首页> 外文期刊>International Journal of Environmental Research and Public Health >Removal of Arsenic (V) from Aqueous Solutions Using Chitosan–Red Scoria and Chitosan–Pumice Blends
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Removal of Arsenic (V) from Aqueous Solutions Using Chitosan–Red Scoria and Chitosan–Pumice Blends

机译:使用壳聚糖-红天Red和壳聚糖-浮石混合物去除水溶液中的砷(V)

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In different regions across the globe, elevated arsenic contents in the groundwater constitute a major health problem. In this work, a biopolymer chitosan has been blended with volcanic rocks (red scoria and pumice) for arsenic (V) removal. The effect of three blending ratios of chitosan and volcanic rocks (1:2, 1:5 and 1:10) on arsenic removal has been studied. The optimal blending ratio was 1:5 (chitosan: volcanic rocks) with maximum adsorption capacity of 0.72 mg/g and 0.71 mg/g for chitosan: red scoria (Ch–Rs) and chitosan: pumice (Ch–Pu), respectively. The experimental adsorption data fitted well a Langmuir isotherm ( R 2 > 0.99) and followed pseudo-second-order kinetics. The high stability of the materials and their high arsenic (V) removal efficiency (~93%) in a wide pH range (4 to 10) are useful for real field applications. Moreover, the blends could be regenerated using 0.05 M NaOH and used for several cycles without losing their original arsenic removal efficiency. The results of the study demonstrate that chitosan-volcanic rock blends should be further explored as a potential sustainable solution for removal of arsenic (V) from water.
机译:在全球不同地区,地下水中砷的含量升高是一个主要的健康问题。在这项工作中,将生物聚合物壳聚糖与火山岩(红色氧化铈和浮石)混合在一起,以去除砷(V)。研究了壳聚糖和火山岩的三种混合比(1:2、1:5和1:10)对除砷的影响。最佳混合比例为1:5(壳聚糖:火山岩),最大吸附量分别为:壳聚糖:红氧化渣(Ch-Rs)和壳聚糖:浮石(Ch-Pu)分别为0.72 mg / g和0.71 mg / g。实验吸附数据很好地拟合了朗缪尔等温线(R 2> 0.99),并遵循了伪二级动力学。该材料的高稳定性及其在宽pH范围(4至10)中的高砷(V)去除效率(〜93%)对于实际应用很有用。此外,可以使用0.05 M NaOH再生混合物,并使用多个循环,而不会失去其最初的除砷效率。研究结果表明,应进一步探索壳聚糖-火山岩混合物作为从水中去除砷(V)的潜在可持续解决方案。

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