(一)纵向科研项目
1. 国家重点研发计划课题,2019YFC1906402,城乡混合有机垃圾多源有机物源头快速稳定化技术及装备,2020/01-2023/12,在研,主持
2.国家自然科学基金面上项目,51978487,耗氢产甲烷混合菌群生物强化高氨氮厌氧消化代谢机制研究,2020/01-2023/12,在研,主持
3.国家自然科学基金面上项目,51678424,厌氧耗氢产甲烷混合菌群还原二氧化碳合成甲烷工艺及机理研究,2017/01-2020/12,62万元,在研,主持
4.国家自然科学基金面上项目,51378373,焦炉气甲烷化及沼气原位提纯耦合新工艺与原理,2013/09-2017/12,80万元,已结题,主持
5.国家支撑计划子课题,2012BAC17B02-04,加工生物质废物高值化利用关键技术及中试,2012/10-2015/12,70万元,已结题,主持
6.国家自然科学基金面上项目,51178326,有机废水厌氧同时产酸/产甲烷反硝化的耦 合机制和动力学,2011/11-2015/12,63万元,已结题,主持
7.国家自然科学基金青年科学基金项目,50608056,湿地沉积物中亚铁-铁氧化物/腐殖质对芳香烃类有机物非生物还原转化机理及应用研究,2007/01-2009/12,26万元,已结题,主持
(二)主要学术论文
1. Zhu W., He Q., Gao H., et al. Bioconversion of yellow wine wastes into microbial protein via mixed yeast-fungus cultures[J]. Bioresource Technology, 2020, 299:122565.
2. Xu J., Bu F., Zhu W., et al. Microbial Consortiums of Hydrogenotrophic Methanogenic Mixed Cultures in Lab-Scale Ex-Situ Biogas Upgrading Systems under Different Conditions of Temperature, pH and CO[J]. Microorganisms, 2020, 8(5):772.
3. Zhang M., Cai Z., Xie L., Zhang Y., et al. Comparison of coagulative colloidal microbubbles with monomeric and polymeric inorganic coagulants for tertiary treatment of distillery wastewater[J]. Science of the total environment, 2019,694:133649.
4. Bu F, Dong N, Khanal S K., et al. Effects of CO on Hydrogenotrophic Methanogenesis under Thermophilic and Extreme-thermophilic Conditions: Microbial Community and Biomethanation Pathways[J]. Bioresource Technology, 2018,266:364-373.
5. Zhang M., Chen Y., Li Xie L., et al. Enhanced removal of bio-refractory dissolved organic matter from cassava distillery wastewater by powdered activated carbon-ballasted coagulation: Detailed study of separation characteristics and mechanisms[J]. Chemosphere, 2018, 211:1054-1064.
6. Zhang M., Xie Li., Wang Z., et al. Using Fe(III)-coagulant-modified colloidal gas aphrons to remove bio-recalcitrant dissolved organic matter and colorants from cassava distillery wastewater[J]. Bioresource Technology, 2018, 268:346-354.
7. Dong N., Bu F., Zhou Q., et al. Performance and Microbial Community of Hydrogenotrophic Methanogenesis under Thermophilic and Extreme-thermophilic Conditions[J]. Bioresource Technology, 2018, 266:454-462.
8. Lu X., Pereira T., Al-Hazni E., et al. Model-Based Evaluation of N2O Production Pathways in the Anammox-Enriched Granular Sludge Cultivated in a Sequencing Batch Reactor[J]. Environmental Science & Technology, 2018, 52(5):2800-2809.
9. Chen Y., Zhang M., Xie L., et al. Molecular-Weight-Fractionation Characteristics and Coagulation Behaviors of Biorecalcitrant Dissolved Organic Matter and Colorants in Cassava Distillery Wastewater[J]. 2018,57(12):4442-4451.
10. Zhang, M., Wang, Z., Li, P., Zhang, H. and Xie, L. (2017) Bio-refractory dissolved organic matter and colorants in cassava distillery wastewater: Characterization, coagulation treatment and mechanisms. Chemosphere 178, 259-267.
11. Zhang, M., Xie, L., Yin, Z., Khanal, S.K. and Zhou, Q. (2016) Biorefinery approach for cassava-based industrial wastes: Current status and opportunities. Bioresource Technology 215, 50-62.
12. Yin, Z., Xie, L., Khanal, S.K. and Zhou, Q. (2016) Interaction of organic carbon, reduced sulphur and nitrate in anaerobic baffled reactor for fresh leachate treatment. Environmental Technology 37(9), 1110-1121.
13. Xie, L., Ji, C., Wang, R. and Zhou, Q. (2015) Nitrate reduction pathway in an anaerobic acidification reactor and its effect on acid fermentation. Journal of Bioscience and Bioengineering 119(1), 95-100.
14. Xie, L., Liu, H., Chen, Y.-g. and Zhou, Q. (2014) pH-adjustment strategy for volatile fatty acid production from high-strength wastewater for biological nutrient removal. Water Science and Technology 69(10), 2043-2051.
15. Xie, L., Dong, N., Wang, L. and Zhou, Q. (2014) Thermophilic hydrogen production from starch wastewater using two-phase sequencing batch fermentation coupled with UASB methanogenic effluent recycling. International Journal of Hydrogen Energy 39(36), 20942-20949.
16. Wang, W., Xie, L., Luo, G. and Zhou, Q. (2013) Enhanced fermentative hydrogen production from cassava stillage by co-digestion: The effects of different co-substrates. International Journal of Hydrogen Energy 38(17), 6980-6988.
17. Luan, F., Xie, L., Li, J. and Zhou, Q. (2013) Abiotic reduction of nitroaromatic compounds by Fe(II) associated with iron oxides and humic acid. Chemosphere 91(7), 1035-1041.
18. Luan, F., Xie, L., Sheng, J., Li, J., Zhou, Q. and Zhai, G. (2012) Reduction of nitrobenzene by steel convert slag with Fe(II) system: The role of calcium in steel slag. Journal of Hazardous Materials 217, 416-421.
19. Wang, W., Xie, L., Chen, J., Luo, G. and Zhou, Q. (2011) Biohydrogen and methane production by co-digestion of cassava stillage and excess sludge under thermophilic condition. Bioresource Technology 102(4), 3833-3839.
20. Luo, G., Xie, L., Zou, Z., Zhou, Q. and Wang, J.-Y. (2010) Fermentative hydrogen production from cassava stillage by mixed anaerobic microflora: Effects of temperature and pH. Applied Energy 87(12), 3710-3717.
21. Xie, L. and Shang, C. (2007) The effects of operational parameters and common anions on the reactivity of zero-valent iron in bromate reduction. Chemosphere 66(9), 1652-1659.
22. Xie, L. and Shang, C. (2006) Effects of copper and palladium on the red-action of bromate by Fe(0). Chemosphere 64(6), 919-930.
23. Xie, L. and Shang, C. (2005) Role of humic acid and quinone model compounds in bromate reduction by zerovalent iron. Environmental Science & Technology 39(4), 1092-1100.
(三)出版专著
1. 谢丽,何小娟,城镇污水处理厂运行管理手册 第三卷 固体处理工艺,中国建筑工业出版社,2013
(四)获得学术奖励
1. 谢丽(6/10),大型污水厂污水污泥臭气高效处理工程技术体系与应用,国务院,国家科技进步二等奖,2019
2.谢丽(3/14), 污泥深度减量与有机质高效利用技术及示范, 上海市人民政府,上海市科技进步一等奖,2015
(五)专利
1.一种混凝型胶质气泡的制备方法及制备装置,ZL201710014055.1
2.酒精废水同时产酸反硝化原位生物脱氮的方法, CN201310228981.0