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SORPTION OF TYLOSIN A, D, AND A-ALDOL AND DEGRADATION OF TYLOSIN A IN SOILS

机译:酪氨酸A,D和A-ALDOL的吸附及酪氨酸A在土壤中的降解

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Heightened concerns regarding the potential impact on soil and water quality of veterinary antibiotics warrant a better understanding of the environmental fate of antibiotics in soil. Sorption of the macrolides tylosin A (TA), tylosin D, and TA-aldol was measured in several soils and evaluated with respect to soil pH, organic matter content, percentage clay, and cation-exchange capacity (CEC). Tylosin and related compounds exhibit similar sorption characteristics and generally are strongly sorbed, with sorption being well and positively correlated to surface area, clay content, and CEC. Sorption coefficients normalized by CEC were within a narrow range (10~(4.1±0.21) L/mol_c) for all but one soil; however, good extraction recoveries with only methanol for most soils suggested that hydrophobic processes also contribute to sorption. Aerobic degradation of TA over a three-month period in two freshly collected agricultural soils and ~(60)Co-irradiated soils indicated that both abiotic and microbial processes contribute to TA transformation. The abiotic process was much slower and dominated in the first two weeks, followed by rapid microbial degradation within 3 d. Three primary degradation products were identified using liquid chromatography with full-scan mass spectrometry, with unconfirmed identifications of TA having the aldehyde group oxidized to an acid (m/z - 932) in both soils and tyslosin B (m/z = 772) as well as tylosin B having the aldehyde group oxidized to an acid (m/z = 788) in the sandy soil.
机译:人们越来越关注兽用抗生素对土壤和水质的潜在影响,因此有必要更好地了解土壤中抗生素的环境命运。在几种土壤中测量大环内酯类泰乐菌素A(TA),泰乐菌素D和TA-醛醇的吸附量,并就土壤的pH值,有机物含量,粘土含量和阳离子交换能力(CEC)进行评估。泰乐菌素和相关化合物表现出相似的吸附特性,通常被强烈吸附,吸附与表面积,粘土含量和CEC呈正相关。除一种土壤外,CEC归一化的吸附系数都在一个狭窄的范围内(10〜(4.1±0.21)L / mol_c)。但是,对于大多数土壤,仅用甲醇即可获得良好的提取回收率,这表明疏水过程也有助于吸附。在两个新鲜收集的农业土壤和〜(60)Co辐照土壤中,三个月内TA的好氧降解表明,非生物和微生物过程都有助于TA的转化。非生物过程慢得多,在头两周占主导地位,随后在3天内迅速降解。使用液相色谱-全扫描质谱法鉴定了三种主要降解产物,未确认的是在土壤和泰乐菌素B(m / z = 772)中具有醛基被氧化为酸(m / z-932)的TA的鉴定结果为以及在沙土中具有醛基的泰乐菌素B被氧化成酸(m / z = 788)。

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