Sorption of ionic and neutral species of pharmaceuticals to loessial soil amended with biochars

生物炭 修正案 化学 吸附 环境修复 吸附 土壤水分 环境化学 弗伦德利希方程 阳离子交换容量 水溶液 朗缪尔 解吸 离子交换 热解 污染 有机化学 环境科学 土壤科学 生态学 政治学 生物 法学
作者
Lin Wu,Erping Bi
出处
期刊:Environmental Science and Pollution Research [Springer Science+Business Media]
卷期号:26 (35): 35871-35881 被引量:10
标识
DOI:10.1007/s11356-019-06721-7
摘要

To clarify the impact of biochar amendment on soil sorption for coexisting pharmaceuticals, wheat straw-derived biochars pyrolyzed at 300 and 700 °C (labeled as WS300 and WS700, respectively) were prepared. Batch experiments on ketoprofen (KTP), atenolol (ATL) and carbamazepine (CBZ) sorption to biochars, loessial soil and biochar-amended soils were conducted. The results indicated that sorption affinity of different species of pharmaceuticals to WS300 and WS700 was in the order of cationic ATL > neutral CBZ > anionic KTP. Cationic ATL had the highest sorption to biochars due to electrostatic attraction. Coexisting ATL, CBZ and KTP competed for the shared adsorption sites on carbonized phase of biochars, and π–π interactions were proposed to be the main sorption mechanism. Sorption coefficients (Kd) and nonlinearity of ATL, CBZ and KTP to soil increased when biochar was added (5% by weight), especially for WS700 with higher specific surface area. Kd values of the three pharmaceuticals to WS700-amended soil in either single solute or bisolute system were one to two orders of magnitude higher than those to soil, indicating the promoting role of WS700 in sorption of coexisting pharmaceuticals in soil. The study demonstrated the enhanced and competitive sorption of ionic and neutral species of pharmaceuticals to soil amended with biochars, which is helpful in designing biochar as effective sorbents for immobilization of pharmaceuticals in soil remediation.
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