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Removal of chemical oxygen demand from textile wastewater using a natural coagulant

机译:使用天然混凝剂去除纺织废水中的化学需氧量

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摘要

A biomaterial was successfully synthesized from Plantago ovata by using an FeCl_3-induced crude extract (FCE). The potential of FCE to act as a natural coagulant was tested for the pretreatment of real textile wastewater. Tests were performed to evaluate the effects of FCE quantity, salt concentration, and wastewater pH on chemical oxygen demand (COD) reduction during a coagulation/flocculation process. Experimental results indicated that the wastewater could be effectively treated by using a coagulation/flocculation process, where the BOD_5/COD ratio of the effluent was improved to 0.48. A low coagulant dose, 1.5 mg/L, achieved a high COD removal percentage, 89%, at operational conditions of neutral pH and room temperature. The experimental data revealed that the maximum COD removal occurred at water pH<8. Increasing the salt promoted the COD removal. The settling and filterability characteristics of the sludge were also studied. Scanning electron microscopy and energy dispersive spectroscopy studies were conducted to determine the sludge structure and composition, respectively. Overall, FCE as an eco-friendly biomaterial was revealed to be a very efficient coagulant and a promising option for the removal of COD from wastewaters.
机译:利用FeCl_3诱导的粗提物(FCE)成功地从车前子中合成了一种生物材料。测试了FCE作为天然混凝剂的潜力,可用于预处理真正的纺织品废水。进行了测试以评估FCE量,盐浓度和废水pH对混凝/絮凝过程中化学需氧量(COD)降低的影响。实验结果表明,采用混凝/絮凝工艺可以有效地处理废水,废水的BOD_5 / COD比提高到0.48。在中性pH和室温的操作条件下,低凝结剂剂量1.5 mg / L可实现高的COD去除率89%。实验数据表明,最大的COD去除发生在pH值小于8的水中。增加盐促进了COD的去除。还研究了污泥的沉降和过滤性能。进行了扫描电子显微镜和能量分散光谱研究,分别确定了污泥的结构和组成。总体而言,FCE作为一种生态友好型生物材料被证明是一种非常有效的混凝剂,也是从废水中去除COD的有前途的选择。

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