个人简介
教育经历
2014年9月-2019年7月,清华大学,环境科学与工程专业,博士
2016年10月-2016年11月,日本京都大学,短期国际学术交流项目
2010年9月-2014年7月,同济大学,给水排水工程专业,学士
2011年9月-2013年6月,同济大学,工程管理专业,学士(第二专业)
工作经历
2023年1月-至今,清华大学深圳国际研究生院,助理教授
2020年1月-2023年1月,美国加州大学尔湾分校,George E. Hewitt研究员
2019年7月-2019年12月,清华大学深圳国际研究生院,科研助理
学术兼职
担任Frontiers in Microbiology编委,以及Chemical Engineering Journal、Journal of Hazardous Materials、Science of the Total Environment等国际学术期刊审稿人
荣誉奖项
2020-2022 George E. Hewitt Fellowship
研究领域
主要研究方向为土壤/地下水污染修复、土壤肥力管理和面源污染控制,具体包括生物炭、水凝胶等土壤/地下水修复材料设计及交叉应用,重金属、农药等在土壤和地下水中的迁移和归趋,土壤氮、磷、硅营养盐循环,缓释/生物肥料和缓释农药的设计应用,农田退水生态截留、处理和再利用
近期论文
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Lixun Zhang, Fangxin He, Yuntao Guan*. Immobilization of hexavalent chromium in contaminated soil by nano-sized layered double hydroxide intercalated with diethyldithiocarbamate: Fraction distribution, plant growth, and microbial evolution. Journal of Hazardous Materials, 2022, 128382
Wei Mao, Lixun Zhang*, Ying Zhang, and Yuntao Guan*. Simultaneous removal of arsenite and cadmium by manganese-crosslinking sodium alginate modified biochar and zerovalent iron composite for wastewater treatment. Environmental Science: Nano, 2022, 214-228
Wei Mao, Lixun Zhang*, Ying Zhang, Yanfei Wang, Nuanling Wen, and Yuntao Guan*. Adsorption and photocatalysis removal of arsenite, arsenate, and hexavalent chromium in water by the carbonized composite of manganese-crosslinked sodium alginate. Chemosphere, 2021, 133391.
Lixun Zhang*, Yuntao Guan. Consistent responses of soil microbial communities to bioavailable silicon deficiency in croplands. Geoderma, 2021, 115587.
Lixun Zhang, Yuntao Guan*. Microbial investigations of new hydrogel-biochar composites as soil amendments for simultaneous nitrogen-use improvement and heavy metal immobilization. Journal of Hazardous Materials, 2021, 127154.
Yang Liu, Lixun Zhang*, Zhengfang Zhang, Ying Zhang, Yuntao Guan*. Citrate-modified biochar for simultaneous and efficient plant-available silicon release and copper adsorption: Performance and mechanisms. Journal of Environmental Management, 2021, 113819.
Lixun Zhang, Shengyin Tang, Yuntao Guan*. Excellent adsorption-desorption of ammonium by poly(acrylic acid) grafred chitosan and biochar composite for sustainable agricultural development. ACS Sustainable Chemistry & Engineering, 2020, 8: 16451?16462.
Lixun Zhang*, Yuntao Guan, Sunny C. Jiang. Investigations of soil autotrophic ammonia oxidizers in farmlands through genetics and big data analysis. Science of the Total Environment, 2021, 146091.
Lixun Zhang, Sunny C. Jiang, Yuntao Guan*. Efficient removal of selenate in water by cationic poly(allyltrimethylammonium) grafted chitosan and biochar composite. Environmental Research, 2020, 110667.
Lixun Zhang, Fangxin He, Wei Mao, Yuntao Guan*. Fast and efficient removal of Cr(VI) to ppb level together with Cr(III) sequestration in water using layered double hydroxide interclated with diethyldithiocarbamate. Science of the Total Environment, 2020, 138701.
Lixun Zhang, Shengyin Tang, Fangxin He, Yang Liu, Wei Mao, Yuntao Guan*. Highly efficient and selective capture of heavy metals by poly(acrylic acid) grafted chitosan and biochar composite for wastewater treatment. Chemical Engineering Journal, 2019, 378: 122215.
Lixun Zhang, Shengyin Tang, Chaojin Jiang, Xiaoqian Jiang, Yuntao Guan*. Simultaneous and efficient capture of inorganic nitrogen and heavy metals by polyporous layered double hydroxide and biochar composite for agricultural nonpoint pollution control. ACS Applied Materials & Interfaces, 2018, 10: 43013?43030.
Lixun Zhang, Guangyu Zhu, Xin Ge, Gang Xu, Yuntao Guan*. Novel insights into heavy metal pollution of farmland based on reactive heavy metals (RHMs): Pollution characteristics, predictive models, and quantitative source apportionment. Journal of Hazardous Materials, 2018, 360: 32?42.
Lixun Zhang, Bo Zhao, Gang Xu, Yuntao Guan*. Characterizing fluvial heavy metal pollutions under different rainfall conditions: Implication for aquatic environment protection. Science of the Total Environment, 2018, 635: 1495?1506.
Lixun Zhang, Yuntao Guan*. Quantitatively updating sewage discharge standard of wastewater treatment plants: starting from the estimation of water environment capacity. Desalination and Water Treatment, 2018, 135: 381?391.