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Coagulation-flocculation pretreatment of high-load chemical-pharmaceutical industry wastewater: Mixing aspects

机译:高负荷化学制药工业废水的混凝-絮凝预处理:混合方面

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The selection of a coagulant-flocculant agent which, based on the maximum chemical oxygen demand removal, warrants the best performance of the removal system for a very complex high-load chemical-pharmaceutical industry wastewater, is described. A total of 23 coagulants/flocculants was tested, including salts, poly-hidroxyaluminates, synthetic polymers as well as natural gums. In a second stage, some mixing aspects were studied. The effects of the specific impeller, the agitation speed during the coagulation and flocculation stages, and the absence or presence of baffles were evaluated in a six-Place agitation system. The conventional impellers were replaced by the following types of propellers: Rushton, marine, A310 (Lighting), three flat blades, 45 degrees inclined six blades, and conventional flat blade propeller. It was demonstrated that the appropriate coagulation-flocculation system is capable of diminishing the GOD, the apparent color and the dissolved solids up to 40.6, 25.6 and 39.4%, respectively. The best results were observed when using BL-5086, guar gum, Niad II-3, Niad II-4 and locus beam gum. The impeller performance was highly dependent on the agitation speed for each fixed system. With respect to the mixing aspects, it was shown that the selection of the right propeller for the coagulation and flocculation stages is crucial in determining the quality of the treated water, as well as the quantity and quality of the residual sludges generated in the process.
机译:描述了基于最大化学需氧量去除,保证对于非常复杂的高负荷化学制药工业废水的去除系统具有最佳性能的凝结剂-絮凝剂。总共测试了23种凝结剂/絮凝剂,包括盐,聚四氢铝酸盐,合成聚合物以及天然树胶。在第二阶段,研究了一些混合方面。在六位搅拌系统中评估了特定叶轮的影响,在凝结和絮凝阶段的搅拌速度以及是否存在挡板。常规叶轮被以下类型的螺旋桨代替:Rushton,船用,A310(照明),三个扁平叶片,45度倾斜的六个叶片和常规扁平叶片螺旋桨。结果表明,适当的混凝-絮凝系统能够将GOD,表观颜色和溶解的固体分别减少至40.6%,25.6%和39.4%。当使用BL-5086,瓜尔胶,Niad II-3,Niad II-4和轨迹束胶时,观察到最佳结果。叶轮性能在很大程度上取决于每个固定系统的搅拌速度。关于混合方面,已表明在凝结和絮凝阶段选择正确的螺旋桨对于确定处理水的质量以及过程中产生的残留污泥的数量和质量至关重要。

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