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使用零价铁和纳米级零价铁对对氯苯酚进行还原脱氯的比较。

Comparison of reductive dechlorination of p-chlorophenol using Fe0 and nanosized Fe0.

作者信息

Cheng Rong, Wang Jian-Long, Zhang Wei-xian

机构信息

Laboratory of Environmental Technology, INET, Tsinghua University, Beijing 100084, China.

出版信息

J Hazard Mater. 2007 Jun 1;144(1-2):334-9. doi: 10.1016/j.jhazmat.2006.10.032. Epub 2006 Oct 15.

Abstract

Chlorophenols, as a kind of important contaminants in groundwater, are toxic and difficult to biodegrade. Laboratory tests were conducted to examine zero-valent iron as an enhancing agent in the dechlorination of chlorinated organic compounds. Nanoscale iron particles were synthesized from common precursors KBH(4) and FeSO(4). Batch experiments were performed to investigate the reduction of p-chlorophenol (4-CP) by both common Fe(0) and nanoscale Fe(0). Comparison of 300 mesh/100 mesh/commercial reductive iron powders showed that size of iron particles played an important role in reduction process. Initial concentration and pretreatment of iron particles also influenced the chlorination rate. Nanoscale Fe(0) offered much more advantages for treatment of 4-CP compared with common iron particles, such as stability and durability. And they can be used to treat contaminants in groundwater over a long time. Among different parts of synthesized nanoscale iron particle solution, the very fine particles were the major agent for treatment of pollutants. As for preservation of nanoscale Fe(0), ethanol was recommended.

摘要

氯酚作为地下水中一类重要的污染物,具有毒性且难以生物降解。开展了实验室测试,以研究零价铁作为氯代有机化合物脱氯过程中的增强剂的情况。纳米级铁颗粒由常见前驱体KBH₄和FeSO₄合成。进行了批次实验,以研究普通Fe(0)和纳米级Fe(0)对p - 氯酚(4 - CP)的还原作用。300目/100目/商业还原铁粉的比较表明,铁颗粒的尺寸在还原过程中起着重要作用。铁颗粒的初始浓度和预处理也会影响氯化速率。与普通铁颗粒相比,纳米级Fe(0)在处理4 - CP方面具有更多优势,如稳定性和耐久性。并且它们可长期用于处理地下水中的污染物。在合成的纳米级铁颗粒溶液的不同部分中,极细颗粒是处理污染物的主要成分。至于纳米级Fe(0)的保存,推荐使用乙醇。

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