Global Centre for Environmental Remediation (GCER), College of Engineering, Science and Environment, The University of Newcastle, Callaghan, NSW, Australia.
Department of Agricultural Chemistry, Sher-e-Bangla Agricultural University, Dhaka, Bangladesh.
J Environ Sci Health B. 2021;56(12):1066-1077. doi: 10.1080/03601234.2021.2014255. Epub 2021 Dec 16.
This novel study investigated the behavior and fate of chlorothalonil in terms of kinetics, sorption‒desorption and leaching potential in urban landscape soils using batch experiments. The pseudo-second-order model well described the sorption kinetics of chlorothalonil in urban soils. Consequently, chlorothalonil was partitioned into heterogeneous surfaces of soil following the Freundlich isotherm model. According to PCA, soil organic matter (OM), silt, clay, and oxides of Al and Fe exhibited a significant positive correlation ( < 0.05) with chlorothalonil ( < 0.05), while sand content and soil pH showed a negative correlation at < 0.05. In soils, decreased sorption of chlorothalonil was also due to the presence of undecomposed or partly decomposed OM, whereas increased sorption could be attributed to the combined effect of OM with C = O and C-H groups, silt, clay, Al and Fe oxides and hydrophobicity of the fungicide. Also, , G, and of four among nine urban soils indicated that chlorothalonil has a great potential for leaching into the groundwater from the soil surface, posing an unintended threat to non-target biota and food safety. Therefore, utmost care must be taken while applying chlorothalonil in urban landscapes, particularly on impervious surfaces, to minimize the impact on the ecosystem.
本研究采用批实验的方法,研究了百菌清在城市景观土壤中的动力学、吸附-解吸和淋溶特性。拟二阶模型很好地描述了百菌清在城市土壤中的吸附动力学。因此,百菌清按照 Freundlich 等温模型分配到土壤的非均相表面。根据主成分分析(PCA),土壤有机质(OM)、粉粒、粘粒、Al 和 Fe 的氧化物与百菌清呈显著正相关(<0.05),而砂含量和土壤 pH 呈显著负相关(<0.05)。在土壤中,百菌清吸附减少还归因于未分解或部分分解的 OM 的存在,而吸附增加可能归因于 OM 与 C=O 和 C-H 基团、粉粒、粘粒、Al 和 Fe 氧化物以及杀真菌剂疏水性的综合作用。此外,在所研究的九个城市土壤中,有四个土壤的 G、DT50 和 Koc 值表明,百菌清具有从土壤表面淋溶到地下水的巨大潜力,对非靶标生物和食品安全构成了意外威胁。因此,在城市景观中应用百菌清时,特别是在不透水表面,必须格外小心,以尽量减少对生态系统的影响。