A simulation apparatus of in-situ groundwater remediation (SAIR) that used maize stalks pretreated with sodium hydroxide (MSSH) as a carbon source was designed for nitrate-contaminated groundwater treatment. Two experiments, RA and RB, were constructed in this SAIR. The removal performance of SAIR fed with real nitrate contaminated water was investigated under static and dynamic conditions. In the static remediation experiment, good removal efficiency (>95% for nitrate, 89% for total nitrogen) was observed in both experiments. However, nitrate removal efficiency did not differ greatly between RA and RB at a hydraulic retention time (HRT) of 15 d. Overall, these results indicate that MSSH has potential for use as an alternative carbon source for denitrification.
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Research Article|
June 06 2016
In-situ biological denitrification using pretreated maize stalks as carbon source for nitrate-contaminated groundwater remediation
Tongyan Li;
Tongyan Li
1Key Laboratory of Groundwater Cycle and Environment Evolution (China University of Geosciences (Beijing)), Ministry of Education, Beijing 100083, China
2School of Water Resources and Environment, China University of Geosciences (Beijing), Beijing 100083, China
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Wenqi Li;
3China Institute of Water Resource & Hydropower Research, No. 20 Chegongzhuangxi Road, Haidian District, Beijing 100038, China
E-mail: [email protected]
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Chuanping Feng;
Chuanping Feng
1Key Laboratory of Groundwater Cycle and Environment Evolution (China University of Geosciences (Beijing)), Ministry of Education, Beijing 100083, China
2School of Water Resources and Environment, China University of Geosciences (Beijing), Beijing 100083, China
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Weiwu Hu
Weiwu Hu
2School of Water Resources and Environment, China University of Geosciences (Beijing), Beijing 100083, China
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Water Supply (2017) 17 (1): 1–9.
Article history
Received:
November 15 2015
Accepted:
May 23 2016
Citation
Tongyan Li, Wenqi Li, Chuanping Feng, Weiwu Hu; In-situ biological denitrification using pretreated maize stalks as carbon source for nitrate-contaminated groundwater remediation. Water Supply 1 February 2017; 17 (1): 1–9. doi: https://doi.org/10.2166/ws.2016.096
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