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Removal of 4-chlorophenol from polluted water by aluminum-iron alloys

机译:通过铝 - 铁合金从污染水中除去4-氯苯酚

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摘要

Chlorophenols are extremely toxic to the environment and recalcitrant to biological degradation. Herein chemical degradation of 4-chlorophenol (4-CP) from aqueous solutions by zero-valent aluminum (Al), zero-valent iron (Fe), Al and Fe mixtures (Al/Fe mass ratio 90/10, labeled as Al/Fe10) and Al-Fe alloy (Al/Fe mass ratio 90/10, labeled as Al-Fe10) were investigated. No removal was found for 50 mg center dot L-1 4-CP under anoxic conditions at initial pH 2.5 during a period of 10 hrs while 56%, 83%, 78% and 99% of 4-CP were removed by Fe, Al, Al/Fe10 and Al-Fe10, respectively under aeration conditions. The removal of 4-CP by Al/Fe10 mixtures was primarily in the Fe mode in the beginning 4 h and then transitioned to the Al mode. The removal of 4-CP by Al-Fe10 alloy was accomplished via two intermediate products, hydroquinone (HQ) and 4-chlorocatechol (4-CC), and it was speculated that reactive oxygen species and hydroxyl radicals (center dot OH) play an important role in the degradation of 4-CP and that Al-Fe intermetallic compounds might catalyze the reactions. This study demonstrates that alloying Al with Fe offers a promising strategy for developing new materials for water and wastewater remediation.
机译:氯酚对环境毒性极大,顽固地降解了生物降解。本文从零价铝(Al),零价铁(Fe),Al和Fe混合物(Al / Fe Mass比90/10,标记为AL /)的4-氯苯酚(Al / Fe Mass比率90/10,标记为AL /研究了Fe10)和Al-Fe合金(Al / Fe质量比90/10,标记为Al-Fe10)。在10小时内的初始pH 2.5的初始pH 2.5下没有发现50mg中心点L-1 4-CP的去除,而Fe,Al将56%,83%,78%和99%的4-CP除去4-CP。 ,Al / Fe10和Al-Fe10分别在曝气条件下。通过Al / Fe10混合物去除4-CP主要是在开始4小时的Fe模式中,然后过渡到AL模式。通过Al-Fe10合金去除4-CP通过两种中间产物,氢醌(HQ)和4-氯丁金(4-CC)完成,并推测活性氧物质和羟基(中心点OH)发挥作用在4-CP的降解中的重要作用以及Al-Fe金属间化合物可能催化反应。本研究表明,合金化AL与FE提供了开发新材料的有希望的水和废水修复的策略。

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