Evaluation of arsenic pollution in field-contaminated soil at the soil's actual pH.

J Environ Sci (China)

College of Natural Resources and Environment, Northwest A&F University, Key Laboratory of Plant Nutrition and Agro-environment in Northwest China, Ministry of Agriculture, Yangling, Shaanxi 712100, China. Electronic address:

Published: October 2024


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Article Abstract

The pollution and ecological risks posed by arsenic (As) entering the soil are the major environmental challenges faced by human beings. Soil phosphatase can serve as a useful indicator for assessing As contamination under specific soil pH conditions. However, the study of phosphatase kinetics in long-term field As-contaminated soil remains unclear, presenting a significant obstacle to the monitoring and evaluation of As pollution and toxicity. The purpose of this study was to determine phosphatase activity and explore enzyme kinetics in soils subjected to long-term field As contamination. Results revealed that the soil phosphatase activity varied among the tested soil samples, depending on the concentrations of As. The relationship between total As, As fractions and phosphatase activity was found to be significant through negative exponential function fitting. Kinetic parameters, including maximum reaction velocity (V), Michaelis constant (K) and catalytic efficiency (V/K), ranged from 3.14 × 10-53.88 × 10 mmol/(L·hr), 0.61-7.92 mmol/L, and 0.46 × 10-11.20 × 10 hr, respectively. V and V/K of phosphatase decreased with increasing As pollution, while K was less affected. Interestingly, V/K showed a significant negative correlation with all As fractions and total As. The ecological doses (ED) for the complete inhibition and partial inhibition models ranged from 0.22-70.33 mg/kg and 0.001-55.27 mg/kg, respectively, indicating that V/K can be used as an index for assessing As pollution in field-contaminated soil. This study demonstrated that the phosphatase kinetics parameters in the soil's pH system were better indicators than the optimal pH for evaluating the field ecotoxicity of As.

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http://dx.doi.org/10.1016/j.jes.2023.08.034DOI Listing

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