Akyol Nihat Hakan
Department of Geological Engineering, University of Kocaeli, TR-41380 Kocaeli, Turkey.
Chemosphere. 2015 Jan;119:1027-1032. doi: 10.1016/j.chemosphere.2014.08.068. Epub 2014 Oct 8.
Non-ideal sorption and extensive elution tailing behavior of atrazine was evaluated for an agricultural soil with and without stable manure amendment (10% by weight). A series of laboratory experiments showed that the sorption of atrazine was described by rate-limited, nonlinear reversible processes (Freundlich isotherm) for both non-amended and amended soil. Non-ideal transport of atrazine exhibited extensive low concentration elution tailing due to the most likely organic carbon fraction in the soil. This tailing behavior was more pronounced and extensive for soil with 10% stable-manure amendment. Two-site transport modeling analyses including non-linear sorption and rate-limited sorption-desorption provided a reasonably good match to the atrazine breakthrough curves but were unable to match the long-term concentration tailing, even for non-amended soil. A mathematical model incorporating nonlinear, rate-limited sorption/desorption described by a continuous-distribution function was used to successfully simulate atrazine transport early-time breakthrough and long-term concentration tailing for both non-amended and amended soil conditions.
针对添加和未添加稳定粪肥(重量比10%)的农业土壤,评估了莠去津的非理想吸附和广泛的洗脱拖尾行为。一系列实验室实验表明,对于未改良和改良土壤,莠去津的吸附均由限速、非线性可逆过程(弗伦德利希等温线)描述。由于土壤中最可能的有机碳组分,莠去津的非理想迁移表现出广泛的低浓度洗脱拖尾。对于添加10%稳定粪肥的土壤,这种拖尾行为更为明显和广泛。包括非线性吸附和限速吸附-解吸的双位点迁移模型分析与莠去津穿透曲线有较好的匹配,但即使对于未改良土壤,也无法匹配长期浓度拖尾。采用一个包含由连续分布函数描述的非线性、限速吸附/解吸的数学模型,成功模拟了未改良和改良土壤条件下莠去津迁移的早期穿透和长期浓度拖尾。