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Partitionable-space enhanced coagulation (PEC) reactor and its working mechanism: A new prospective chemical technology for phosphorus pollution control

机译:可分空间增强混凝(PEC)反应器及其工作机理:一种有望控制磷污染的新型化学新技术

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摘要

Phosphorus pollution control and phosphorus recycling, simultaneously, are focus of attention in the wastewater treatment. In this work, a novel reactor named partitionable-space enhanced coagulation (PEC) was invented for phosphorus control. The working performance and process mechanism of PEC reactor were investigated. The results showed that the PEC technology was highly efficient and cost-effective. The volumetric removal rate (VRR) reached up to 2.86 ± 0.04 kg P/(m~3 d) with a phosphorus removal rate of over 97%. The precipitant consumption was reduced to 2.60-2.76 kg Fe(Ⅱ)/kg P with low operational cost of $ 0.632-0.673/kg P. The peak phosphorus content in precipitate was up to 30.44% by P_2O_5, which reveal the benefit of the recycling phosphorus resource. The excellent performance of PEC technology was mainly attributed to the partitionable-space and 'floc-culation filter'. The partition limited the trans-regional back-mixing of reagents along the reactor, which promoted the precipitation reaction. The 'flocculation filter' retained the microflocs, enhancing the flocculation process.
机译:同时,磷污染控制和磷再循环是废水处理中的关注焦点。在这项工作中,发明了一种新型的可分离空间增强混凝(PEC)反应器,用于控制磷。研究了PEC反应器的工作性能和工艺机理。结果表明,PEC技术是高效且具有成本效益的。体积去除率(VRR)达到2.86±0.04 kg P /(m〜3 d),除磷率超过97%。 Fe(Ⅱ)/ kg P的沉淀剂消耗降低到2.60-2.76 kg Fe(Ⅱ)/ kg P,运行成本为0.632-0.673 / kgP。P_2O_5使沉淀物中的峰值磷含量高达30.44%,这显示出沉淀剂的好处。回收磷资源。 PEC技术的出色性能主要归因于可分区空间和“絮凝过滤器”。隔板限制了试剂沿反应器的跨区域反混,从而促进了沉淀反应。 “絮凝过滤器”保留了微絮凝物,从而增强了絮凝过程。

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