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Chemically Modified Sawdust as Renewable Adsorbent for Arsenic Removal from Water

机译:化学改性的木屑作为可再生吸附剂,用于去除水中的砷

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Environmentally friendly and cost-effective adsorbent materials for arsenic extraction are needed for removing pollutants from groundwater. Here, lanthanum or zirconium oxide nanoparticle-incorporated sawdust was used for the removal of arsenic anions from water. The chemically modified sawdust was fully characterized and used for extraction of arsenic from water. The influences of ionic strength, pH, and interfering ionic pollutants toward the extraction efficiency of arsenic anions were investigated to understand the mechanism. ZrO2-sawdust showed extraction capacities of 29 and 12 mg/g for arsenite and arsenate anions, respectively, while La2O3- sawdust extracted arsenite (22 mg/g) and arsenate (28 mg/g) anions efficiently. Desorption studies were performed on surface-modified sawdust to check the recyclability. La2O3-sawdust can be fully regenerated with no change in arsenic removal efficiency, while ZrO2-sawdust retains ~50% of its adsorption efficiency. Such modified renewable bioadsorbents are useful for developing environmentally friendly materials for water purification.
机译:为了从地下水中去除污染物,需要用于砷萃取的环保且具有成本效益的吸附材料。在此,使用掺有镧或氧化锆纳米粒子的木屑从水中去除砷阴离子。经过化学修饰的锯末已得到充分表征,可用于从水中提取砷。研究了离子强度,pH和干扰性离子污染物对砷阴离子提取效率的影响,以了解其机理。 ZrO2-木屑对砷和砷酸根离子的萃取能力分别为29和12 mg / g,而La2O3-木屑可有效萃取亚砷酸(22 mg / g)和砷酸根(28 mg / g)阴离子。对表面改性的木屑进行了脱附研究,以检查其可回收性。 La 2 O 3-木屑可以完全再生,而除砷效率没有变化,而ZrO 2-木屑保留了约50%的吸附效率。这种改性的可再生生物吸附剂可用于开发用于水净化的环保材料。

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