劉淑麗
基本情況
姓名:劉淑麗
職稱:副教授
聯系地址:華北水利水電大學(鄭州市金水東路136號)
聯系方式🏠:E-mail: liushuli@ncwu.edu.cn
教育背景
2006.9-2010.7 哈爾濱師範大學🤷♂️,學士
2010.9-2012.7 哈爾濱工業大學,碩士研究生
2012.9-2016.10 哈爾濱工業大學📫,博士研究生
2019.1-2020.4 University of Michigan,Ann Arbor🙍🏼🫷🏿,國家公派訪問學者
工作履歷
2016.10-2021.11 華北水利水電大學教師(講師)
2021.12-至今 華北水利水電大學教師(副教授)
承擔課程名稱
本科生:《水處理生物學》
研究生:《高等微生物學》
研究領域
多年來一直從事汙水處理及其資源化研究⛩😗,主要的研究方向如下:
(1)光合細菌汙水處理資源化技術🧖🏻♀️:構建光合汙水處理系統及效能研究、高價值物質生物合成途徑及代謝調控機製;
(2)汙水膜處理工藝的開發與應用👨🏽🏭:新型抗汙染膜的製備及性能研究、膜汙染減緩調控機製;
(3)汙水的生物脫氮除磷😡:同步脫氮除磷工藝的性能優化☘️、功能微生物強化及調控機製🤛🏿;
(4)剩余汙泥的能源化:剩余汙泥的生物減量化技術的開發與應用👋🏻、生物質資源的回收再利用🚶➡️。
學術兼職
《Bioresource Technology》、《Science of the Total Environment》👩🏽🏫、《Applied Microbiology and Biotechnology》、《Frontiers in Environmental Science》🐔、《Environmental Science and Pollution Research》 等多個著名 SCI 期刊審稿人;國家自然科學基金青年項目評審人。
科研項目
1.國家自然科學基金青年項目—紫色非硫細菌處理食品有機廢水的高價值物質合成代謝及影響機製研究(51708214)🆖,2018-01至2020-12,課題負責人;
2.國家科學技術部高端外國專家引進計劃項目—基於新型光合細菌-膜生物反應器的汙水處理及資源化技術研究(G2022026015L),2022-01至2023-12,課題負責人;
3.河南省重點研發與推廣專項(科技攻關)項目—光合細菌汙水處理過程中合成生產高價值物質的資源化研究(202102310265),2020-01至2022-12🎍,課題負責人;
4.華北水利水電大學高層次人才引進項目—PNSB 處理食品加工廢水的高價值物質合成及影響因子研究(40550)👨🏼💼,2017-02至2020-09🧗,課題負責人🙎🏼🐣。
學術成果
1.專著𓀜、統編教材
劉淑麗。光合細菌合成高價值物質的代謝研究👆🏻。中國水利水電出版社,2022
2.國家發明專利
劉淑麗等。基於A-SBR 工藝的低溫處理生活汙水同步去碳脫氮除磷的方法,2022-3-1🖐🏽,中國,ZL201811015743.0;
劉淑麗等。一種提高紫色非硫細菌菌體 5-氨基乙酰丙酸產率的方法👴🏿👨🏽💻,2018-6-19🧝👨🏽🍼,中國,ZL201410765653.9;
劉淑麗等🚴🏼♂️。一種利用食品有機廢水產類胡蘿蔔素的方法👗,2018-4-24🔭,中國,ZL201410409797.0🛣。
3.高水平學術論文
[1] Liu Shuli*, Li Heng, Daigger Glen T. , et al. Material biosynthesis, mechanism regulation and resource recycling of biomass and high-value substances from wastewater treatment by photosynthetic bacteria: A review[J]. Science of the Total Environment, 2022, 820(SCI一區, TOP期刊, IF 7.963).
[2] Liu Shuli*, Li Heng, Kang Jia, et al. Improving simultaneous N, P, and C removal and microbial population dynamics in an anaerobic-aerobic-anoxic SBR (A-O-ASBR) treating municipal wastewater by altering organic loading rate (OLR) [J]. Environmental Technology & Innovation, 2021, 24(SCI 三區, IF 5.263).
[3] Liu Shuli*, Daigger Glen T., Liu Bingtao, et al. Enhanced performance of simultaneous carbon, nitrogen and phosphorus removal from municipal wastewater in an anaerobic-aerobic-anoxic sequencing batch reactor (AOA-SBR) system by alternating the cycle times[J]. Bioresource Technology, 2020, 301: 122750(SCI一區, TOP期刊, IF 7.539).
[4] Liu Shuli*, Daigger Glen T., Kang Jia, et al. Effects of light intensity and photoperiod on pigments production and corresponding key gene expression of Rhodopseudomonas palustris in a photobioreactor system[J]. Bioresource Technology, 2019, 294: 122172(SCI一區, TOP期刊, IF 6.669).
[5] Liu, Shuli*, Zheng Zhihong, Tie, Jingxi, et al. Impacts of Fe2+ on 5-aminolevulinic acid (ALA) biosynthesis of Rhodobacter sphaeroides in wastewater treatment by regulating nif gene expression[J]. Journal of Environmental Sciences, 2018, 70: 11-19(SCI二區, IF 3.120).
[6] Liu Shuli,Yang Guang, Fu Jinwei, et al. Synchronously enhancing biogas production, sludge reduction, biogas desulphurization and digestate treatment in sludge anaerobic digestion by adding K2FeO4[J]. Environmental Science and Pollution Research, 2018, 25: 35154-35163(SCI三區, IF 3.208).
[7] Liu Shuli, Zhang Guangming*, Zhang Jie, et al. Performance, carotenoids yield and microbial population dynamics in a photobioreactor system treating acidic wastewater: Effect of hydraulic retention time (HRT) and organic loading rate (OLR)[J]. Bioresource Technology, 2016, 200: 245-252(SCI一區, TOP期刊, IF 5.651).
[8] Liu Shuli, Zhang Guangming*, Zhang Jie, et al. Performance, 5-aminolevulinic acid (ALA) yield and microbial population dynamics in a photobioreactor system treating soybean wastewater: Effect of hydraulic retention time (HRT) and organic loading rate (OLR)[J]. Bioresource Technology, 2016, 210: 146-152(SCI一區, TOP期刊, IF 5.651).
[9] Liu Shuli, Zhang Guangming*, Zhang Jie, et al. Optimization of Biomass and 5-Aminolevulinic Acid Production by Rhodobacter sphaeroides ATCC17023 via Response Surface Methodology[J]. Applied Biochemistry and Biotechnology, 2016, 179(3): 444-458(SCI四區, IF 2.094).
[10] Liu, Shuli, Li Jianzheng. Accumulation and isolation of simultaneous denitrifying polyphosphate-accumulating organisms in an improved sequencing batch reactor system at low temperature[J]. International Biodeterioration & Biodegradation, 2015, 100: 140-148(SCI三區, IF 2.131).
[11] Liu Shuli, Zhang Guangming*, Li Xiangkun, et al. Microbial production and applications of 5-aminolevulinic acid[J]. Applied Microbiology and Biotechnology, 2014, 98(17): 7349-7357(SCI一區, IF 3.811).