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李俊


姓名:李俊

出生年月:1991年6月

技术职务:副教授

行政职务:无

电子邮箱jun.li@cqu.edu.cn

通讯地址:重庆市沙坪坝区沙北街83号重庆大学(B区)世界杯在线开户

1、主要研究方向

水污染处理与修复;

污水资源化回收利用;

微藻生态毒理学;

微量元素生物强化与土壤修复;

微量元素地球化学循环。

(欢迎有环境、化学、生物或交叉背景的优秀学生联系、交流、报考)

2、社会兼职、国内外学术团体任职情况

国际硒研究协会会员;

国际水协会(IWA)会员;

国际学术期刊《Sustainability》客座编辑;

长期担任《Bioresource Technology》、《Science of the Total Environment》、《Chemosphere》、《Journal of Applied and Biotechnology》、《Journal of Agricultural and Food Chemistry》等国际学术期刊审稿人。

3、教育及进修经历

2023.08-至今, 重庆大学 世界杯在线开户准聘副教授,硕导

2021.12-2023.07, 中国科学院大学重庆分院助理研究员

2021.05-2021.09, 比利时根特大学生物工程学院科研助理

2016.10-2021.05,比利时根特大学/加泰罗尼亚理工大学生物工程/环境工程 博士(双学位)

2013.09-2016.06, 西北农林科技大学 环境科学与工程 硕士

2009.09-2013.06, 西北农林科技大学 环境科学与工程 本科

4、主持或主研的科学研究项目

1.重庆大学人才引进启动经费,人工湿地有机磷迁移、转化及归趋研究,2023.10~,主持

2.国家自然科学基金青年基金项目,42207475,富硒有机物料缓释硒特征及其添加对土壤有效硒的贡献机制,2023.01-2015.12,主持

3.国家自然科学基金面上项目,42277351,集约化柑橘种植土壤有机碳分子组成演变及其微生物生理驱动机制,2023.1-2026.1,主研

4.重庆市留学生人员回国创业创新计划支持,溶解性有机质对纳米硒稳定性及微藻生物有效性的影响机制,2022.08-2023.08,主持

5.比利时根特大学与CSC特殊合作项目,实现微量元素的闭路循环:废水中微量元素回收,2017.03-2019.09,主持

5.主要学术论文与代表作

1.Li, J.,Otero-Gonzalez, L., Lens, P.N.L., Ferrer, I., Du Laing, G., Assessment of selenium and zinc enriched sludge and duckweed as slow-release micronutrient biofertilizers forPhaseolus vulgarisgrowth.Journal of Environmental Management, 2022, 324, 116397.

2.Li, J.,Otero-Gonzalez, L., Michiels, J., Lens, P.N.L., Du Laing, G., Ferrer, I. Production of selenium-enriched microalgae as potential feed supplement in high-rate algae ponds treating domestic wastewater.Bioresource Technology,2021, 333,125239.

3.Li, J.,Otero-Gonzalez, L., Parao, A., Tack, P., Folens, K., Ferrer, I., Lens, P.N.L., Du Laing, G.Valorization of Se-enriched sludge and duckweed generated from wastewater as micronutrient biofertilizers.Chemosphere, 2021,281,130767.

4.Li, J.,Lens, P.N.L., Otero-Gonzalez, L., Du Laing, G. Production of selenium- and zinc-enrichedLemnaandAzollaas potential micronutrient-enriched bioproducts.Water Research, 2020, 172, 115522.

5.Li, J.,Ferrer, I., Lens, P.N.L., Du Laing, G. Evaluation of selenium-enriched microalgae produced on domestic wastewater as biostimulant for growth of selenium-enriched crops.Journal of applied Phycology, 2021, 33, 3027-3039.

6.Li, J.,Loi, G., Otero-Gonzalez, L., Du Laing, G., Ferrer, I., Lens, P.N.L. Selenate and selenite uptake, accumulation and toxicity inLemna minuta. Water Science and Technology, 2020, 81(9), 1852-1862.

7.Li, J.,Peng, Q., Liang, D., Liang, S., Chen, J., Sun, H., Li, S., Lei, P. Effects of aging on the fraction distribution and bioavailability of selenium in three different soils.Chemosphere,2016, 144, 2351-2359.

8.Li, J.,Liang, D., Qin, S., Feng, P., Wu, X. Effects of selenite and selenate application on growth and shoot selenium accumulation of pak choi (Brassica chinensisL.) during successive planting conditions.Environmental Science and Pollution Research, 2015, 22(14), 11076-11086.

9.Li, J.,Du Laing, G., Ferrer, I., Lens, P.N.L. Chapter 9: Selenium Biofortification for Human and Animal Nutrition.In book:Environmental Technologies to Treat Selenium pollution: Principles and Engineering, edited by Piet Lens (Ed.),2021, pp 263-281.

10.Li, J.,Otero-Gonzalez, L., Du Laing, G., Lens, P.N.L., Ferrer, I. 2019. Exploration of Se-rich bioproducts generated from (waste)water as fertilizers.Selenium Research for Environment and Human Health: Perspectives, Technologies and Advancements,pp:103-104.http://doi.org/10.1201/9780429423482-49.

11.Yu, B.H., Zeng, Q.C., Li. J.L.,Li, J.,Tan, X., Gao, X., Mao, Z.Q., Huang, P., Wu, S.J., 2023.Sedimentdepth-related variations of comammoxNitrospira:Evidence in the Three GorgesReservoir,China.Science of The Total Environment, 95, 167500.

12.Fan, Y.H., Li. Y.Q., Hayat, F., Liu, C.,Li, J.,Chen. M., 2023. Multi-targeted removal of coexisted antibiotics in water by the synergies of radical and non-radical pathways in PMS activation.Separation and Purification Technology, 305, 122475.

13.Yu, B.H., Zeng, Q.C., Li. J.L.,Li, J.,Tan, X., Gao, X., Huang, P., Wu, S.J., 2023. Vertical variation in prokaryoticcommunity composition and co-occurrence patterns in sediments of the Three Gorges Reservoir, China.Environmental Research, 237, 116927.

14.Malka. M., DuLaing, G.,Li, J.,Bohn, T., 2022. Separate foliar sodium selenate and zinc oxide application enhances Se but not Zn accumulation in pea (Pisum sativum L.) seeds.Frontiers in Plant Science,13.

15.Liu, C., He. X., Fan, Y. H.,Li, J.,He. X.X., Chen, M., 2022. The p-n heterojunction-engineered Bi2MoO6/KNbO3with 2D/3D architecture for enhanced photocatalytic activity towards benzene-containing contaminants under visible light illumination.Journal of Environmental Chemical Engineering, 10(5), 108302.

16.Peng, Q.,Li, J.,Wang, D., Wei, T. J., Chen, C.E.L., Liang, D.L., 2019. Effects of ageing on bioavailability of selenium in soils assessed by diffusive gradients in thin-films and sequential extraction.Plant and Soil, 436(1), 159-171.

17.Peng, Q., Guo, L., Ali, F.,Li, J.,Qin, S., Feng, P., Liang, D., 2016. Influence of Pak choi plant cultivation on Se distribution, speciation and bioavailability in soil.Plant and Soil, 403(1), 331-342.

18.Lei, L., Liang, D., Yu, D., Chen, Y., Song, W.,Li, J.,2015. Human health risk assessment of heavy metals in the irrigated area of Jinghui, Shaanxi, China, in terms of wheat flour consumption.Environmental Monitoring and Assessment, 187(10), 647.

6.获奖情况

2022年入选“重庆市留学人员回国创新创业支持计划”

“Cum Laude”博士论文

中国-根特大学特殊联合项目科研奖

根特大学赴第三方国长期学习研究奖学金

7.参与国际与国内会议情况

1.Algal biotechnology techniques and opportunities for the sustainable bioeconomy. 2020,Stuggart, Germany.

2. The 15thInternational Conference on the Biogeochemistry of Trace element. 2019, Nanjing, China.

3. 3rdIWA Resource Recovery Conference. 2019. Venice, Italy.

4. The 6thInternational Conference on Selenium in the Environment and Human Health. 2019, Xi’an, China.

5.The 11th International Symposium on Selenium in Biology and Medicine and The 5thInternational conference on Selenium in the Environment and Human Health. 2017, Stockholm, Sweden.

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