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首页> 外文期刊>Der Pharma Chemica: journal for medicinal chemistry, pharmaceutical chemistry and computational chemistry >Optimization of coagulation-flocculation process for particle removal from dye using natural polymers: Response surface methodological approach.
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Optimization of coagulation-flocculation process for particle removal from dye using natural polymers: Response surface methodological approach.

机译:使用天然聚合物从染料中去除颗粒的混凝-絮凝工艺的优化:响应面方法学方法。

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Performance of natural polymer coagulants were studied for total dissolved solids removal from acid red dye. Response surface methodology (RSM) using face-centred central composite design (FCCD) optimized four variables of the coagulation-flocculation process including pH, coagulant dosage, dye concentration and time. Acidic solution pH increased the Total dissolved solid (TDS) removal efficiency. Accurate control of coagulant dosages gave optimum destabilization of charged particles and re-stabilization occurred at above 800mg/L dosages. Polymer performances were measured through time-dependent decrease in particle concentrations following aggregates growth. Charge neutralization, sweep flocculation and polymer adsorption were the active mechnisms in the coagulation-flocculation process. The verification experiments agreed with the predicted values with less than 4% standard error values. Overlay contour plot established an optimum condition for the multiple responses studied. The response surface methodological approach was appropriate for optimizing the coagulation-flocculation process while minimizing the number of experiments. Coagulants studied were highly effective in the TDS removal process.
机译:研究了天然聚合物混凝剂从酸性红色染料中去除总溶解固体的性能。使用面心中央复合设计(FCCD)的响应表面方法(RSM)优化了混凝过程的四个变量,包括pH,混凝剂用量,染料浓度和时间。酸性溶液的pH值增加了总溶解固体(TDS)的去除效率。精确控制凝结剂的剂量可以使带电粒子达到最佳的去稳定作用,并且在超过800mg / L的剂量时会发生重新稳定。通过聚集体生长后颗粒浓度随时间的降低来测量聚合物性能。电荷中和,吹扫絮凝和聚合物吸附是絮凝-絮凝过程中的活性机械。验证实验与具有小于4%标准误差值的预测值相符。叠加等高线图为研究的多个响应确定了最佳条件。响应面方法学方法适用于优化凝结-絮凝过程,同时减少实验次数。研究的混凝剂在TDS去除过程中非常有效。

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