首页> 外文期刊>Journal of Environmental Science and Health. A, Toxic/Hazardous Substances & Environmental Engineering >The Effects of Diquat Dibromide on Biological Wastewater Treatment Plants
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The Effects of Diquat Dibromide on Biological Wastewater Treatment Plants

机译:二溴敌草快对生物废水处理厂的影响

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The objective of the study was to investigate the fate and effects of diquat dibro-mide which is the active ingredient in formulations used to control the growth of roots into sewers when applied as Razorooter and mixed with raw sewage, settled sewage, and activated sludge, and when introduced into activated sludge wastewater treatment systems. Both fully aerobic and biological nutrient removal (BNR) activated sludge systems were used for experimental purpose, and both continuous flow and batch reactors were used. The sorption of diquat by both raw sewage particles and activated sludge suspended solids was determined. Diquat dibromide concentrations ranged from 0.93 to 12.6 mg/L in the influent flow. Both the fully aerobic and two full biological nutrient removal systems were fed municipal sewage spiked with diquat dibromide, and operated at a mixed liquor temperature of 10℃ and an MCRT of 10 days. One of the BNR systems was a control system. The results showed that only about 20% of the diquat in raw sewage flow was removed by adsorptions to the sewage solids, but 80% or more of the diquat was removed in activated sludge systems. When the influent diquat dibromide concentration was approximately 1 mg/L, over 99% of the diquat dibromide was removed by the activated sludge process. Some of the removal was believed to be by biodegradation. The diquat dibromide used in this study had no observable detrimental effects on any of the biological processes of the continuous flow fully aerobic and BNR activated systems.
机译:这项研究的目的是研究敌草快二溴甲烷的命运和影响,敌草快是用于控制根部生长到下水道中的根的配方中的活性成分,该制剂用作生根粉并与原污水,沉降污水和活性污泥混合使用时,以及当引入活性污泥废水处理系统时。完全需氧和生物营养去除(BNR)活性污泥系统均用于实验目的,并使用连续流和间歇式反应器。测定了污水中的未处理颗粒和活性污泥悬浮固体对敌草快的吸附。进水中敌草快的二溴季铵盐浓度范围为0.93至12.6 mg / L。完全有氧和两个完全生物营养去除系统都喂入了加有二溴季铵盐的市政污水,并在10℃的混合液温度和10天的MCRT下运行。 BNR系统之一是控制系统。结果表明,原污水流中的敌草快中只有约20%通过吸附到污水中的固体而被除去,而活性污泥系统中除去了80%或更多的敌草快。当流入的敌草快二溴化物浓度约为1 mg / L时,通过活性污泥法去除了99%以上的敌草快二溴化物。据信某些去除是通过生物降解。本研究中使用的敌草快二溴化物对连续流完全需氧和BNR活化系统的任何生物过程均没有可观察到的有害影响。

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