Literature DB >> 18800508

NP1EC degradation pathways under oxic and microxic conditions.

John Montgomery-Brown1, Yongmei Li, Wang-Hsien Ding, Gary M Mong, James A Campbell, Martin Reinhard.   

Abstract

The degradation pathway of nonylphenol ethoxyacetic acid (NP1EC) and the conditions favoring dicarboxylated alklyphenol ethoxyacetic acid (CAnP1EC; where n = the number of aliphatic carbon atoms) formation were studied in oxic microcosms constructed with organic carbon-poor soil from the Mesa soil aquifer treatment (SAT) facility (Arizona) and pristine organic carbon-rich sediments from Coyote Creek (California). Results suggest that the availability of dissolved oxygen determines the dominant biodegradation pathway; ether cleavage and the formation of NP is favored by oxic conditions, while alkyl chain oxidation and the formation of CAP1ECs is favored under microxic conditions. In the Mesa microcosms, para-NP1EC was transformed to para-nonylphenol (NP) before being rapidly transformed to nonyl alcohols via ipso-hydroxylation. In the Coyote Creek microcosms, large quantities of CAP1ECs were observed. Initially, CA8P1ECs were the dominant metabolites, but as biodegradation continued, CAP1ECs became the dominant metabolites. Compared to the CAsP1ECs, the number of CA6P1ECs peaks observed was small (< 6) even though their concentrations were high. Several novel metabolites, tentatively identified as 3-alkylchroman-4-carboxylic acids (with alkyl groups ranging from C2 to C5), were formed in the Coyote Creek microcosms. These metabolites are presumably formed from ortho-CAP1ECs by intramolecular ring closure.

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Year:  2008        PMID: 18800508     DOI: 10.1021/es702561t

Source DB:  PubMed          Journal:  Environ Sci Technol        ISSN: 0013-936X            Impact factor:   9.028


  3 in total

1.  Isolation and characterization of Sphingomonas sp. Y2 capable of high-efficiency degradation of nonylphenol polyethoxylates in wastewater.

Authors:  Naling Bai; Sheng Wang; Rexiding Abuduaini; Xufen Zhu; Yuhua Zhao
Journal:  Environ Sci Pollut Res Int       Date:  2016-03-10       Impact factor: 4.223

2.  Co-metabolism of nonylphenol ethoxylate in sequencing batch reactor under aerobic conditions.

Authors:  Alpaslan Ekdal; Didem Okutman Tas; Gulsum Emel Zengin; Irmak Batı Onay; Tugba Olmez Hanci; Derin Orhon; Emine Cokgor
Journal:  Biodegradation       Date:  2022-02-10       Impact factor: 3.909

3.  Degradation pathways of low-ethoxylated nonylphenols by isolated bacteria using an improved method.

Authors:  Yu Zhang; Xin Gu; Jing Zhang; Min Yang
Journal:  Environ Sci Pollut Res Int       Date:  2013-08-13       Impact factor: 4.223

  3 in total

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