and distribution of organophosphate flame retardants/plasticizers in wastewater treatment plant sludges from the Pearl River Delta, China. Environmental Toxicology and Chemistry, 2014. 33(8): p. 1720-1725.
22. Sun, Y., Ren, G., Ma, S., Zheng, K., Yu, Z., Wu, M., Sheng, G., and Fu, J., Synthesis of Br-7-Br-9 hydroxylated/methoxylated polybrominated diphenyl ethers (OH/MeO-PBDEs) and analyses on mass spectra and GC data of the MeO-PBDEs. Chemosphere, 2013. 92(3): p. 286-292.
23. Ren, G., Wang, Z., Yu, Z., Wang, Y., Ma, S., Wu, M., Sheng, G., and Fu, J., Primary investigation on contamination pattern of legacy and emerging halogenated organic pollutions in freshwater fish from Liaohe River, Northeast China. Environmental Pollution, 2013. 172: p. 94-99.
24. Ma, S., Yu, Z., Zhang, X., Ren, G., Peng, P.a., Sheng, G., and Fu, J., Levels and congener profiles of polybrominated diphenyl ethers (PBDEs) in breast milk from Shanghai: Implication for exposure route of higher brominated BDEs. Environment International, 2012. 42: p. 72-77.
25. Yu, Z., Zheng, K., Ren, G., Wang, D., Ma, S., Peng, P., Wu, M., Sheng, G., and Fu, J., Identification of monochloro-nonabromodiphenyl ethers in the air and soil samples from south China. Environmental Science & Technology, 2011. 45(7): p. 2619-2625.
26. Yu, Z., Zheng, K., Ren, G., Zheng, Y., Ma, S., Peng, P., Wu, M., Sheng, G., and Fu, J., Identification of hydroxylated octa- and nona-bromodiphenyl ethers in human serum from electronic waste dismantling workers. Environmental Science & Technology, 2010. 44(10): p. 3979-3985.
27. Ren, G., Yu, Z., Ma, S., Li, H., Peng, P., Sheng, G., and Fu, J., Determination of dechlorane plus in serum from electronics dismantling workers in south China. Environmental Science & Technology, 2009. 43(24): p. 9453-9457.
七 我的团队
新兴污染物环境健康与控制技术团队(团队负责人:安太成)
联系方式:mast@gdut.edu.cn
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