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Remediation of pyrene-contaminated soil by synthesized nanoscale zero-valent iron particles

机译:合成的纳米零价铁颗粒修复pyr污染的土壤

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Laboratory experiments were conducted to assess pyrene removal from soil using synthesized nanoscale zero-valent iron (nZVI) particles. Batch experiments indicated that nZVI particles were more efficient in removing pyrene than commercially available microscale ZVI (mZVI, < 10 μm) particles. Reaction kinetics of pyrene removal were dominated by the iron dosage and approximated by a pseudo-first-order model. The reaction rate constants (k) were 0.135 ± 0.030 and 0.103 ± 0.023 min~(-1) when 0.01 g nZVI and mZVI particles were amended to batch vessels containing one gram of pyrene-spiked soil (100 mg pyrene per kg dried soil), respectively. The pH and oxidation-reduction potential (ORP) did not change significantly in experiments with mZVI particles. In experiments with nZVI particles, however, pH slowly increased from 4.8 to 8.5 due to hydroxide production, and ORP rapidly decreased from +400 to -550 mV. ORP continued to decline to -700 mV when additional nZVI particles were added. The results from this study indicate that nZVI particle addition produced strongly reducing conditions and suggest that remediation of pyrene-contaminated soils using nZVI particles is a promising technology.
机译:进行了实验室实验,以评估使用合成的纳米级零价铁(nZVI)颗粒从土壤中去除pyr的能力。批处理实验表明,nZVI颗粒比商业上可获得的微型ZVI(mZVI,<10μm)颗粒在去除in方面更有效。 the去除的反应动力学主要受铁剂量的影响,并由拟一阶模型近似。当将0.01 g nZVI和mZVI颗粒修正到装有1克掺pi土壤的批处理容器(每公斤干燥土壤100 mg pyr)时,反应速率常数(k)为0.135±0.030和0.103±0.023 min〜(-1) , 分别。在使用mZVI颗粒进行的实验中,pH和氧化还原电位(ORP)没有明显变化。但是,在使用nZVI颗粒的实验中,由于氢氧化物的产生,pH值从4.8缓慢增加到8.5,ORP从+400迅速降低到-550 mV。添加其他nZVI颗粒时,ORP继续下降至-700 mV。这项研究的结果表明,添加nZVI颗粒会产生强烈的还原条件,并表明使用nZVI颗粒修复of污染的土壤是一种很有前途的技术。

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