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粪肥施用对抗生素在土壤上吸附的影响
引用本文:罗珊,胡锦昇,唐翔宇,耿春女,程建华.粪肥施用对抗生素在土壤上吸附的影响[J].环境科学,2023,44(11):6399-6411.
作者姓名:罗珊  胡锦昇  唐翔宇  耿春女  程建华
作者单位:上海应用技术大学生态技术与工程学院, 上海 201418;浙江农林大学林业与生物技术学院, 杭州 311300;中国科学院、水利部成都山地灾害与环境研究所, 成都 610041
基金项目:浙江省自然科学基金项目(LD21D010001);上海应用技术大学中青年科技人才发展基金项目(ZQ2019-17)
摘    要:磺胺类抗生素和氟苯尼考(FFC)是浙江省普遍使用的抗生素,在土壤上吸附弱而易于迁移,存在较高的环境风险.近年来,粪源抗生素对农田土壤潜在风险的研究多是在实验室条件下添加粪肥的方式进行,无法评估自然施肥状态下抗生素的污染风险.因此以浙江省长期施用不同肥料(鸡粪、猪粪和化肥)的5种旱地农田土壤临安(LA)、嘉善(JS)、龙游(LY)、开化(KH)和金华(JH)]为对象,选用4种常用的抗生素磺胺嘧啶(SD)、磺胺二甲基嘧啶(SMT)、磺胺甲基异噁唑(SMZ)和FFC],进行批量平衡实验,探究土壤不同类型和粪肥类型对抗生素在土壤中吸附的影响.结果表明,4种抗生素在实验土壤中的吸附都较弱,吸附次序为:SMT(1.44~13.23 mg(1-(1/n))·L1/n·kg-1)>SMZ(0.73~6.05 mg(1-(1/n))·L1/n·kg-1)>SD(0.16~5.57 mg(1-(1/n))·L1/n·...

关 键 词:磺胺类抗生素  氟苯尼考(FFC)  批量平衡实验  吸附容量  鸡粪  猪粪
收稿时间:2022/10/17 0:00:00
修稿时间:2023/1/29 0:00:00

Effect of Manure Application on the Adsorption of Antibiotics to Soil
Affiliation:School of Ecological Technology and Engineering, Shanghai Institute of Technology, Shanghai 201418, China;College of Forestry and Biotechnology, Zhejiang A&F University, Hangzhou 311300, China;Institute of Mountain Hazards and Environment, Chinese Academy of Sciences, Chengdu 610041, China
Abstract:Sulfonamide antibiotics and florfenicol(FFC) are commonly used antibiotics in Zhejiang Province. They have weak adsorption on soil and are easy to migrate, with high environmental risks. In recent years, most of the studies on the potential risk of fecal-derived antibiotics to farmland soil were conducted by adding manure under laboratory conditions; therefore, it is impossible to assess the risk of antibiotic pollution under natural fertilization. Therefore, batch balance experiments were conducted to explore the effects of different soil types and manure types on the adsorption of antibiotics in the soil, in which five types of dryland farmland soilsLin''an(LA), Jiashan(JS), Longyou(LY), Kaihua(KH), and Jinhua(JH)]in Zhejiang Province that have been used with different fertilizers(chicken manure, pig manure, and chemical fertilizer) for a long time were chosen, and four types of commonly used antibioticssulfadiazine(SD), sulfamethazine(SMT), sulfamethoxazole(SMZ), and FFC]were selected. The results showed that the adsorption of the four antibiotics in the experimental soil was weak, and the adsorption capacity decreased in the order of:SMT(1.44-13.23 mg1-(1/n)·L1/n·kg-1)>SMZ(0.73-6.05 mg1-(1/n)·L1/n·kg-1)>SD(0.16-5.57 mg1-(1/n)·L1/n·kg-1)>FFC(0.27-3.81 mg1-(1/n)·L1/n·kg-1). The Freundlich model was superior to the linear model in fitting the isotherm adsorption of SD, SMT, and FFC, in which SD and FFC belonged to "S" type adsorption, and SMT belonged to "L" type adsorption. For SMZ, the fitting effect of the linear model was better than that of the Freundlich model. The contents of total organic carbon(TOC) and dissolved organic carbon(DOC) could better predict the adsorption capacity of the four antibiotics(r=0.548-0.808), and the values of cation exchange capacity(CEC) and electrical conductivity(EC) could better predict the adsorption capacity of SMT and FFC(r=0.758-0.841). Compared with the application of chemical fertilizer, manure application increased the values of TOC, DOC, CEC, and EC in acidic and neutral soils, which was conducive to the adsorption of antibiotics on the soil. Meanwhile, manure application also increased pH in acidic and neutral soils, which was not conducive to the adsorption of antibiotics on the soil. In addition, manure application reduced the values of TOC, DOC, CEC, EC, and pH in alkaline soils. The lower pH was conducive to antibiotic adsorption on the soil, whereas the lower content of the other four was not conducive to antibiotic adsorption on the soil. For the acidic soil with low fertility, the application of manure increased soil fertility and thus increased the adsorption of antibiotics on the soil, such as the LA soil with chicken manure, the LY(1) soil with pig manure, and the JH soil with chicken manure and pig manure. However, for the acidic and neutral soils with high fertility, the application of manure had significantly increased soil pH and thus reduced the adsorption of antibiotics on the soil, such as the JS soil with chicken manure and pig manure and the LY(2) soil with chicken manure. For calcareous soil with high fertility and pH(such as KH soil), the adsorption profiles of the four types of antibiotics on the soil showed diversity after the application of manure:the adsorption capacity of SD increased significantly after the application of chicken manure and pig manure, whereas the adsorption capacity of SMT and SMZ decreased significantly, and the adsorption capacity of FFC declined significantly after the application of chicken manure. Therefore, manure application according to soil fertility could effectively control the environmental risk of fecal antibiotics.
Keywords:sulfonamide antibiotics  florfenicol(FFC)  batch balance experiments  adsorption capacity  chicken manure  pig manure
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