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个人介绍

概况

水环境污染与水资源紧缺是制约运城市建设与发展的两大重要因素.分析了运城市水污染现状与特征,提出了通过调整产业结构与布局、建立与完善地方法规和政策支持体系、加强综合协调与监督管理、加大科技投入及完善市场化运行机制等手段和措施防治与控制运城市水污染,实现污水资源化.

代表成果

  1. 剩余污泥发酵产微生物絮凝剂的技术及基础研究,教育部留学回国人员科研启动基金,2012.06-2014.05,项目负责人。

  2. 剩余污泥发酵过程中产絮与污泥性能变化的相互影响及调控机制,中央高校基本科研业务费专项资金,2012.01-2014.12,项目负责人。

  3. 剩余污泥发酵产微生物絮凝剂原理及所产絮凝剂特性研究,国家自然科学基金,2011.1-2013.12,项目负责人。

  4. 城市污水厂剩余污泥制备微生物絮凝剂的增强技术研究,同济大学青年优秀人才培养行动计划,2009.12-2011.11,项目负责人,已结题。

  5. 利用剩余污泥制备微生物絮凝剂的研究,污染控制与资源化研究国家重点实验室自主研究课题,2009.06-2011.05,项目负责人,已结题。

  6. 微生物絮凝剂TJ-F1的絮凝机制研究,同济大学环境科学与工程学院青年科技创新基金,2009.04-2011.03,项目负责人,已结题。

  7. 污水膜生物反应器处理技术生物调控机制及原理,上海市曙光跟踪项目,2011.01-2013.12,主要参与。

  8. 增强型中空纤维超/微滤复合膜的生产工艺及膜组器的研究与开发,国家“863”计划重点课题,2009.10-2012.10,第2负责人。

  9. 水网小城镇水污染控制与治理共性关键技术研究与工程示范,国家水体污染控制与治理科技重大专项,2009.01-2011.12,主要参与。


研究领域

水污染控制与资源化;剩余污泥资源化利用;环境微生物技术

项目

  1. 2012-06-01~2014-05-01;剩余污泥发酵产微生物絮凝剂的技术及基础研究.

  2. 2012-01-01~2014-12-01;剩余污泥发酵过程中产絮与污泥性能变化的相互影响及调控机制.

  3. 2011-01-01~2013-12-01;剩余污泥发酵产微生物絮凝剂原理及所产絮凝剂特性研究.

专利

  1. 张志强;一种提高重金属生物吸附剂产量的方法;专利号:201310234516.8.

  2. 张志强;利用奇异变形杆菌制备生物絮凝剂的方法;专利号:200710042196.0.

论文

  1. Effect of short-time aerobic digestion on bioflocculation of extracellular polymeric substances from waste activated sludge. Environmental Science and Pollution Research, In Press.Zhang Zhiqiang*, Jiao Zhang, Jianfu Zhao, Siqing Xia.DOI 10.1007/s11356-013-1887-3,2008.

  2. Copper (II) adsorption by the extracellular polymeric substance extracted from waste activated sludge after short-time aerobic digestion.Zhang Zhiqiang, Yun Zhou, Jiao Zhang, Siqing Xia.Environmental Science and Pollution Research, 2014, 21: 2132-2140,2014.

  3. Ultrasound-promoted extraction of cheap microbial flocculant from waste activated sludge..Zhang Zhiqiang, Xiaoqing Dai, Chunhui Wang, Wanqi Qi, Xiangrong Li, Jiao Zhang, Siqing Xia.Environmental Technology, 2013, 34(10): 1219-1224.,2013.

  4. Resource reuse of waste activated sludge as raw material of microbial flocculant preparation: methods and comparison..Zhang Zhiqiang, Jiao Zhang, Siqing Xia*.Polish Journal of Environmental Studies, 2013, 22(3): 951-956,2013.

  5. Preparation of microbial flocculant from excess sludge of municipal wastewater treatment plant..Zhang Zhiqiang*, Jiao Zhang.Fresenius Environmental Bulletin, 2013, 22(1): 142-145.,2013.

  6. Wenshan Guo, Huu-Hao Ngo, Xiangzhou Meng, Jinhong Fan, Jianfu Zhao, Siqing Xia. Effects of low-concentration Cr(VI) on the performance and the membrane fouling of a submerged membrane bioreactor in municipal wastewater treatment..Lijie Zhou, Zhang Zhiqiang*, Wei Jiang, Wenshan Guo, Huu-Hao Ngo, Xiangzhou Meng, Jinhong Fan, Jianfu Zhao, Siqing Xia..Biofouling, 2014, 30(1): 105-114,2014.

  7. Hermanowicz. Simultaneous removal of phosphorus and nitrogen from sewage5 using a novel combo system of fluidized bed reactor–membrane6 bioreactor (FBR–MBR)..Awoke Guadie, Siqing Xia, Zhang Zhiqiang, Wenshan Guo, Huu Hao Ngo, Slawomir W.Bioresource Technology, 2013, 149: 276-285.,2013.

  8. Bioreduction of para-chloronitrobenzene in a hydrogenbased hollow-fiber membrane biofilm reactor:.effects of nitrate and sulfate. Biodegradation, 2014, 25(2): 205-215.,2014.

  9. New proposed conceptual mathematical models for biomass viability and membrane fouling of membrane bioreactor..M.F.R. Zuthi, H.H. Ngo*, W.S. Guo, J.X. Li, S.Q. Xia, Z.Q. Zhang.Bioresource Technology, 2013, 142: 737-740,2013.

  10. Slawomir W. Hermanowicz. Effect of quorum quenching on the reactor performance, biofouling and biomass characteristics in membrane bioreactors.Wei Jiang, Siqing Xia*, Jun Liang, Zhang Zhiqiang.Water Research, 2013, 47(1): 187-196,2013.

  11. Wastewater Reuse Demonstration of the Sustainable Campus Program in Tongji University, China.Zhang Zhiqiang, Jifeng Guo, Rongchang Wang, Siqing Xia.Journal of Water Sustainability, 2012, 2(2): 141-148.,2012.


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