Wang Ting-Ting, Li Yi-Song, Jiang Alice C, Lu Meng-Xiao, Liu Xian-Jin, Yu Xiang-Yang
Pesticide Biology and Ecology Research Center, Jiangsu Academy of Agricultural Sciences, Nanjing, 20014, China.
Bull Environ Contam Toxicol. 2015 Sep;95(3):401-6. doi: 10.1007/s00128-015-1541-5. Epub 2015 Apr 24.
The sorption behavior of chlorantraniliprole (CAP) by biochar and effect of soil extracts on sorptivity in soil-biochar systems were examined. The results showed that biochar amendment could enhance the sorption of CAP in soils. The values of K F increased significantly when the soils were amended with 0.5 % BC850, which were from 1.54 to 196.5. The indigenous sorptivity of biochar was suppressed after it was applied to the soils. The degree of biochar sorptivity attenuation in different soil-biochar systems varied with the properties of soil water soluble matters. Sorption of CAP by biochar from the five soil extracts was found to be lower than that from a CaCl2 solution. The calculated K d values at C w of 0.01 mg kg(-1) for biochar sorption of CAP from CaCl2 solution were 21.4-26.6 times of that from soil extracts. Aging of biochar in soil extract reduced CAP sorption by up to 85 %.
研究了氯虫苯甲酰胺(CAP)在生物炭上的吸附行为以及土壤提取物对土壤 - 生物炭体系中吸附性的影响。结果表明,生物炭改良可增强土壤中CAP的吸附。当土壤用0.5% BC850改良时,K F值显著增加,从1.54增至196.5。生物炭施用于土壤后,其固有吸附性受到抑制。不同土壤 - 生物炭体系中生物炭吸附性衰减程度随土壤水溶性物质性质而异。发现生物炭对五种土壤提取物中CAP的吸附低于对CaCl2溶液中CAP的吸附。在C w为0.01 mg kg(-1)时,生物炭对CaCl2溶液中CAP吸附的计算K d值是对土壤提取物吸附K d值的21.4 - 26.6倍。生物炭在土壤提取物中的老化使CAP吸附最多降低85%。