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A cost–effective and eco-friendly treatment technology to remove realistic levels of mercury by means of the unmodified rice husk

机译:一种经济高效且环保的处理技术,可通过未修饰的稻壳去除实际水平的汞

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In the present work the removal of mercury from aqueous solutions media and for realistic concentrations of this metal was evaluated, by using an inexpensive and highly available agricultural waste, rice husk. An economical method was developed based on the use of the natural/unmodified form of rice husk and on the amount of material required, which was minimized to produce the lowest amount of biological slurry. In order to study the kinetics of the process, batch stirred experiments were performed for initial concentrations of Hg2+ of: 50 μg L–1, representing the actual maximum value for Hg discharges from industrial sectors, and 500 μg L–1, to simulate a situation of an accidental spill. The kinetic curves were described by a rapid removal of Hg2+ by rice husk, in the first hours of contact, followed by a slower removal of Hg2+, until it reaches equilibrium. The removal of Hg2+ using a rice husk dose of 0.50 g L–1 was ca. 83% for an initial concentration of 50 μg L–1 and 92% for 500 μg L–1. Furthermore, the results show that is possible the reuse the rice husk in additional cleaning treatments, maintaining the efficiency of the removal process.Key words: Mercury / Rice husk / Remediation / Contaminated waters
机译:在目前的工作中,通过使用廉价且高度可用的农业废料稻壳,评估了从水溶液介质中除去汞以及该金属的实际浓度。基于使用天然/未修饰形式的稻壳和所需的材料量,开发了一种经济的方法,将其最小化以产生最低量的生物浆料。为了研究该过程的动力学,对初始Hg2 +浓度进行了批量搅拌实验:50μgL–1(代表工业部门排放的汞的实际最大值)和500μgL-1,以模拟意外泄漏的情况。动力学曲线通过稻壳在接触的最初几个小时快速去除Hg2 +,然后再缓慢去除Hg2 +直至达到平衡来描述。大约0.50 g L-1的稻壳剂量可去除Hg2 +。初始浓度为50μgL-1时为83%,而500μgL-1时为92%。此外,结果表明,稻壳可以在其他清洁处理中重复使用,从而保持去除过程的效率。关键词:汞/稻壳/修复/受污染的水

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