4.2 Article

Adsorption-desorption behavior of atrazine on agricultural soils in China

Journal

JOURNAL OF ENVIRONMENTAL SCIENCES
Volume 57, Issue -, Pages 180-189

Publisher

SCIENCE PRESS
DOI: 10.1016/j.jes.2016.11.002

Keywords

Atrazine; Adsorption; Desorption; Agricultural soils

Funding

  1. National Natural Science Foundation of China [21367011, 21467008]
  2. Open Fund Program of the Key Laboratory of Protection and Development Utilization of Tropical Crop Germplasm Resources (Hainan University), Ministry of Education, China [2013hckled-1]
  3. Midwest University Project [MWECSP-RT08, ZXBJH-XK004, ZXBJH-XK005]
  4. Natural Science Fund Program of Hainan Province [413123]

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Adsorption and desorption are important processes that affect atrazine transport, transformation, and bioavailability in soils. In this study, the adsorption-desorption characteristics of atrazine in three soils (laterite, paddy soil and alluvial soil) were evaluated using the batch equilibrium method. The results showed that the kinetics of atrazine in soils was completed in two steps: a fast adsorption and a slow adsorption and could be well described by pseudo-second-order model. In addition, the adsorption equilibrium isotherms were nonlinear and were well fitted by Freundlich and Langmuir models. It was found that the adsorption data on laterite, and paddy soil were better fitted by the Freundlich model; as for alluvial soil, the Langmuir model described it better. The maximum atrazine sorption capacities ranked as follows: paddy soil > alluvial soil > laterite. Results of thermodynamic calculations indicated that atrazine adsorption on three tested soils was spontaneous and endothermic. The desorption data showed that negative hysteresis occurred. Furthermore, lower solution pH value was conducive to the adsorption of atrazine in soils. The atrazine adsorption in these three tested soils was controlled by physical adsorption, including partition and surface adsorption. At lower equilibrium concentration, the atrazine adsorption process in soils was dominated by surface adsorption; while with the increase of equilibrium concentration, partition was predominant. (C) 2016 The Research Center for Eco-Environmental Sciences, Chinese Academy of Sciences. Published by Elsevier B.V.

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