颗粒纳米零价铁增强对芳烃污染含水层的吸附

D. Kebria, S. Mokhtarpour
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引用次数: 0

摘要

芳香烃是一种有毒的污染物,通过各种工业进入环境。这些污染物具有致癌性,会导致基因突变。有各种各样的解决方案,包括生物方法,提取和电凝。以含铁废铁及其颗粒为原料,通过与聚乙烯醇(PVA)的化学反应合成纳米零价铁(nZVI)。考察了这两种吸附剂对苯酚的降解性能。通过扫描电镜分析确定了合成的纳米颗粒的物理性质。研究了pH、接触时间、污染物浓度和吸附剂用量对去除效果的影响。结果表明,在pH为3、初始浓度为8 ppm、吸附剂投加量为2.5 g、60 min时,nZVI和GnZVI对苯酚的最大去除率分别为78、57.83%。在酸性条件和实验室温度下,吸附nZVI对苯酚的去除率高于吸附GnZVI,去除率相差约20%。用Langmuir方程和Freundlich方程分析了平衡等温线,发现这些实验符合Freundlich模型。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Enhanced Adsorption of Aromatic Hydrocarbon-contaminated Aquifer Using Granular Nano Zero-valent Iron
Aromatic hydrocarbons are toxic pollutants that enter into environment through various industries. These pollutants are carcinogenic and cause genetic mutations. There are various solutions, including biological methods, extraction, and electrocoagulation. This research aims to synthesize the nano zero-valent iron (nZVI) from the ferrous waste and granules of nZVI by the chemical combination of nZVI with polyvinyl alcohol (PVA). The performance of these two adsorbents was evaluated to degradation of phenol from an aqueous solution. The physical properties of the synthesized nanoparticles were determined using SEM analysis. Effect of pH, contact time, contaminant concentration, and adsorbent dosage on the removal efficiency were studied. The results showed that the maximum removal efficiency of phenol by nZVI and GnZVI was 78, 57.83 %, respectively, at the condition of pH 3, 60 minutes initial concentration of 8 ppm and adsorbent dosage of 2.5 g. The removal efficiency of phenol in acidic conditions and laboratory temperature by adsorption of nZVI is higher than GnZVI with a difference in removal efficiency of approximately 20 %. Equilibrium isotherms were analyzed by Langmuir and Freundlich equations and it was observed that these experiments followed Freundlich model.
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