段亮 研究员
研究方向:水生态修复技术、污水再生与回用技术
电话:18612648868
Email:duanliang@craes.org.cn
个人履历
教育经历
2006.03~2009.03:同济大学,博士;
2007.09~2008.10:美国加州大学伯克利分校,博士联合培养;
主要工作经历
2009.04~2012.12:中国环境科学研究院,助理研究员;
2011.08~2012.09:美国加州大学伯克利分校,博士后;
2012.12~至今:中国环境科学研究院,副研究员/研究员
科学研究
主要研究领域
1、水生态修复技术
2、污水再生与回用技术
代表性研究项目
1. 长江生态环境保护修复城市驻点跟踪研究课题,内江市长江水生态环境保护研究(2022-LHYJ-02-0509-07),2022.1-2024.8,主持;
2. 黄河流域生态保护和高质量发展联合研究课题,工业园区水污染防治现状评估与对策建议(2022-YRUC-01-0603-03),2022.04-2024.3,主持;
3. 中央级公益性科研院所创新群体项目, 京津冀地区污水处理行业减污降碳协同增效研究(2022YSKY-14), 2022.11-2023.4, 主持;
4. 国家科技重大水专项课题, 辽河保护区河流健康修复与管理技术集成(2018ZX07601-003), 2018.1- 2022.6, 主持;
5. 国家科技重大水专项子课题,劣V类水体处理技术与设备产业化推广平台建设(2014ZX07216-001-2),2014.1-2017.12,主持;
6. 国家科技重大水专项子课题,辽河保护区湿地网构建关键技术(2012ZX07202-004),2012.1-2016.12,主持;
7. 国家自然科学基金,泥龄影响膜污染的微生物分子生态学机理(51108437),2012.1-2014.12,主持;
8. 中央级公益性科研院所基本科研业务专项,移动床生物膜反应器-膜生物反应器组合工艺及膜污染研究(2013-YKY-005),2013.2-2013.12,主持;
代表性论文
[1] Zhang, H.; Duan, L*.; Li, S.; Gao, Q.; Li, M.; Xing, F.; Zhao, Y., Efficient sulfamethoxazole removal, water recovery and electricity generation were achieved simultaneously by osmotic microbial fuel cell in treating antibiotic wastewater. Separation and Purification Technology 2025, 352, 128157.
[2] Liu, J., Duan, L*., Gao, Q., Zhang, H., Yu, H., Zhang, J. Three-dimensional fluorescence characteristics analysis of DOMs in water treated by the ultrafiltration-reverse osmosis process. Journal of Molecular Liquids 2024, 398, 124297.
[3] Mengting, Z., Duan, L*., Zhao, Y., Song, Y., Xia, S. Fabrication of the flower-like Z-scheme heterojunction photocatalyst Bi–BiOI/UiO 66 for enhanced photodegradation of acetaminophen in simulated wastewater. Journal of Environmental Management 2024, 354, 120325.
[4] Li, M.; Duan, L*.; Li, S.; Wang, D.; Gao, Q.; Yu, H.; Zhang, J.; Jia, Y., Differences in greenhouse gas emissions and microbial communities between underground and conventionally constructed wastewater treatment plants. Bioresource Technology 2024, 130421.
[5] Li, M.; Duan, L*.; Li, S.; Zhang, H.; Gao, Q.; Hermanowicz, S. W., Carbon Emission Calculations and Reductions in Membrane Water Treatment: A Review. ACS ES&T Water 2024, 4, (1), 20-32.
[6] Jia, Y.; Li, H.; Duan, L*.; Gao, Q.; Zhang, H.; Li, S.; Li, M., Activation of persulfate by β-PDI/MIL-101(Fe) photocatalyst under visible light toward efficient degradation of sulfamethoxazole. Chemical Engineering Journal 2024, 481, 148588.
[7] Sun, X.; Duan, L*.; Liu, Z.; Gao, Q.; Liu, J.; Zhang, D., The mechanism of silica and transparent exopolymer particles (TEP) on reverse osmosis membranes fouling. Journal of Environmental Management 2024, 349, 119634.
[8] Sun, X.; Duan, L*.; Liu, Z.; Gao, Q.; Liu, J.; Zhang, D., Mitigation of reverse osmosis membrane fouling by coagulation pretreatment to remove silica and transparent exopolymer particles. Environmental Research 2024, 241, 117569.
[9] Li, S.; Zhang, H.; Zhang, H.; Li, S.; Xing, F.; Chen, T.; Duan, L*., Impact analysis of operating conditions on carbon dioxide reduction in microbial electrosynthesis: Insight into the substance utilization and microbial response. Bioresource Technology 2023, 390, 129879.
[10] Li, C.; Ling, Y.; Zhang, Y.; Wang, H.; Wang, H.; Yan, G.; Dong, W.; Chang, Y.; Duan, L*., Insight into the microbial community of denitrification process using different solid carbon sources: Not only bacteria. Journal of Environmental Sciences 2023.
[11] Mengting, Z.; Duan, L*.; Zhao, Y.; Song, Y.; Xia, S.; Gikas, P.; Othman, M. H. D.; Kurniawan, T. A., Fabrication, characterization, and application of BiOI@ZIF-8 nanocomposite for enhanced photocatalytic degradation of acetaminophen from aqueous solutions under UV–vis irradiation. Journal of Environmental Management 2023, 345, 118772.
[12] Gao, X.; Cui, L.; Mu, Y.; Li, J.; Zhang, Z.; Zhang, H.; Xing, F.; Duan, L*.; Yang, J., Cumulative health risk in children and adolescents exposed to bis(2-ethylhexyl) phthalate (DEHP). Environmental Research 2023, 237, 116865.
[13] Li, S.; Duan, L*.; Zhang, H.; Li, M.; Zhao, Y.; Xing, F., Inhibition Strategies of Reverse Solute Flux in Osmotic Microbial Fuel Cells: Take Forward Osmosis as Reference. ACS ES&T Water 2023, 3, 2835−2848.
[14] Li, C.; Zhang, Y.; Ling, Y.; Wang, H.; Wang, H.; Yan, G.; Duan, L.; Dong, W.; Chang, Y., Novel slow-release carbon source improves anodic denitrification and electricity generation efficiency in microbial fuel cells. Environmental Research 2023, 236, 116644.
[15] Gao Q, Duan L*, Liu J, Zhang H, Zhao Y, Evaluation and optimization of reverse osmosis pretreatment technology using the modified intermediate blocking model, Journal of Cleaner Production, 2023, 417, 138029.
[16] Zhao Y., Duan L*., Hermanowicz S W. Influence of water transport characteristics on membrane internal conductive structure in forward osmosis microbial fuel cell. Journal of Molecular Liquids. 2023, (380), 121704.
[17] Xing F.; Song YD., Yu Y., Duan L., Xi HB., Zhou YX. Study on mechanism of electroactive microorganisms response to 2,4-DCP. Chemical Engineering Journal, 2023, 455, 140404.
[18] Zhu MT, Tonni A, Duan L*, Song YH, Hermanowicz S W, Hafiz Mohd. Advances in BiOX-based ternary photocatalysts for water technology and energy storage applications: research trends, challenges, solutions, and way forward. Reviews in Environmental Science and Bio-Technology , 2022 (21) :331–370
[19] Hou HH, Zhu M T, Duan L*, Zhao Y., Zhang ZZ, Yao MC, Zhou BH, Zhang HY, Hermanowicz S W. Removal performance and biodegradation mechanism of sulfonamides antibiotic contained wastewater by IFAS-MBR bioreactor. Journal of Molecular Liquids. 2022, 367, 120572.
[20] Yao MC, Duan L*, Song YH, Hermanowicz SW. Degradation mechanism of Ibuprofen via a forward osmosis membrane bioreactor. Bioresource Technology, 2021, 321, 124448.
[21] Yao MC, Duan L*, Wei J, Qian F, Hermanowicz SW. Carbamazepine removal from wastewater and the degradation mechanism in a submerged forward osmotic membrane bioreactor. Bioresource Technology, 2020, 314, 123732
[22] Hou HH, Duan L*, Zhou BH, Tian Y, Wei J, Qian F. . The performance and degradation mechanism of sulfamethazine from wastewater using IFAS-MBR. Chinese Chemical Letters, 2020, 31: 543–546.
专著
[1] 段亮,张志超,张海亚. 城镇污水处理厂减污降碳协同增效路径探讨,2023,中国环境出版集团.
[2] 段亮, 宋永会. 中国污水资源化与水质保障技术, 2021, 中国环境出版集团.
[3] 段亮, 宋永会. 辽河保护区人工湿地污染物去除机制-以七星湿地为例, 2021, 中国环境出版集团.
[4] 段亮, 宋永会. 辽河保护区湿地恢复及生态健康评估, 2021, 中国环境出版集团.
[5] 段亮, 徐笠. 辽河保护区河流健康评价与总体修复方案,2021, 中国环境出版集团.
教学工作
社会工作
[1] 2019年~至今:同济大学,兼职教授
[2] 2018年~至今:《Chinese Chemical Letters》,青年编委
[3] 2017年~至今:《环境工程技术学报》,编委
[4] 2015年~至今:北京市科学技术委员会,专家
[5] 2015年~至今:北京市自然科学基金委,专家
[6] 2010年~至今:中国环境科学学会,会员
荣誉奖励
1. 2020年,国家生态环境保护专业技术青年拔尖人才;
2. 2023年,青年科学家金奖,中国环境科学学会;
3. 2023年,第十三届发明创业奖人物奖,中国发明协会;
4. 2021年,杰出青年科技奖,中华环保联合会;
5. 2021年,中国产学研合作创新奖,中国产学研合作促进会;
6. 2023年,全国优秀工程咨询成果一等奖,陕西秦岭北麓主体山水林田湖草沙一体化保护和修复工程项目实施方案,中国工程咨询协会,排名第1;
7. 2022年,第三届发明创业成果一等奖,典型北方大型河流治理修复关键技术与工程应用,排名第2;
8. 2022年,中国科技产业化促进会科技创新一等奖,典型北方河流“三水融合”治理修复关键技术及应用,排名第2;
9. 2023年,环境保护科学技术二等奖,典型河流综合治理与生态修复关键技术及应用,排名第2;
10. 2020年,环境保护科学技术二等奖,北方寒冷地区河流生态修复关键技术与应用,排名第2;
11. 2018年,国家环保科技创新实用成果,凌河保护区生态治理与保护技术,排名第1;
其他