水和pH对氯和甲氧基苯酚在蒙脱土上氧化低聚的影响

S. Desjardins, J. A. Landry, J. Farant
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引用次数: 3

摘要

本研究的重点是当pH值和水条件发生变化时,蒙脱土粘土氧化具有活化(甲氧基酚)和失活(氯酚)取代基的有机污染物的能力。采用有机指示剂和滴定法测定了粘土中Lewis和Br⊘的含量和强度。水在粘土氧化这些污染物的过程中起着两个不同的作用:(1)它中和粘土的刘易斯酸,从而防止氯酚被大量氧化;(2)由于二聚体产率高,它不能成功地与甲氧基苯酚竞争刘易斯酸位点。Na+, Ca2+和Fe3+粘土在高pH下氧化酚类化合物的高容量似乎是由于酚类化合物比质子化形式更具活性。Lewis和Br⊘nsted对各种同离子粘土的酸度测量有助于解释粘土在低pH值和高pH值下氧化酚类化合物的高能力及其l…
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effects of Water and pH on the Oxidative Oligomerization of Chloro an Methoxyphenol by a Montmorillonite Clay
This study focussed on the capacity of a montmorillonite clay to oxidize organic contaminants having activating (methoxyphenol) and deactivating (chlorophenol) substituent groups when pH and water conditions are changing. The amount and strength of Lewis and Br⊘nsted acidity of the clay was measured using organic indicator and titration methods. Water plays two distinct roles in the oxidation of such contaminants by clays: (1) it neutralizes the clay's Lewis acidity, thereby preventing chlorophenol from getting oxidized in significant yields; (2) it does not successfully compete with methoxyphenol for Lewis acid sites because high dimer yields are observed. The high capacity of Na+, Ca2+, and Fe3+ clays to oxidize phenolic compounds at high pH appears to be caused by phenolates being more reactive than the protonated form. The Lewis and Br⊘nsted acidity measurement of the various homoionic clays tested help explain the high capacity of the clays to oxidize phenolic compounds at low and high pH and their l...
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