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师资队伍

马琳琳

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    马琳琳
       E-mail:malinlin@bjut.edu.cn
      通讯地址:威尼斯wns.8885556西校区水环境楼410







教育背景

2018.09-2022.06      中国地质大学(北京),环境科学与工程,博士;

2020.10-2021.10      丹麦科技大学,环境工程,CSC公派博士联合培养;

2016.09-2018.06  中国地质大学(北京),环境科学与工程,硕博贯通硕士阶段;2012.09-2016.06 中国地质大学(北京),环境工程,学士。

工作经历
2022.08-至今 威尼斯wns.8885556,环境工程系,师资博士后

研究方向

1. 重金属铬(Cr)的微生物还原及其强化技术研究;

2. 农业废弃物在微生物系统中的资源化利用;

3. 微塑料与重金属铬的交互作用研究。

奖项荣誉
2020 国家奖学金;

2020 国家留学基金委公派博士生联合培养奖学金;

2021 中国地质大学(北京)中石油奖学金;

2022 中国地质大学(北京)“学术之星”。
主要科研项目
2023.01-2024.07 博士后科学基金面上项目,主持

主要论文论著、专利:
[1] Ma, L.L., Chen, N., Feng, C.P., Yao, Y.C., Wang, S., Wang, G., Su, Y.Y., Zhang, Y.F., 2022. Enhanced Cr(VI) reduction in biocathode microbial electrolysis cell using Fenton-derived ferric sludge. Water Research 212, 118144.

[2] Ma, L.L., Chen, N., Feng, C.P., 2021. Performance and Enhancement Mechanism of Corncob Guiding Chromium (VI) Bioreduction, Water Research 197, 117057.

[3] Ma, L.L., Chen, N., Feng, C.P., 2020. Chromium(VI) Bioreduction Behavior and Microbial Revolution by Phosphorus Minerals in Continuous Flow Experiment, Bioresource Technology 315, 123847.

[4] Ma, L.L., Chen, N., Feng, C.P., 2020. Practical Application Potential of Microbial-Phosphorus minerals-Alginate Immobilized Particles on Chromium(VI)-bioreduction, Science of The Total Environment 742, 140685.

[5] Ma, L.L., Chen, N., Feng, C.P., Li, M., Gao, Y., Hu, Y.T., 2020. Coupling Enhancement of Chromium(VI) Bioreduction in Groundwater by Phosphorus Minerals, Chemosphere 240, 124896.

[6] Ma, L.L., Chen, N., Feng, C.P., Hu, Y.T., Li, M., Liu, T., 2019. Feasibility and Mechanism of Microbial-Phosphorus Minerals-Alginate Immobilized Particles in bioreduction of Cr(VI) and synchronous removal of Cr(III), Bioresource Technology 294, 122213.

[7] Ma, L.L., Xu, J.M., Chen, N., Li, M., Feng, C.P., 2019. Microbial reduction fate of chromium (Cr) in aqueous solution by mixed bacterial consortium, Ecotoxicology and Environmental Safety 170, 763-770.

[8] Ma, L.L., Chen, N., Feng, C.P., 2017. Comparison of phosphorus removal characteristics using synthesized Fe-loaded granular composites. Desalination and Water Treatment 77, 221-228.

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