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水相辅助下吡啶甲酸引发的芬顿反应:加速铁循环并同时生成一种选择性的基于铁的氧化剂。

The Fenton Reaction in Water Assisted by Picolinic Acid: Accelerated Iron Cycling and Co-generation of a Selective Fe-Based Oxidant.

机构信息

State Key Laboratory of Pollution Control and Resource Reuse, School of Environment, Nanjing University, Nanjing 210023, PR China.

Department of Environmental Sciences, The Connecticut Agricultural Experiment Station, New Haven, Connecticut 06511, United States.

出版信息

Environ Sci Technol. 2021 Jun 15;55(12):8299-8308. doi: 10.1021/acs.est.1c00230. Epub 2021 May 25.

Abstract

The Fenton reaction is limited by a narrow acidic pH range, the slow reduction of Fe(III), and susceptibility of the nonselective hydroxyl radical (HO) to scavenging by water constituents. Here, we employed the biodegradable chelating agent picolinic acid (PICA) to address these concerns. Compared to the classical Fenton reaction at pH 3.0, PICA greatly accelerated the degradation of atrazine, sulfamethazine, and various substituted phenols at pH 5.0 in a reaction with autocatalytic characteristics. Although HO served as the principal oxidant, a high-spin, end-on hydroperoxo intermediate, tentatively identified as PICA-Fe-OOH, also exhibited reactivity toward several test compounds. Chloride release from the oxidation of 2,4,6-trichlorophenol and the positive slope of the Hammett correlation for a series of halogenated phenols were consistent with PICA-Fe-OOH reacting as a nucleophilic oxidant. Compared to HO, PICA-Fe-OOH is less sensitive to potential scavengers in environmental water samples. Kinetic analysis reveals that PICA facilitates Fe(III)/Fe(II) transformation by accelerating Fe(III) reduction by HO. Autocatalysis is ascribed to the buildup of Fe(II) from the reduction of Fe(III) by HO as well as PICA oxidation products. PICA assistance in the Fenton reaction may be beneficial to wastewater treatment because it favors iron cycling, extends the pH range, and balances oxidation universality with selectivity.

摘要

芬顿反应受到酸性 pH 值范围狭窄、Fe(III)还原缓慢以及非选择性羟基自由基 (HO) 易被水成分清除等因素的限制。在这里,我们采用可生物降解的螯合剂吡啶甲酸(PICA)来解决这些问题。与 pH 值为 3.0 的经典芬顿反应相比,PICA 在 pH 值为 5.0 的反应中具有自动催化特性,大大加速了莠去津、磺胺甲噁唑和各种取代酚的降解。尽管 HO 是主要氧化剂,但高自旋、端氧过氧自由基中间体,暂定名为 PICA-Fe-OOH,也对几种测试化合物表现出反应活性。从 2,4,6-三氯苯酚氧化释放的氯离子和一系列卤代苯酚的哈米特相关性的正斜率与 PICA-Fe-OOH 作为亲核氧化剂反应一致。与 HO 相比,PICA-Fe-OOH 对环境水样中的潜在清除剂的敏感性较低。动力学分析表明,PICA 通过加速 HO 还原 Fe(III)来促进 Fe(III)/Fe(II)转化。自动催化归因于 HO 还原 Fe(III)以及 PICA 氧化产物生成的 Fe(II)积累。PICA 在芬顿反应中的辅助作用可能有利于废水处理,因为它有利于铁循环、扩展 pH 值范围,并平衡氧化的普遍性和选择性。

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