郭学军

北京师范大学环境学院导师

郭学军

郭学军,1975-,男,博士,北京师范大学环境学院环境工程教授,北京师范大学水环境模拟国家重点实验室“985”工程研究员,2014年度“京师英才”,2015年获国家自然科学二等奖(R4)。1994.9-1998.7 湖南农业大学资源与环境学院,土壤与农业化学专业,获农学学士学位。

郭学军,1975-,男,博士,北京师范大学环境学院环境工程教授,北京师范大学水环境模拟国家重点实验室“985”工程研究员,2014年度“京师英才”,2015年获国家自然科学二等奖(R4)。

人物经历

1994.9-1998.7 湖南农业大学资源与环境学院,土壤与农业化学专业,获农学学士学位

1998.9-2001.7 华中农业大学资源、环境与农业化学系,环境工程专业,获环境工程工学硕士学位。

2001.9-2005.1 南开大学环境科学与工程学院,环境科学专业,获环境科学博士学位。

2005.8 –2006. 12 阿尔伯特研究中心环境技术部(Environmental Unit, Alberta Research Council),加拿大博士后

2006.12-2007.7 蔚山大学市政与环境工程系(Civil and Environmental Engineering Department, Ulsan Univesity), 韩国,博士后。

2007.10-2019北京师范大学环境学院,副教授,“985”研究员。

2009- 北京师范大学工会会员。

2011-2016 北京师范大学教代会代表。

2014-2019锡矿山闪星锑业公司技术专家。

2016-2019中锦盛唐低碳科技公司 技术专家。

2016-2019 北京协同创新研究院 研究员。

2019.6-2019 北京师范大学环境学院,环境工程教授。

参与研究

- 1,shēn和天然有机质(NOM)在金属(氢)氧化物纳米颗粒表面的吸附与解吸研究 国家自然科学基金,2009-2012 主持。

- 2,国家支撑计划“持久性有机污染物控制与削减的关键技术研究与示范”,2009-2012 参与。

- 3,国家支撑计划“若尔盖湿地生态需水项目”,2008-2012 参与。

- 4,国家水体污染控制与治理科技重大专项“白洋淀流域污染负荷削减技术与工程示范”,2008-2011 参与。

发表论文

[1] Guo, X. *, Chen, F. Removal of arsenic by bead cellulose loaded with iron oxyhydroxide from groundwater. Environmental Science &Technology, 2005, 39, 6808-6818.

[2] Guo,X., Wu, Z., He, M. Removal of Antimony (V) and Antimony(III) from Drinking Water by Coagulation-Flocculation-Sedimentation (CFS). Water Research 2009, 43,4327-4335.

[3] Xuejun Guo,*Xin Jin, Xiaofang Lv, Yingying Pu,and Fan Bai*. Real-Time Visualization of Perylene Nanoclusters in Water and Their Partitioning to Graphene Surface and Macrophage Cells. Environmental Science & Technology, 2015, 49, 7926-7933.

[4] Xin Jin, Xuejun Guo*, Deshu Xu, Yanna Zhao and Fan Bai* Single-cell real-time visualization and quantification of perylene bioaccumulation in microorganisms. Environmental Science & Technology, 2017, 51, 6211-6219

[5] Xuejun Guo*, Zhe Yang, Haiyang Dong, Xiaohong Guan, Qidong Ren, Xiaofang Lv, Xin Jin. Simple Combination of Oxidants with Zero-Valent-Iron (ZVI) Achieved Very Rapid and Highly Efficient Removal of Heavy Metals from Water. Water Research. 2016, 88, 671-680

[6] Guo, X. *, Du, Y., Chen, F., Park, H.-S., Xie, Y. Mechanism of Removal of Arsenic by Bead Cellulose Loaded with Iron Oxyhydroxide (β-FeOOH): EXAFS Study. Journal of Colloid and Interface Science 2007, 314, 427-433.

[7] Guo, X. *, Zeng, L., Li, X., Park, H. -S. Ammonium and potassium removal for anaerobically digested wastewater using natural clinoptilolite followed by membrane pretreatment. Journal of hazardous materials 2008, 151, 125-133.

[8] Yameng Li, Xuejun Guo⁎, Haiyang Dong, Xiaoyan Luo, Xiaohong Guan, Xiangyuan Zhang, Xinghui Xia⁎. Selenite removal from groundwater by zero-valent iron (ZVI) in combination with oxidants. Chemical Engineering Journal, 2018, 345, 432-440.

[9] Xuejun Guo, Jin Kwon Tak, Richard L. Johnson. Ammonia removal from air stream and biogas by a H2SO4 impregnated adsorbent originating from waste wood-shavings and biosolids. Journal of hazardous materials. 2009,166, 372-376.

[10] Xuejun Guo*, Wei Du, Xuan Wang, Zhifeng Yang. Degradation and Structure Change of Humic Acids Corresponding to Water Decline in Zoige Peatland, Qinghai-Tibet Plateau. Science of the total Environment, 2013, 231-236.

[11] Xuejun Guo, Zhijun Wu, Mengchang He*, Xiaoguang Meng, Xin Jin, Nan Qiu, Jing Zhang. Adsorption of Antimony onto Iron oxyhydroxides: Adsorption Behavior and Surface Structure. Journal of Hazardous Materials, 2014, 276, 339-345.

[12] Xuejun Guo*, Zhe Yang, Hong Liu, Xiaofang Lv, Qiansi Tu, Qidong Ren, Xinghui Xia, Chuanyong Jing. Common Oxidants Activate the Reactivity of Zero-Valent Iron (ZVI) and Hence Remarkably Enhance Nitrate Reduction from Water. Separation and Purification Technology, 2015,146, 227–234.

[13] ZhijunWu, Mengchang He, Xuejun Guo*, Ruijing Zhou. Removal of antimony (III) and antimony (V) from drinking water by ferric chloride coagulation: Competing ion effect and the mechanism analysis. Separation and Purification Technology, 2010, 76, 184-190.

[14] Guo, X. *, Zeng, L., Li, X., Park, H.-S. Removal of ammonium from RO permeate of anaerobically digested wastewater by natural zeolite. Separation Science and Technology 2007, 42, 3169-3185.

[15] Guo, J., Kim, J.-H., Behera, S.K., Park, H.-S. Influence of dissolved oxygen concentration and aeration time on nitrite accumulation in partial nitrification process, Int. J. Environ. Sci. Tech., 2008.Vol. 5 (4), 527-534.

[16] Xiongye Zhao, Xuejun Guo*, Zhifeng Yang, Hong Liu, Qingqing Qian. Phase-controlled preparation of iron (oxyhydr)oxide nanocrystallines for heavy metal removal. Journal of Nanoparticle Research, 2011, 13: 2853–2864.

[17] Mengchang He, Ruijing Zhou, Xuejun Guo*. Behavior of stabilized multiwalled carbon nanotubes in a FeCl3 coagulation system and the structure characteristics of the produced flocs, 2011, Journal of Colloid and Interface Science. 2012, 366, 173-178.

[18] Xuejun Guo*, Xin Jin. Treatment of anaerobically digested cattle manure wastewater by tubular ultrafiltration membrane. Separation Science and Technology, 2013, 48: 1023–1029.

[19] Xuejun Guo*, Larry Zeng, Xin Jin. Advanced regeneration and fixed-bed study of ammonium and potassium removal from anaerobic digested wastewater by natural zeolite. Journal of Environmental Sciences, 2013, 25(5) 954-961.

[20] Xuejun Guo, Kunpeng Wang, Mengchang He*, Zhiwei Liu, Sisi Li. Antimony Smelting Process Generating the Solid Wastes and Dust: Characterization and Leaching Behaviors. Journal of Environmental Sciences, 2014, 26, 1549-1556.

[21] Xuejun Guo, Xin Jin, Xiongye Zhao, Zhe Yang, Xiaofang Lv, Jing Zhang, Nan Qiu. Nano-adsorptive Effects Manifested in Arsenite Adsorption onto the Nano-sized Goethite. Science of Advanced Materials, 2014, 6(4), 793-802.

[22] Xuejun Guo*, Xin Jin. Purification of UF-treated anaerobically digested manure wastewater by two-pass reverse osmosis Desalination and Water Treatment. 2013,1-8.

[23] Dong Yang, Xuejun Guo⁎, Tian Xie, Xiaoyan Luo. Reactive oxygen species may play an essential role in driving biological evolution: The Cambrian Explosion as an example. Journal of Environmental Sciences, 2018, 218-226.

[24] Kim, J.-H., Guo, X., Park, H.-S. Comparison study of the temperature and free ammonia concentration on nitrification and nitrite accumulation. Process Biochemistry, 2008, 43, 154-160.

[25] Huang, Q., Chen, W., Guo, X. Immobilization and species of heavy metals in soils in the absence and presence of bacterial biomass. Soil Science and Plant Nutrition, 2004, 50, 935-939.

[26] Huang, Q., Chen, W., Guo, X. Chemical Fractionation of Copper, Zinc and Cadmium in Two Chinese Soils as influenced by Rhizobia. Communications in Soil Science and Plant Analysis, 2004, 35, 947-960.

[27] Behera, S.K., Kim, J.-H., Guo, X., Park, H.-S. Adsorption equilibrium and kinetics of polyvinyl alcohol from aqueous solution on powdered activated carbon. Journal of hazardous materials, 2008, 153,1207-1214.

[28] Jung-Hoon Kim, Xuejun Guo, Hung-Suck, Park. A unified model of ammonium oxidation rate at various initial ammonium strength and active ammonium oxidizer concentrations. Bioresource Technology. 2009, 100, 2118-2123.

[29] Huang, Q, X.Guo and W. Chen. 2001. Influence of rhizobia on the forms of Cu, Zn and Cd in two Chinese soils. In: Biogeochemical Processes and Cycling of Elements in the Environment (J.Weber, E. Jamroz, J. Drozd and A. Karczewska eds.), pp. 271-272, Polish Society of Humic Substances, Wroclaw, Poland.

[30] Guo, X., Larry Zeng, Xiaomei Li. Removal of ammonium and potassium from RO permeate of anaerobically digested cattle manure by natural zeolite. The Canadian society for Bioengineering, 2006 National Technical Conference, Edmonton, Alberta, Canada, Paper No: 06-117, 1-10.

[31] Wang H.Y., Shen Z.Y., Guo X.J., Niu J.F., Kang B. Ammonia adsorption and nitritation in sediments derived from the Three Gorges Reservoir, China. Environmental Earth Science, 2010, 60: 1653-1660.

[32] Xi Chen, Xinghui Xia, Shan Wu, Fan Wang, Xuejun Guo. Mercury in urban soils with various types of land use in Beijing, China. Environmental Polution, 2009, Environmental Pollution, 2010,158,48-54.

[33] Xiongye Zhao, Liu Hong, Xuejun Guo*. Cost-effective preparation of phase-and size-controlled iron (oxy)hydroxide nanocrystals using amorphous ferrous and ferric hydroxide precursors. The 6th International Conference on Interfaces Against Pollution (IAP2010).

[34] Baotong Zhu, Xinghui Xia*, Na Xia, Shangwei Zhang, Xuejun Guo. Modification of Fatty Acids in Membranes of Bacteria: Implication for an Adaptive Mechanism to the Toxicity of Carbon Nanotubes. Environmental Science & Technology, 2014, 48, 4086-4095.

[35] Cui, Q.; Wang, X.; Li, D.; Guo, X. An ecosystem health assessment method integrating geochemical indicators of soil in Zoige wetland, southwest China. Procedia Environmental Sciences, 2012, 1527-1534.

[36] Wang YL, Wang X, Zheng QY, Li CH, Guo XJ. A Comparative Study on Hourly Real Evapotranspiration and Potential Evapotranspiration during Different Vegetation Growth Stages in the Zoige Wetland Procedia Environmental Sciences, 2012, 1585-1594.

[37] Xingyun Hu,Xuejun Guo,Mengchang He,Sisi Li. pH-dependent release characteristics of antimony and arsenic from typical antimony-bearing ores. Journal of Environmental Sciences, 2016, 171-179.

[38] Xingyun Hu, Mengchang He, Sisi Li, Xuejun Guo. The leaching characteristics and changes in the leached layer of antimony-bearing ores from China, Journal of Geochemical Exploration, 2017, 176, 76-84.

[39] Yawei Zhai, Xinghui Xia⁎, Xinyue Xiong, Lingzi Xia, Xuejun Guo, Jay Gan. Role of fluoranthene and pyrene associated with suspended particles in their bioaccumulation by zebrafish (Danio rerio). Ecotoxicology and Environmental Safety, 2018, 157, 89-94.

[40] Zhijun Wua, Juan Cheng, Xuejun Guo⁎, Chunguang Ding, Xin Jin, Qidong Ren, Min Zheng, Lei Wang, Wenjin Zhao. The processes and mechanism of antimony sequestered by red blood cells and its metabolic conjugation with hemoglobin in rats. Toxicology, 2018, 408, 46-53.

[41] Xiaoyan Luo, Xuejun Guo⁎, Xinghui Xia, Xiangyuan Zhang, Na Ma, Siwen Leng, Sana Ullah, Zinashbizu Mengesha Ayalew Rapid and long-effective removal of phosphate from water by zero-valent iron in combination with hypochlorite (ZVI/NaClO). Chemical Engineering Journal., 2020, 382, 122835

[42] Xue-jun GUO, Dong YANG, Xiang-yuan ZHANG. Epigenetics recording varied environment and complex cell events represents the origin of cellular aging. J Zhejiang Univ-Sci B (Biomed & Biotechnol) 2019 20(7):550-562. IF 1.879

[43 ]Zinashbizu Mengesha Ayalew, Xiangyuan Zhang, Xuejun Guo⁎, Sana Ullah, Siwen Leng, Xiaoyan Luo, Na Ma. Removal of Cu, Ni and Zn directly from acidic electroplating wastewater by Oligo-Ethyleneamine dithiocarbamate (OEDTC). Separation and Purification Technology, 2020, 248, 117114.

[44] Sana Ullah, Xuejun Guo, Xiaoyan Luo, Xiangyuan Zhang, Yameng Li, Ziyu Liang. The coupling of sand with ZVI/oxidants achieved proportional and highly efficient removal of arsenic. Front. Environ. Sci. Eng. 2020, 14(6): 94.

[45] Sana Ullah, Xuejun Guo, Xiaoyan Luo, Xiangyuan Zhang, Siwen Leng, Na Ma, Palwasha Faiz. Rapid and long-effective removal of broad-spectrum pollutants from aqueous system by ZVI/oxidants. Front. Environ. Sci. Eng. 2020, 14: 89.

[46] Zinashbizu Mengesha Ayalew, Xiangyuan Zhang, Xuejun Guo, Sana Ullah, Siwen Leng, Xiaoyan Luo, Na Ma. Removal of Cu, Ni and Zn directly from acidic electroplating wastewater by Oligo-Ethyleneamine dithiocarbamate (OEDTC) , Separation and Purification Technology, 2020, 248, 117114.

[47] Xin Jin, Qiaoyi Hua, Yanan Liu, Zhijun Wu, Deshu Xu, Qidong Ren, Wenjin Zhao, Xuejun Guo* Organ and tissue-specific distribution of selected polycyclic aromatic hydrocarbons (PAHs) in ApoE-KO mouse. Environmental Pollution, 2021, 286, 117219.

[48] Xiangyuan Zhang, Shaodong Wang, Lan Ling, Guanyu Hou, Siwen Leng, Na Ma, Mantang Qiu, Xiao Li, Xuejun Guo* The distribution and structural fingerprints of metals from particulate matters (PM) deposited in human lungs. Ecotoxicology and Environmental Safety 233 (2022) 113324.

[49] Zinashbizu Mengesha Ayalew, Xuejun Guo∗, Xiangyuan Zhang Synthesis and application of polyethyleneimine (PEI)-based composite/ nanocomposite material for heavy metals removal from wastewater: A critical review. Journal of Hazardous Materials Advances 8 (2022) 100158.

[50] Xiangyuan Zhang, Siwen Leng, Mantang Qiu, Yifan Ding, Lin Zhao, Na Ma, Yue Sun, Zijie Zheng, Shaodong Wang, Yun Li, Xuejun Guo*. Chemical fingerprints and implicated cancer risks of Polycyclic aromatic hydrocarbons (PAHs) from fine particulate matter deposited in human lungs. Environment International 2023,173, 107845.

[51] Bojun Li; Xuejun Guo*; Xiangyuan Zhang; Siwen Leng; Na Ma; Xiaoqiong Wu. A new strategy to stabilize the heavy metals in carbonized MSWI-fly ash using an acid-resistant oligomeric dithiocarbamate (ODTC) chelator. Journal of Hazardous Materials. 2024, 467,133686.

[52] Siwen Leng; XuejunGuo;* Na Ma; BojunLi; XiangyuanZhang; YifanDing; Lin Zhao; Bottom-up synthesis of an oligo-dithiocarbamate chelating precipitant and its direct removal of complexed heavy metals from acidic wastewater. ES&T Water. 2023, 3: 2581-2589

[53] Qidong Ren; Xuejun Guo*, Dong Yang*, Chuanfang Zhao, Xiangyuan Zhang, Xinghui Xia. A wide survey of heavy metals-induced in-vitro DNA replication stress characterized by rate-limited replication. Current Research in Toxicology 2024, 6:100152.

[54] 郭学军,陈甫华. 载铁(β-FeOOH)棉纤维素吸附剂固定床去除地下水砷.化工学报. 2005, 56(9), 1757-1764.

[55] 郭学军,陈甫华. 载铁(β-FeOOH)球形棉纤维素吸附剂去除地下水As(Ⅴ)的研究.环境科学. 2005, 26(3): 66-72.

[56] 郭学军,陈甫华. 载铁(β-FeOOH)球形棉纤维素吸附剂去除地下水砷(Ⅲ)的研究.高等学校化学学报. 2005, 26(7): 1258-1263

[57] 郭学军, 黄巧云, 赵振华,陈雯莉. 微生物对土壤环境中重金属活性的影响. 应用环境与生物学报. 2002. 8(1):105-110

[58] 陈雯莉, 黄巧云, 郭学军.2003. 根瘤菌对土壤中Cu, Zn 和Cd形态的影响. 应用生态学报. 14 (8) ∶1278~1282

专利清单

1. 陈甫华,郭学军 载铁球形纤维素吸附剂及其制备和应用. 2005,CN 1593745

2. 郭学军,杨喆 一种利用零价铁/氧化剂/沸石协同体系去除水体中硝酸盐的方法. CN104341055B,ZL201310312657.7.

3.郭学军,杨zhé 一种快速高效去除水体中重金属的方法. 2014, CN104276646B,ZL201410025072.1.

4.郭学军,张翔垣 一种水处理系统。申请号:CN201810585725.X;申请日:2018.06.08;公开号:CN108585176A;公开日:2018.09.28. ZL201820884480.6

5. 郭学军 一种重金属去除制剂及其合成方法与应用 - CN201811422381.7申请日:2018.11.23;授权公告日: 2020.11.03.授权号:CN110203991B; 专利号:ZL201811422381.7.

6. 郭学军;夏星辉;马娜;张翔垣 一种河道水质原位修复系统及方法 - CN201811564935.7 申请日:2018.12.20; 授权公告日:2020.05.19;授权公告号:CN109626634B; 专利号:ZL201811564935.7

7. 郭学军; 张翔垣;冷思文;孙悦;郑子杰; 马娜;夏星辉. 家用污水处理装置. 申请日:2020.01.10;授权公告日:2020.10.30;授权公告号: CN211814010U; 专利号:ZL202020051848.8

8. 郭学军 重金属去除制剂及其合成方法与应用 申请号CN201910739954.7 申请日2019.08.12 公开(公告)号 CN110451622A 公开(公告)日 2019.11.15 专利号:ZL201910739954.7

9. 郭学军;杨冬 一种加速物种突变的新育种方法。申请号:CN201810596114.5;申请日:2018.06.11;公开号:CN108753814A;公开日:2018.11.06 专利号:ZL201810596114.5

10. 郭学军,郑子杰,丁逸凡,马娜,张翔垣,冷思文,孙悦,赵琳 生活饮用水处理系统 授权公告号:CN214654099U专利号:CN202023058380.4

11. 郭学军 冷思文 马娜 张翔垣 一种水质处理系统及方法。授权号:CN110240272B 专利号:ZL201910490895.4

12. 郭学军;冷思文;马娜;丁逸凡;赵琳;孙悦;张翔垣;郑子杰. 一种污酸废水的处理方法.授权号:CN113184968B 专利号:ZL202110586641.X

获奖情况

国家自然科学二等奖 流域水沙条件对水质的影响过程及机理 二等奖。中国有色工业科学技术奖 锑冶炼砷碱渣高效综合利用新技术研究与应用 一等奖北京市科学技术奖一等奖 高含沙河流中泥沙对水质的影响过程及机理研究 一等奖。2009年环境学院优秀青年教师奖。2008年环境学院优质课程特等奖。环境学院青年教师教学比赛三等奖 2008。环境学院教学特等奖 2008。优秀青年教师奖 2009。

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