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氧四环素对稻田土壤铁砷形态转化的影响

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为探究稻田土壤中抗生素和As复合污染的相互作用,选取湖南省湘潭市某稻田土壤进行微宇宙培养试验,通过模拟稻田土壤淹水-排干过程,探究氧四环素(OTC)在此过程中对Fe、As氧化还原转化的影响。结果表明,在淹水培养阶段,OTC能够促进土壤铁矿物的还原,使得溶解态、可交换态和吸附态/弱结晶型矿物态Fe(Ⅱ)含量显著增加,因此在排干阶段能生成更多的·OH自由基,促进溶解态As(Ⅲ)的氧化。OTC对Fe(Ⅲ)具有络合和还原作用,能够促进土壤含Fe物质的还原;同时,作为一种广谱的抗菌剂,OTC的选择作用提高了异化铁还原菌的相对丰度,同样能够促进铁矿物的还原溶解。此外在淹水阶段,OTC作用下硫酸盐还原菌相对丰度增加,这使得硫化物结合态As的生成量增加,因而溶解态As含量降低。总体而言,OTC在淹水阶段会促进土壤含Fe物质的还原溶解,但能够通过提高As硫化物的生成量减少As的溶出;在排干阶段则有利于生成更多的OH,将溶解态As(Ⅲ)快速氧化,这能够降低水稻吸收和转运As的风险。
Effects of Oxytetracycline on Transformation of Iron and Arsenic in Paddy Soil
To explore the interaction between antibiotic and As concomitant contamination in paddy soil,a microcosmic cultivation experiment was conducted on a paddy soil in Xiangtan City,Hunan Province.By simulating the process of flooding and drainage in paddy soil,the effect of oxytetracycline(OTC)on the redox conversion of Fe and As was investigated.Results indicated that OTC could promote the reduction of Fe minerals in flooding incubation period,and the contents of dissolved,exchangeable and adsorbed/weakly crystalline Fe in soil significantly increased.Therefore,more·OH radicals were detected in drainage incubation period,which accelerated the oxidation of dissolved As(Ⅲ).It was proposed that the complexation between OTC and Fe(Ⅲ)induced electron transfer and promoted the reductive dissolution of Fe minerals.At the same time,the presence of OTC increased the relative abundance of dissimilatory Fe-reducing bacteria,which also promoted the reductive dissolution of Fe minerals.In addition,the relative abundance of sulfate reducing bacteria increased in the presence of OTC,thus the formation of arsenic sulfide increased accordingly,which would decrease the content of dissolved As in flooding period.In general,OTC promoted the reductive dissolution of Fe minerals in the flooding period,but reduced the dissolved As contents by enhancing the production of arsenic sulfide.In drainage period,the formation of·OH induced the rapid oxidation of dissolved As(Ⅲ).These processes could decrease the uptake and transport risks of As in rice.

AntibioticsInorganic arsenicConcomitant contaminationPaddy soilReactive oxygenic species

仝运平、谷成、高娟

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中国科学院大学南京学院,南京 211135

中国科学院南京土壤研究所,南京 211135

生态环境部南京环境科学研究所,南京 210042

南京大学环境学院,南京 210023

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抗生素 无机砷 复合污染 水稻土 活性氧物种

2024

土壤
中国科学院南京土壤研究所

土壤

CSTPCD北大核心
影响因子:1.052
ISSN:0253-9829
年,卷(期):2024.56(5)