Open Access
Issue |
E3S Web of Conf.
Volume 406, 2023
2023 9th International Conference on Energy Materials and Environment Engineering (ICEMEE 2023)
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Article Number | 01023 | |
Number of page(s) | 4 | |
Section | Biological Device and Material Structure Analysis | |
DOI | https://doi.org/10.1051/e3sconf/202340601023 | |
Published online | 31 July 2023 |
- Dai W. (2019). Study on the process of urban sewage recycling to improve carbon capture rate and enhance production capacity (doctoral thesis, Dalian University of Technology). https://kns.cnki.net/kcms/detail/detail.aspx?dbname=CDFDLAST2020&filename=1020003582.nh [Google Scholar]
- Xu J. (2019). Pilot test and engineering design application research of a pharmaceutical wastewater (master’s degree thesis, Suzhou University of Science and Technology). https://kns.cnki.net/kcms/detail/detail.aspx? dbname=CMFD202001&filename=1020711838.nh [Google Scholar]
- Zhang Y, Su B, Xu H, Han L, Wang J&Liu G. (2017). Research progress on the application of micro-oxygen technology in wastewater biological treatment. Industrial Water Treatment (07),15-20. [Google Scholar]
- Sun C. (2017). Study on operating performance and microbiological mechanism of microbial electrolytic cell coupled anaerobic membrane bioreactor (MEC-AnMBR) (Master’s degree thesis, Zhejiang University). https://kns.cnki.net/kcms/detail/detail.aspxdbname=CMFD201701&filename=1017035011.nh [Google Scholar]
- Zhang Z, Zheng P, Li W & Alina Z. (2015). Research progress of integrated biological nitrogen removal technology. Progress in chemical industry (10), 3762-3768. DOI: 10.16085/j.ISSN.1000-6613.2015.10.037 [Google Scholar]
- Ruan Chenxian. (2015). Directional thinking on the development of China’s membrane industry. Highlights of the first phase of the Hot Salon of Shanghai Water Purification Technology Society (Salon on the R&D and Application of Membrane Technology). Water Purification Technology magazine. (eds.) Drinking water safety control conference and proceedings of the 14th annual meeting of the Water Supply Professional Committee of china civil engineering society Water Industry Branch (pp.211-213). Drinking water safety control conference cum. [Google Scholar]
- Pan Z. (2015). Comparative study of MBR in reclaimed water reuse. Resource conservation and environmental protection (05), 32+35. DOI: 10.16317/j.cnki.12-1377/x.2015.05.031. [Google Scholar]
- WuM, FengZ, Liu H, Sun M, Zhang Y & Dai J. (2015). Optimization of TN removal process by HMBR by response surface methodology. Journal of Environmental Engineering (05),2073-2078. [Google Scholar]
- Zhong X. (2014). Overview and application of MBR process. Resource conservation and environmental protection (05), 117-118. DOI: 10.16317/j.cnki.12-1377/x.2014.05.075. [Google Scholar]
- Yang W, Zhao Q, Han Z, Li K, Liang H & Li G. (2013). Natural start-up and stable operation characteristics of MBR for purifying polluted surface water. Journal of Environmental Engineering (04),1363-1367. [Google Scholar]
- Hou J, Huang L, Fang Z, Ma X & Tang X. (2012). Occurrence and control of filamentous bulking in A/O-MBR process. China Water Supply and Drainage (23),1-4. [Google Scholar]
- Chen Q, Li Z & Chen Y. (2010). Comparative experimental study on the treatment of printing and dyeing wastewater by two membrane bioreactors. Environmental Science and Technology (06),164-168. [Google Scholar]
- Fu C, Zhang G & Gu P. (2009). Research and application progress of membrane bioreactor in sewage treatment. Water treatment technology (05), 1-6. DOI: 10.16796/j.cn ki.1000-3770.2009.05.001. [Google Scholar]
- Chen P, Zheng J, Zhou Y & Zheng X. (2009). The Present Situation and Future of China Film Industry. Environmental Protection (08),71-74. [Google Scholar]
- Shen Y. (2009). Analysis on the classification and new technology of MBR. Science and Technology Information (08),80+83. [Google Scholar]
- Cai L, Yang J & Bai Z. (2007). Present situation and prospect of global membrane bioreactor wastewater treatment system engineering. Information of China construction (aquatic industry market) (12),31-36. [Google Scholar]
- Li Z, Li N & Zhang H. (2007). Research progress of membrane bioreactor (MBR) for wastewater treatment. Water purification technology (01), 18-22. DOI: 10.15890/j.cnki.jsjs.2007.01.001. [Google Scholar]
- OC Kolawole. (2015). Design and docking studies of inhibitors for the chorismate synthase from Streptococcus pneumoniae using 5-enol pyruvylshikimate 3-phosphate (EPSP) analogues. Journal of Pharmacy and Bioresources, 12(1), 61-76. [CrossRef] [Google Scholar]
- Zhang R, Hao L, Cheng Z, Xin B, Sun J, Guo J. (2023). Research progress of electrically-enhanced membrane bioreactor (EMBR) in pollutants removal and membrane fouling alleviation.. Chemosphere, 331, 138791. [CrossRef] [PubMed] [Google Scholar]
- Sengar A, & Vijayanandan A. (2022). Effects of pharmaceuticals on membrane bioreactor: Review on membrane fouling mechanisms and fouling control strategies.. Science of The Total Environment, 808, 152132. [CrossRef] [Google Scholar]
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