苗时雨 助理研究员
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envmsy@163.com
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清华大学伟清楼
2016.09-2020.06 中国科学院大学 环境工程 博士
2011.09-2013.06 南开大学 环境工程 硕士
2007.09-2011.06 南开大学滨海学院 环境工程 学士
2024.12-至今 区域环境安全全国重点实验室 助理研究员
2020.7-2024.12 清华大学环境学院 博士后
绿色水污染控制技术应用
1. 国家重点研发计划项目:流域多源磷污染综合控制关键技术装备与应用示范,2022-2026,子课题负责人。
2. 国家自然科学基金青年基金项目:高浓硝酸盐废液反硝化脱氮的微生物耐盐机制与强化脱氮原理,2022-2024,项目负责人。
3. 贵州省科技重大专项项目:酱酒高浓度废水处理与污泥资源化利用技术集成示范,2024-2027,子课题负责人。
4. 区域环境安全全国重点实验室自由探索课题项目:侧流活性污泥发酵释磷耦合磷资源化回收技术研究,2025-2026,项目负责人。
5. 中国五矿集团有限公司科研课题:钢铁高盐废水中含氮化合物的深度脱除技术,2024-2027,课题负责人。
6. 无锡惠山环保水务有限公司科研项目:洛社污水处理厂工艺降耗节能与利旧工艺研究,2024-2025,项目责任人。
1. Miao S, Zhu K, An X, Lan H, Liu H, Qu J. Phytic acid-derived MgZn-P-C as heterogeneous catalysts for the ozonation degradation of 1,4-Dioxane[J]. Chemical Engineering Journal, 2025,509: 161159.
2. Miao S, Wang Y, Zhang Y, Lian F, Li M. Instantaneous and efficient removal of glyphosate with low concentration by amine-functionalized SBA-15 chelated with Fe(III). Journal of Environmental Chemical Engineering, 2023, 11(5): 111004.
3. Shiyu Miao, Chao Jin, Ruiping Liu, Yaohui Bai, Huachun Lan, Huijuan Liu, Chengzhi Hu, Jiuhui Qu. Carbon harvesting from organic liquid wastes for heterotrophic denitrification: Feasibility evaluation and cost and emergy optimization, Resources, Conservation & Recycling. 2020, 160: 104782.
4. Shiyu Miao, Chao Jin, Ruiping Liu, Yaohui Bai, Huijuan Liu, Chengzhi Hu, Jiuhui Qu. Microbial community structures and functions of hypersaline heterotrophic denitrifying process: Lab-scale and pilot-scale studies. Bioresource Technology,2020, 310: 123244.
5. Luo J, Miao S, Koju R, Joshi T P, Liu R, Liu H, Qu J. Simultaneous removal of aromatic pollutants and nitrate at high concentrations by hypersaline denitrification:Long-term continuous experiments investigation. Water Research, 2022, 216: 118292.
6. Koju R, Miao S, Luo J, Wang D, Raj Joshi D, Bai Y, Liu R, Liu H, Qu J. Effects of 1-hydroxyethane-(1,1-bisphosphonic acid) on heterotrophic denitrification performance: Impact of denitrifying microbial communities variation. Chemical Engineering Journal, 2020, 402: 126210.
7. Rashmi Koju, Shiyu Miao, Bin Liang, Dev Raj Joshi, Ruiping Liu, Juihui Qu. Transcriptional and metabolic response against hydroxyethane-(1,1-bisphosphonic acid) on bacterial denitrification by a halophilic Pannonibacter sp. strain DN. Chemosphere. 2020, 252: 126478.
8. Zhang Y, Miao S, Wang Y, Lian F, An X, Lan H, Liu H, Qu J. Performance and oxidation mechanism of VUV photo–Fenton in simultaneous removal of Ni-EDTA and hypophosphite: decomplexation, low-valent phosphorous oxidation and DFT calculation. Chemical Engineering Journal, 2024, 485: 150148.
9. Zhang S, Miao S, An X, Lan H, Liu H, Qu J. A homogeneous reagent for Ni2+ capture from wastewater: The phase transition mechanism and impact evaluation for aerobic sludge. Chemical Engineering Journal, 2022, 440: 135809.
10. Zhang S, Miao S, An X, Lan H, Liu R, Peng J, Liu H, Qu J. Transformation of typical components in anaerobically digested sludge during its conditioning process by KMnO4. Resources, Conservation and Recycling, 2021, 171: 105657.
11. Liao Y, Bian J, Miao S, Xu S, Li R, Liu R, Liu H, Qu J. Regulation of denitrification performance and microbial topology by lights: Insight into wavelength effects towards microbiota. Water Research, 2023: 119434.
12. Chen L, Zhang G, Liu H, Miao S, Chen Q, Lan H, Qu J. Efficient Metal Recovery from Industrial Wastewater: Potential Oscillation and Turbulence Mode for Electrochemical System. Engineering, 2024,38:184–193.
13. Liao Y, Zhao J, Bian J, Zhang Z, Xu S, Qin Y, Miao S, Li R, Liu R, Zhang M, Zhu W, Liu H, Qu J. From mechanism to application: Decrypting light-regulated denitrifying microbiome through geometric deep learning. iMeta, 2024, 3(1).
14. Zhang G, Li B, Shi Y, Zhou Q, Fu W-J, Zhou G, Ma J, Yin S, Yuan W, Miao S, Ji Q, Qu J, Liu H. Ammonia recovery from nitrate-rich wastewater using a membrane-free electrochemical system[J]. Nature Sustainability, 2024, 7(10): 1251–1263.
15. Lian F, Fu Q, Miao S, Zhang Y, Wang Y, Wang J, Lan H, Liu H, Qu J. Enhancing Chlorella vulgaris growth with Fe-loaded sulphoaluminate cement: A promising phosphorus adsorbent reutilization strategy[J]. Resources Conservation & Recycling, 2024, 209: 107732.
地址 : 北京市海淀区清华大学环境学院节能楼433室 邮箱 : sklres-bgs@tsinghua.edu.cn 区域环境安全全国重点实验室 京ICP备15006448号


