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Original Articles

Innovative slow-release organic carbon-source material for groundwater in situ denitrification

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Pages 909-919 | Received 11 Apr 2014, Accepted 07 Sep 2014, Published online: 14 Oct 2014

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Dayi Zhang, Guizhong Zhou, Xu Zhang, Yun Wang & Guanghe Li. (2015) Structure and mass transportation model of slow-release organic carbon-source material for groundwater in situ denitrification. Environmental Technology 36:3, pages 395-403.
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Articles from other publishers (14)

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Linzhi Zou, Mi Zhou, Zhongwu Luo, Houlin Zhang, Zhi Yang, Hong Cheng, Runjia Li, Qiang He & Hainan Ai. (2022) Selection and synthesization of multi–carbon source composites to enhance simultaneous nitrification–denitrification in treating low C/N wastewater. Chemosphere 288, pages 132567.
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Shuangyu Pi, Jingya Sun, Lijuan Feng & Jiaheng Zhou. (2020) Performance and microbial diversity of denitrifying biofilms on polyurethane foam coupled with various solid carbon sources for nitrate-rich water purification. International Microbiology 23:3, pages 405-413.
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Yunxiao Xing, Dan Zhang, Li Cai, Yifei Xie, Ling Wang, Qiulin Li & Yue Hua. (2020) An Innovative Double-Layer Microsphere Used as Slow-Release Carbon Source for Biological Denitrification. Water, Air, & Soil Pollution 231:3.
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Solomon K. M. Huno, Eldon R. Rene, Eric D. van Hullebusch & Ajit P. Annachhatre. (2018) Nitrate removal from groundwater: a review of natural and engineered processes. Journal of Water Supply: Research and Technology-Aqua 67:8, pages 885-902.
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Pengyi Lv, Jinxue Luo, Xuliang Zhuang, Dongqing Zhang, Zhanbin Huang & Zhihui Bai. (2017) Diversity of culturable aerobic denitrifying bacteria in the sediment, water and biofilms in Liangshui River of Beijing, China. Scientific Reports 7:1.
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Yi Zhang, Bing Hui & Lin Ye. (2015) Reactive toughening of polyvinyl alcohol hydrogel and its wastewater treatment performance by immobilization of microorganisms. RSC Advances 5:111, pages 91414-91422.
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Guizhong Zhou, Zhaofeng Wang, Wenqian Li, Qian Yao & Dayi Zhang. (2015) Graphene-oxide modified polyvinyl-alcohol as microbial carrier to improve high salt wastewater treatment. Materials Letters 156, pages 205-208.
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