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Environment-Friendly Approach toward the Treatment of Raw Agricultural Wastewater and River Water via Flocculation Using Chitosan and Bean Straw Flour as Bioflocculants

机译:使用壳聚糖和豆秸秆粉作为生物絮凝剂絮凝处理原料农业废水和河水的环境友好型方法

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Currently, there is a growing concern regarding water remediation from agricultural and domestic wastewaters. Among water treatment methods, flocculation is a widely used approach. In this study, the bioflocculation of wastewaters from Sinaloa (Mexico) was examined using two bioflocculants: chitosan and bean straw flour (BSF). The jar-test results showed that chitosan exhibited high effectiveness in pollutant removal from different sampling zones (agricultural wastewater and river water). Additionally, this bioflocculant reduced remarkably the concentration of Mn and Fe. On the other hand, BSF showed high effectiveness in pollutant removal for a specific type of wastewater, being highly competitive as compared to chitosan. Besides, BSF led to 40% of Mn removal from highly contaminated river water samples. For both biomaterials, bioflocculation was driven by charge neutralization and sweep flocculation mechanisms. For a given agricultural wastewater sample, both bioflocculants performed better than the commercial poly(aluminum chloride) for pH regulation and Fe removal.
机译:目前,有关农业和国内废水的补救措施越来越令人担忧。在水处理方法中,絮凝是一种广泛使用的方法。在这项研究中,使用两种生物絮凝剂检查来自SinaloA(墨西哥)的废水的生物絮凝剂:壳聚糖和豆秸秆面粉(BSF)。罐 - 试验结果表明,壳聚糖在不同采样区(农业废水和河水)上表现出高效能。另外,这种生物絮凝剂显着降低了Mn和Fe的浓度。另一方面,BSF显示出对特定类型废水的污染物去除效果高,与壳聚糖相比具有竞争力。此外,BSF从高度污染的河水样品中导致了40%的MN。对于两种生物材料,通过电荷中和和扫描絮凝机制驱动生物絮凝。对于给定的农业废水样品,两种生物絮凝剂比商业聚(氯化铝)表现优于pH调节和Fe去除。

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