H. Lan, Removal Of Glyphosate From Water By Electrochemically Assisted Mno2 Oxidation Process, Sep. Purif. Technol, 2013, 30 – 34.

79. P. S. Roshini, R. Gandhimathi; S. T. Ramesh, P. V. Nidheesh, Combined Electro- Fenton and Biological Processes for the Treatment of Industrial Textile Effluent: Mineralization and Toxicity Analysis, Journal of Hazardous, Toxic, and Radioactive Waste, 2017, 21(4), 1 – 8.

80. M. S. Amr, A. Abdelkader, A review of membrancebioreactor (MBR) technology and their applications in the wasterwater treatment systems, Eleventh International Water Technology Conference, 2007, 269 – 279.

81. F. I. Hai, K. Yamamoto, W. Editor-in-Chief: A Peter, Membrane Biological Reactors, Treatise on Water Science, Oxford, Elsevier, 2011, 4 (16), 571 – 613.

82. S. Judd, The MBR Book: Principles and applications of membrane bioreactors in water and wastewater treatment, Elsevier ed., Elsevier Ltd, 2006, 10 – 25.

83. T. Stephenson, S. Judd, B. Jefferson, K. Brindle, Membrane Bioreactors for Wastewater Treatment, IWA publishing, 2001.

84. N. Cicek, M.T. Suidan, P. Ginestet, J.M. Audic, Impact of soluble organic compounds on permeate flux in an aerobic membrane bioreactor, Environmental Technology, 2003, 24(2), 249 – 256.

85. N. O Yigit, I. Harman, G. Civelekoglu, H. Koseoglu, Membrane fouling in a pilot- scale submerged membrane bioreactor operated under various conditions, Desalination, 2008, 231, 124 – 132.

86. J. P Nywening, H. Zhou, Influence of filtration conditions on membrane fouling and scouring aeration effectiveness in submerged membrane bioreactors to treat municipal wastewater., Water Res., 2009, 43, 3548 – 3558.

87. S. R. Shariati, B. Bonakdarpour, N. Zare, F. Z. Ashtiani, The effect of HRT on the performance and fouling characteristics of membrane sequencing batch reactors used for the treatment of synthetic petroleum refinery wastewater, Bioresour. Technol., 2011, 102, 7692 – 7699.

88. M. I. A. Isma, A. Idris, R. Omar; A. R. P. Razreena, Effects of SRT and HRT on treatment performance of MBR and membrane fouling, Int. J. Chem. Mol. Nucl. Mater. Metall. Eng., 2014, 8, 485 – 489.

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Xem toàn bộ 229 trang tài liệu này.

89. J. Zhang, J. Zhou, Y. Liu, A. G. Fane, A comparison of membrane fouling under constant and variable organic loadings in submerge membrane bioreactors., Water Res., 2010, 44, 5407 – 5413.

90. M. A. H. Johir, S. Vigneswaran, A. Sathasivan, J. Kandasamy, C.Y. Chang, Effect of organic loading rate on organic matter and foulant characteristics in membrane bio-reactor, Bioresour. Technol., 2012, 113, 154 – 160.

Nghiên cứu xử lý hóa chất bảo vệ thực vật glyphosate trong nước bằng quá trình oxy hóa điện hóa kết hợp với thiết bị phản ứng sinh học – màng MBR - 21

91. Z. Ma, X. Wen, F. Zhao, Y. Xia, X. Huang, D. Waite, J. Guan, Effect of temperature variation on membrane fouling and microbial community structure in membrane bioreactor, Bioresour. Technol., 2013, 133, 462 – 468.

92. S. Feng, N. Zhang, H. Liu, X. Du, Y. Liu, H. Lin, The effect of COD/N ratio on process performance and membrane fouling in a submerged bioreactor, Desalination, 2012, 285, 232 – 238.

93. L. Hao, S. N. Liss, B. Q. Liao, Influence of COD:N ratio on sludge properties and their role in membrane fouling of a submerged membrane bioreactor, Water Res., 2016, 89, 132 – 141.

94. C. Visvanathan, R. B. Aim, K. Parameshwaran, Membrane separation bioreactors for wastewater treatment, Critical Reviews in Environmental Science and Technology, 2000, 30 (1), 1 – 48.

95. T. Melin, B. Jefferson, D. Bixio, C. Thoeye, W. De Wilde, J. De Koning, J. van der Graaf, T. Wintgens, Membrane bioreactor technology for wastewater treatment and reuse, Desalination, 2006, 187 (1–3), 271 – 82.

96. L. Sun, Y. Tian, J. Zhang, H. Li, C. Tang, J. Li, Wastewater treatment and membrane fouling with algal-activated sludge culture in a novel membrane bioreactor: Influence of inoculation ratios, Chemical Engineering Journal, 2018, 343: 455 – 459.

97. D. Xianjun, S. Yaoke, J. Veeriah, A Review on the Mechanism, Impacts and Control Methods of Membrane Fouling in MBR System, Membranes, 2020, 10, 1 – 39.

98. W. J. Gao, H. J. Lin, Influence of elevated pH shocks on the performance of a submerged anaerobic membrane bioreactor, Process Biochem, 2010, 45, 1279–1287.

99. L. Wang, H. B. Liu, Recovery of organic matters in wastewater by self-forming dynamic membrane bioreactor: Performance and membrane fouling, Chemosphere, 2018, 203, 123 – 131.

100. J. Radjenovic et al, Analysis of pharmaceuticals in wastewater and removal using a membrane bioreactor, Anal Bioanal Chem, 2006, 387, 1365 – 1377.

101. Y. Xu et al., Occurrence and removal of organic micropollutants in the treatment of landfill leachate by combined anaerobic-membrane bioreactor technology, Journal of Environmental Sciences, 2008, 20(11), 1281 – 1287.

102. S. Xia et al., Bioreduction of para-chloronitrobenzene in drinking water using a continuous stirred hydrogen-based hollow fiber membrane biofilm reactor, Journal of Hazardous Materials, 2011, 192(2), 593 – 598.

103. N. Liberman, Use of MBR to sustain active biomass for treatment of low organic load grey water, Clean Technologies and Environmental Policy, 2016,18, 1219 – 1224.

104. A. J. Ghoshdastidar, Z. T. Anthony, Treatment of 2,4D, mecoprop, and dicamba using membrane bioreactor technology, Environ Sci Pollut Res Int., 2013, 5188 – 5197.

105. H. S. Erkan, G. Gunalp, G. O. Engin, Application of submerged membrane bioreactor technology for the treatment of high strength dairy wastewater, Brazilian Journal of Chemical Engineering, 2018, 91 – 100.

106. H. S. Erkan, B. Takatas, G. O. Engin, Performance evaluation of conventional membrane bioreactor and moving bed membrane bioreactor for synthetic textile wastewater treatment, Journal of Water Process Engineering, 2020, 38, 1 – 8.

107. Viện khoa học và công nghệ môi trường – Đại học Bách Khoa Hà Nội, Hồ sơ đăng ký: Nghiên cứu thiết kế, chế tạo hệ thống xử lý nước thải quy mô nhỏ bằng công nghệ MBR, Hà Nội, 2010.

108. Đỗ Khắn Uẩn, Đánh giá ảnh hưởng của các thông số động học và điều kiện vận hành đến sản lượng bùn dư trong hệ thống xử lí nước thải đô thị bằng phương pháp sinh học kết hợp lọc màng, Tạp trí khoa học và công nghệ, Đại học Đà Nẵng, 2010.

109. Trần Thị Việt Nga, Báo cáo đề tài NCKH cấp Bộ Giáo dục đào tạo,Nghiên cứu phát triển công nghệ màng lọc sinh học trong điều kiện kỵ khí (Anaerobic Membrane Bio-Reactor) để xử lý nước thải sinh hoạt trong điều kiện Việt nam, Trường Đại học Xây dựng, 2013.

110. Đỗ Khắc Uẩn, Chu Xuân Quang, Trần Hùng Thuận, Đánh gia tiềm năng ứng dụng công nghệ MBR cho xử lý nước thải nhiễm dầu ở Việt Nam, Tạp chí Khoa học và Công nghệ Việt Nam, 2015, 2(7), 52 – 58.

111. Nguyễn Minh Kỳ, Trần Thị Tuyết Nhi và Nguyễn Hoàng Lâm, Nghiên cứu xử lý nước thải dân cư bằng công nghệ màng lọc sinh học MBR (Membrane bioreactor), Tạp chí Khoa học Trường Đại học Cần Thơ, 2017, 52, 72 – 79.

112. J. A. Sánchez Peréz et al., Fate of thiabendazole through the treatment of a simulated agro-food industrial effluent by combined MBR/Fenton processes at μg/L scale, Water Research, 2013, 55 – 63.

113. I. Vergili, S. Gencdal, Applicability of combined Fenton oxidation and nanofiltration to pharmaceutical wastewater, Desalination and Water Treatment. 2015, 56, 3501 – 3509.

114. K. Li1,Y. Cheng, J.Wang, Effects of returning NF concentrate on the MBR-NF processtreating antibiotic production wastewater, Environmental Science and Pollution Research, 2016, 23(13), 13114 – 13127.

115. Y. Arafath, S. Gopinath, D. Nilavunesan, Removal of phenol in coir retting wastewater by membrane bioreactor combined with photo-fenton process using RSM, Mater. Res. Express, 2019, 6, 115506 – 115513.

116. J. Wei, Y. Song, Combination of Fenton oxidation and sequencing batch membrane bioreactor for treatment of dry-spun acrylic fiber wastewater, Environmental Earth Sciences, 2015, 73, 4911– 4921.

117. F. Feng, Z. Xu, X. Li, W. You, Y. Zhen, Advanced treatment of dyeing wastewater towards reuse by the combined Fenton oxidation and membrane bioreactor process, Journal of Environmental Sciences, 2010, 22(11), 1657 – 1665.

118. Q. Zhang, C. J. Yu, Using the combined Fenton-MBR process to treat cutting fluid wastewater, Pol.J. Environ.Stud., 2017, 1375 – 1383.

119. P. T. Minimol, P. A. Soloman, Integrated Electro Fenton and Membrane Bioreactor System for Matured Landfill Leachate Treatment, J. Hazard. Toxic Radioact. Waste, 2021, 25(1), 1 – 7.

120. C. T. Wang, J. L. Hu, W. L. Chou, Y. M. Kuo, Removal of color from real dyeing wastewater by Electro-Fenton technology using a three-dimensional graphite cathode, J.Hazard Mater., 2008, 152, 601 – 606.

121. M. Zhou, Q. Yu, L. Lei, G. Barton, Electro Fenton method for the removal of methyl red in an efficient electrochemical system, Sep. Purif. Technol., 2007, 57, 380 – 387.

122. E. Rosales, M. Pazos, M. A. Longo, M. A. Sanromán, Electro-Fenton decoloration of dyes in a continuous reactor: a promising technology in colored wastewater treatment, Chem. Eng. J., 2009, 155, 62 – 67.

123. F. Zhang, G. M. Li, X. H. Zhao, H. K. Hu, J. W. Huang, Study status and progress in wastewater treatment by electro - Fentonmethod, Ind. Water Treat., 2004, 24, 9 – 13.

124. T.S.N. Sankara Narayanan, G. Magesh, N. Rajendran, Degradation of O- chlorophenol from aqueous solution by electro-Fenton process, Fresenius Environ. Bull., 2003, 12 (7), 776 – 780.

125. A. Ozcan, Y. Sahin, A.S. Koparal, Degradation of picloram by the electro - Fenton process. J Hazard Mater., 2008, 153, 718 – 727.

126. K. Ayoub, S. Nelieu, E.D. Hullebusch, J. Labanowski, I. Schmitz Afonso, A. Bermond, M. Cassir, Electro-Fenton removal of TNT: evidences of the electrochemical reduction contribution, Appl. Catal., 2011, 104, 169 – 176.

127. H. Zhang, D. Zhang, J. Zhou, Removal of COD from landll leachate by electro Fenton method, J. Hazard. Mater, 2006, 135, 106 – 111.

128. G. Kaichouh, N. Oturan, M.A. Oturan, A.E. Hourch, K.E. Kacemi, Mineralization of herbicides imazapyr and imazaquin in aqueous medium by Fenton, photoFenton and electro-Fenton processes, Environ. Technol., 2008, 29, 489 – 496.

129. H. Lan, Removal of glyphosate from water by electrochemically assisted MnO2 oxidation process, Sep. Purif. Technol, 2013, 30 – 34.

130. G. Tchobanoglous, F. L. Burton, H. D. Stensel, Wastewater engineering: treatment Disposal and reuse. 4th ed, New York, NY: McGraw Hill Higher Education, 2003.

131. L. Rieger, I. Takács, H. Siegrist, Improving Nutrient Removal While Reducing Energy Use at Three Swiss WWTPs Using Advanced Control, Water Environment Research, 2012, 84(2), 170 – 188.

132. C. Ratanatamskul, N. Masomboon, M. Lu, Application of fenton processes for degradation of aniline, Pestic. Mod. World – Pestic. Manag, 2011, 464 – 474.

133. A. Dirany, I. Sires, N. Oturan, Electrochemical abatement of the antibiotic sulfamethoxazole from water, Chemosphere, 2010, 81, 594 – 602.

134. W. P. Ting, M. C. Lu, Y. H. Huang, Kinetics of 2,6 - dimethylaniline degradation by electro-Fenton process, J. Hazard. Mater, 2009, 161, 1484 – 1490.

135. M. A. Oturan, M. C. Edelahi, N. Oturan, Kinetics of oxidative degradation/ mineralization pathways of the phenylurea herbicides diuron, monuron and fenuron in water during application of the electro-Fenton process. Appl Catal B, 2010, 97, 82 – 89.

136. M. Skoumal, R. Rodriguez, P. Cabot, F. Centellas, J. Garrido, C. Arias, E. Brillas, Electro-Fenton, UVA photoelectro-Fenton and solar photoelectro-Fenton degradation of the drug ibuprofen in acid aqueous medium using platinum and boron-doped diamond anodes, Electrochim. Acta, 2009, 54, 2077 – 2085.

137. N. Borras, C. Arias, R. Oliver, E. Brillas, Mineralization of desmetryne by electro chemical advanced oxidation processes using a boron-doped diamond anode and an oxygen-diffusion cathode, Chemosphere, 2011, 85, 1167 – 1175.

138. Y. U. Shin, H. Y. Yoo, S. Kim, K. M. Chung, Y. G. Park, K. H. Hwang, J. Lee, Sequential combination of electro-Fenton and electrochemical chlorination processes for treatment of anaerobically-digested food wastewater, Environ. Sci. Technol., 2017, 51(18), 10700 – 10710.

139. S. Verma, V. Khandegar, A. Saroha, Removal of chromium from electroplating industry effluent using electrocoagulation, J. Hazard., Toxic, Radioactive Waste, 2013, 17, 146 – 152.

140. H. Zhang, H. J. Choi, C. P. Huang, Treatment of landfill leachate by Fenton’s reagent in a continuous stirred tank reactor, J. Hazard. Mater., 2006, 136, 618 – 623.

141. D. Gosh, H. Solanki, M.K. Purkait. Removal of Fe(II) from tap water by electrocoagulation technique. Journal Hazard. Mater., 2008, 155, 135 – 143.

142. M. Y. Mollah, R. Schennach, J. R. Parga, D. L. Cocke, Electrocoagulation (EC) science and applications, J. Hazard Mater., 2001, 84, 29 – 41.

143. V. Kavitha, K. Palanivelu, Destruction of cresols by Fenton oxidation process. Water Res., 2005, 39, 3062 – 3072.

144. Y. Liu, J. Xie, C. N. Ong, C. Vecitis, Z. Zhou, Electrochemical wastewater treat ment with carbon nanotube filters coupled with in situ generated H2O2, Environ. Sci.WaterRes. Technol., 2015, 1, 769 – 778.

145. H. Lei, H. Li, Z. Li, Li, K. Chen, X. Zhang, H. Wang, Electro Fenton degradation of cationic red X-GRL using an activated carbon fiber cathode, Process Safety and Environmental Protection, 2010, 88(6), 431 – 438.

146. A. El Ghenymy, R. M. Rodriguez, C. Arias, F. Centellas, J.A. Garrido, P. L. Cabot, E. Brillas, Electro Fenton and photoelectro Fenton degradation of the antimicrobial sulfamethazine using a boron doped diamond anode and an air diffusion cathode, Journal of Electroanalytical Chemistry, 2013, 701, 7 – 13.

147. M. Pérez, Fenton and photo-Fenton oxidation of textile effluents, Water Research, 2002, 36(11), 2703 – 2710.

148. E. Brillas, J. Casado, Aniline degradation by Electro-Fenton® and peroxi- coagulation processes using a flow reactor for wastewater treatment., Chemosphere, 2002, 47(3), 241 – 248.

149. M. Panizza, G. Cerisola, Electro – Fenton degradation of synthetic dyes, Water Research, 2009, 43, 339 – 344.

150. F. Ruiz, P. Martinez, E. Castro, R. Humana, H. Peretti, A. Visintin, Effect of electrolyte concentration on the electrochemical properties of an AB5 type alloy for Ni/MH batteries, Int. J. Hydrogen Energy, 2013, 38, 240 – 245.

151. A. El Ghenymy, R. M. Rodríguez, E. Brillas, N. Oturan, M. A. Oturan, Electro – Fenton degradation of the antibiotic sulfanilamide with Pt/carbon – felt and BDD/carbon – felt cells. Kinetics, reaction intermediates, and toxicity assessment, Environmental Science and Pollution Research, 2014, 21(14), 8368 – 8378.

152. E. Rosales, M. Pazos, M. A. Longo, M. A. Sanroman, Influence of operational parameters on electro – Fenton degradation of organic pollutants from soil, J. Environ. Sci. Health A Tox Hazard Subst. Environ. Eng, 2009, 44, 1104 – 1110.

153. J. R. Jasmann, T. Borch, T. C. Sale, J. Blotevogel, Advanced electrochemical oxidation of 1,4-dioxane via dark catalysis by novel titanium dioxide (TiO2) pellets, Environ. Sci. Technol., 2016, 50(16), 8817 – 8826.

154. Y. Yang, Q. Deng,W. Yan, C. Jing, Y. Zhang, Comparative study of glyphosate removal on goethite and magnetite: Adsorption and photo-degradation, Chemical Engineering Journal, 2018, 352 (15), 581 – 589.

155. B. Balci, M. A. Oturan, N. Oturan, I. Sirés, Decontamination of Aqueous Glyphosate, (Aminomethyl)phosphonic Acid, and Glufosinate Solutions by Electro-Fenton-like Process with Mn2+ as the Catalyst, J. Agric. Food Chem., 2009, 57(11), 4888 – 4894.

156. K.A. Barrett, M.B. McBride, Oxidative Degradation of Glyphosate and Aminomethylphosphonate by Manganese Oxide, Environ. Sci. Technol. 2005, 39, 9223 – 9228

157. M. Malakootian, A. Moridi, Efficiency of electro-Fenton process in removing Acid Red 18 dye from aqueous solutions, Process Saf. Environ. Prot., 2017, 111, 138 – 147.

158. H. S. El-Desoky, M. M. Ghoneim, R. El-Sheikh, N. M. Zidan, Oxidation of Levafix CA reactive azo-dyes in industrial wastewater of textile dyeing by electro- generated Fenton’s reagent, Journal of Hazardous Materials 2010, 175, 858 – 865.

159. A. Baiju, R. Gandhimathi, S. T. Ramesh, P. V. Nidheesh, Combined heterogeneous Electro-Fenton and biological process for the treatment of stabilized landfill leachate, Journal of Environmental Management, 2018, 210, 328 – 337.

160. S. H. Lin, C. C. Chang, Treatment of landfill leachate by combined electro- Fenton oxidation and sequencing batch reactor method. Water Res., 2000, 34, 4243 – 4249.

161. I. W. C. Lau, P. Wang, S. S. T. Chiu, H. H. P.Fang, Photoassisted Fenton oxidation of refractory organics in UASB-pretreated leachate, J. Environ. Sci., 2002, 14, 388 – 392.

162. L. Huang, L. Li, W. Dong, Y. Liu, H. Hou, Removal of ammonia by OH radical in aqueous phase, Environmental Science & Technology, 2008, 42(21), 8070 – 8075.

163. S. A. Cheng, Optimizing electron spin resonance detection of hydroxyl radical in water, Chemosphere., 2003, 52, 1797 – 1805.

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