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溶解有机物和Fe(II)对五氯硝基苯非生物还原的影响。

Influence of dissolved organic matter and Fe(II) on the abiotic reduction of pentachloronitrobenzene.

作者信息

Hakala J Alexandra, Chin Yu-Ping, Weber Eric J

机构信息

School of Earth Sciences, The Ohio State University, Columbus, Ohio 43210, USA.

出版信息

Environ Sci Technol. 2007 Nov 1;41(21):7337-42. doi: 10.1021/es070648c.

Abstract

Nitroaromatic pesticides (NAPs) are hydrophobic contaminants that can accumulate in sediments by the deposition of suspended solids from surface waters. Fe(II) and dissolved organic matter (DOM), present in suboxic and anoxic zones of freshwater sediments, can transform NAPs in natural systems. We studied the reduction of pentachloronitrobenzene (PCNB) to pentachloroaniline (PCA) in controlled studies using Fe(II) and surface water DOM isolates from Pony Lake, Antarctica, and Suwannee River, GA, in unfiltered and 0.45 microm filtered solutions. We observed rapid reduction of PCNB to PCA in the presence of Fe(II) and DOM (t(1/2) approximately = 30 min to 4 h) and very limited reduction in DOM-only systems. DOM in unfiltered systems inhibited iron colloid formation and potentially limited the formation of reactive Fe(ll)-iron colloid surface complexes, causing reductive transformation in Fe(II)-DOM media to be slower in some cases relative to Fe(ll)-only controls. Conversely, in 0.45 microm filtered solutions, PCNB reduction in Fe(III)-DOM media was faster than the Fe(II)-only controls, suggesting that DOM enhances the reductive capacity of Fe(ll) in the absence of iron colloids. This work shows that DOM may significantly affect the reactivity of Fe(ll) toward NAPs under suboxic and anoxic conditions in natural wetland sediments.

摘要

硝基芳香族农药(NAPs)是疏水性污染物,可通过地表水中悬浮固体的沉积而在沉积物中积累。存在于淡水沉积物缺氧和无氧区域的亚铁(Fe(II))和溶解有机物(DOM)可在自然系统中转化NAPs。我们在对照研究中,使用来自南极小马湖和佐治亚州苏万尼河的Fe(II)以及地表水DOM分离物,在未过滤和0.45微米过滤的溶液中,研究了五氯硝基苯(PCNB)还原为五氯苯胺(PCA)的过程。我们观察到,在Fe(II)和DOM存在的情况下,PCNB迅速还原为PCA(半衰期约为30分钟至4小时),而仅在DOM体系中的还原非常有限。未过滤体系中的DOM抑制了铁胶体的形成,并可能限制了活性Fe(II)-铁胶体表面络合物的形成,导致在某些情况下,相对于仅含Fe(II)的对照,Fe(II)-DOM介质中的还原转化较慢。相反,在0.45微米过滤的溶液中,Fe(III)-DOM介质中PCNB的还原比仅含Fe(II)的对照更快,这表明在没有铁胶体的情况下,DOM增强了Fe(II)的还原能力。这项工作表明,在自然湿地沉积物的缺氧和无氧条件下,DOM可能会显著影响Fe(II)对NAPs的反应活性。

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