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Optimum Operating Conditions Confirmation and Effectiveness Analysis Based on Research of the Coagulation and Precipitation Integrated Process

机译:基于凝固和降水综合过程研究的最佳运行条件确认与有效性分析

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Aiming at the increasing small-scale water supply projects, the increasingly serious pollution of the water resource and stringent water quality standards, the coagulation and precipitation integrated process on the basis of quiescent precipitation was proposed in this study. By experiments in the integrated reactor, the optimum process operating conditions were confirmed. It is verified that the optimal dosage of PAC was 16mg/L in the optimum temperature and pH range. The repeated utilization volume of the floe mud from the former precipitation period was the same as 6% of the water volume in the next processing period, and the corresponding optimal dosage of PAC was 8mg/L with 50% reduction of the flocculants dosage, while the residual turbidity was less than 1.0NTU, which could reach the standard after simple filtration and disinfection procedure. With low energy consumption, little land occupation, low cost, high efficiency of the water production and strong anti shock loading capability, this process could guarantee the safety of drinking water supply, and deserve popularization and application.
机译:针对小规模供水项目的增加,水资源越来越严重的污染以及严重的水质标准,在本研究中提出了基于静态降水的凝固和降水综合过程。通过在集成反应器中进行实验,确认了最佳过程操作条件。验证PAC的最佳剂量在最佳温度和pH范围内为16mg / l。从前沉淀周期的浮子泥的重复利用量与下一个加工期间的水量的6%相同,PAC的相应最佳剂量为8mg / L,絮凝剂剂量减少50%,同时残留浊度小于1.0NTU,可以在简单过滤和消毒程序后达到标准。能耗低,土地占用小,成本低,水生产效率高,抗冲击加载能力强,这一过程可以保证饮用水供应的安全性,并应得的普及和应用。

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