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Photochemical and Nonphotochemical Transformations of Cysteine with Dissolved Organic Matter. | LitMetric

AI Article Synopsis

  • - The study investigates how cysteine (Cys) transforms in natural waters, focusing on its behavior in the dark and under light conditions involving chromophoric dissolved organic matter (CDOM).
  • - Results indicate that Cys undergoes significant changes, with transformation rates in the dark being influenced by pH and temperature, while exposure to UVA or sunlight greatly increases these rates.
  • - Major products of Cys transformation include cystine and cysteine sulfinic acid, and the research suggests an unknown pathway may be the primary mechanism for CDOM-sensitized photodegradation, warranting further exploration.

Article Abstract

Cysteine (Cys) plays numerous key roles in the biogeochemistry of natural waters. Despite its importance, a full assessment of Cys abiotic transformation kinetics, products and pathways under environmental conditions has not been conducted. This study is a mechanistic evaluation of the photochemical and nonphotochemical (dark) transformations of Cys in solutions containing chromophoric dissolved organic matter (CDOM). The results show that Cys underwent abiotic transformations under both dark and irradiated conditions. Under dark conditions, the transformation rates of Cys were moderate and were highly pH- and temperature-dependent. Under UVA or natural sunlight irradiations, Cys transformation rates were enhanced by up to two orders of magnitude compared to rates under dark conditions. Product analysis indicated cystine and cysteine sulfinic acid were the major photooxidation products. In addition, this study provides an assessment of the contributions of singlet oxygen, hydroxyl radical, hydrogen peroxide, and triplet dissolved organic matter to the CDOM-sensitized photochemical oxidation of Cys. The results suggest that another unknown pathway was dominant in the CDOM-sensitized photodegradation of Cys, which will require further study to identify.

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Source
http://dx.doi.org/10.1021/acs.est.6b01291DOI Listing

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