首页> 外文会议>Annual conference exposition of Water Environment Federation >THE FATE AND EFFECTS OF DIQUAT DIBROMIDE IN BIOLOGICAL WASTEWATER TREATMENT PLANTS AFTER ITS UTILIZATION AS A ROOT KILLING AGENT IN SEWERS
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THE FATE AND EFFECTS OF DIQUAT DIBROMIDE IN BIOLOGICAL WASTEWATER TREATMENT PLANTS AFTER ITS UTILIZATION AS A ROOT KILLING AGENT IN SEWERS

机译:中氨酸二溴化物在生物废水处理植物中的利用和效应在下水道中作为根杀伤剂的利用

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The fate and effects of diquat dibromide in the influent wastewater to activated sludge wastewater treatment systems was investigated and evaluated. Diquat dibromide is the active ingredient in formulations used to control the growth of roots into sewers. This practice can result in calculated diquat concentrations ranging from 0.67 mg/L for a flow of 10 mgd up to 6.7 mg/L for a flow of 1 mgd, given that the amount of formulation applied in a workday would be four gallons, which is typical. The sorption of diquat by both raw sewage particles and activated sludge suspended solids was determined. Diquat concentrations that ranged from 0.93 to 12.6 mg/L in the influent flow to two continuous flow pilot plant activated sludge systems were used for investigative purposes. One of the systems was a full biological nutrient removal (BNR), VIP process configuration system, and the other was a conventional fully aerobic system. Both systems were fed municipal sewage spiked with diquat, and operated at a mixed liquor temperature of 10 oC and an MCRT of 10 days. A control BNR system also was maintained. The results show that only about 20% of the diquat in raw sewage flow will be removed by adsorption to the sewage solids, but 80% or more of the diquat will be removed in activated sludge systems. When the influent diquat concentration was approximately 1 mg/L, over 99.3% of the diquat was removed by the activated sludge process. Some of the removal was believed to be by biodegradation. The concentration reduction by activated sludge was 83.3 and 91.7 % for influent diquat concentrations of 10 and 12.6 mg/L, respectively. The diquat used had no observable detrimental effects on any of the biological processes of the continuous flow fully aerobic and VIP BNR activated sludge systems. However, an influent diquat concentration of 12.6 mg/L to the fully aerobic system clearly increased the oxygen uptake rate by as much as 19%, and the total oxygen consumed over a four hour period by 9.3%. This increase was much more than could be explained by the additional COD of the added diquat, and it is clear that the presence of diquat stimulates the OUR of activated sludge. It presence also increased denitrification during the experiments, probably because the increased OUR reduced the DO concentrations in the flocs. A 10 mg/L diquat concentration slightly reduced the nitrifier growth rate in a batch test determination when compared to a control, but the rate measured, 0.764 d-1, is an excellent rate and is higher than the 0.65 d-1 value that is typically used for design. The observed effluent diquat concentrations from the continuous flow pilot plant systems either had no or very mild toxicity for Ceriodaphnia dubia (water fleas) during acute toxicity
机译:研究了DIQUAT二溴化物在流入废水中对活性污泥废水处理系统的命运和影响。 Diquat二溴化物是用于将根生长到下水道中的配方中的活性成分。这种做法可以导致从0.67mg / L的流量为10 mgd的流动,对于1 mgd的流动,鉴于工作日中的制剂量为4加仑,这一方法可以导致0.67mg / l的流动浓度为0.67mg / l。典型的。通过原始污水颗粒和活性污泥悬浮固体的Diquat的吸附。在进水流动流入到两个连续流动先导植物活性污泥系统的流入流动中的浓度为0.93-12.6 mg / L用于调查目的。其中一个系统是全生物营养去除(BNR),VIP工艺配置系统,另一个是传统的完全有氧系统。两种系统都是喂食市政污水,尖刺,并在10℃的混合液温度和10天的MCRT中操作。控制BNR系统也被维持。结果表明,只有约20%的原始污水流动的Diquat将通过吸附对污水固体除去,但在活性污泥系统中将除去80%或更多的Diquat。当流动性浸泡浓度约为1mg / L时,通过活化的污泥法除去超过99.3%的Diquat。认为一些去除是通过生物降解的。活化污泥的浓度降低为83.3和91.7%,分别为10和12.6mg / L的流入性浓度。使用的Diquat对连续流动完全有氧和VIP BNR活性污泥系统的任何生物学过程没有可观察的有害影响。然而,到完全好氧系统的12.6mg / L的流动性急性浓度明显提高了氧气摄取率,高达19%,并且在4小时内消耗的总氧气量为9.3%。这种增加远远超过可以通过添加的毒性的额外鳕鱼解释,并且很明显,肠炎的存在刺激了我们的活性污泥。在实验期间,它的存在也增加了反硝化,可能是因为增加了我们在絮凝物中的浓度降低。与对照相比,10mg / L的浓度略微降低了批量试验测定中的硝化效果生长速率,但测量的速率为0.764d-1,是优异的速率,高于0.65d-1值通常用于设计。观察到的来自连续流动植物系统的污水急性浓度为急性毒性期间的Ceriodaphnia Dubia(水跳蚤)没有或非常轻微毒性

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