首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Treatment of hypersaline produced water employing a moderately halophilic bacterial consortium in a membrane bioreactor: Effect of salt concentration on organic removal performance, mixed liquor characteristics and membrane fouling
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Treatment of hypersaline produced water employing a moderately halophilic bacterial consortium in a membrane bioreactor: Effect of salt concentration on organic removal performance, mixed liquor characteristics and membrane fouling

机译:在膜生物反应器中使用中等嗜盐细菌财团处理高盐废水:盐浓度对有机去除性能,混合液特性和膜污染的影响

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In this study the organic pollutant removal performance and the mixed liquor characteristics of a membrane bioreactor (MBR), employing a moderately halophilic bacterial consortium, for the treatment of hypersaline synthetic produced water containing 100–250 g L~(-1) NaCl were considered. The COD and oil and grease (O&G) removal efficiencies in the range 81.6–94.6% and 84.8–94.0% respectively and MBR effluent turbidity lower than 2 NTU were achieved. There was no pronounced membrane fouling at any salt concentration. O&G accumulation (less than 11% of the influent O&G) occurred in the mixed liquor at all salt concentrations, but biodegradation was identified as the major organic removal mechanism. With increasing salt concentration, initially increase in SVI and later formation of oil/biomass bodies took place but due to the presence of the membrane biomass washout did not occur. The mixed liquor was pseudoplastic and the apparent viscosity and flow behavior index generally increased with salt concentration.
机译:在这项研究中,考虑了采用中等嗜盐细菌联盟的膜生物反应器(MBR)的有机污染物去除性能和混合液特性,用于处理含100–250 g L〜(-1)NaCl的高盐合成水。 。 COD和油脂去除效率分别为81.6–94.6%和84.8–94.0%,MBR出水浊度低于2 NTU。在任何盐浓度下均没有明显的膜污染。在所有盐浓度下,混合液中都发生了O&G积累(不到进水O&G的11%),但是生物降解被确定为主要的有机去除机理。随着盐浓度的增加,开始时SVI有所增加,后来形成了油/生物质体,但由于膜生物质的冲刷并未发生。混合液是假塑性的,表观粘度和流动行为指数通常随盐浓度而增加。

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