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肉鸡(Gallus gallus domesticus)粪便、土壤、玉米(Zea mays L.)和受粪便施肥农田影响的地下水中的砷形态。

Arsenic species in broiler (Gallus gallus domesticus) litter, soils, maize (Zea mays L.), and groundwater from litter-amended fields.

机构信息

University of Kentucky, N-122 Agricultural Science Building North, Lexington, KY 40546, United States.

出版信息

Sci Total Environ. 2012 Nov 1;438:286-92. doi: 10.1016/j.scitotenv.2012.08.078. Epub 2012 Sep 23.

Abstract

Manure and bedding material (litter) generated by the broiler industry (Gallus gallus domesticus) often contain high levels of arsenic (As) when organoarsenical roxarsone and p-arsanilic acid are included in feed to combat disease and improve weight gain of the birds. This study was conducted to determine As levels and species in litter from three major broiler producing companies, and As levels in soils, corn tissue (Zea mays L.), and groundwater in fields where litter was applied. Total As in litter from the three different integrators ranged between <1 and 44 mg kg(-1). Between 15 and 20% of total As in litter consisted of mostly of arsenate, with smaller amounts of roxarsone and several transformation products that were extractable with phosphate buffer. Soils amended with litter had higher levels of bioavailable As (extractable with Mehlich 3 solution and taken up by corn leaves). Arsenic concentrations in plant tissue and groundwater, however, were below the World Health Organization thresholds, which was attributed to strong sorption/precipitation of arsenate in Fe- and Al-rich soils. Ecological impacts of amending soils with As-laden litter depend on the As species in the litter, and chemical and physical properties of soil that strongly affect As mobility and bioavailability in the environment.

摘要

肉鸡(Gallus gallus domesticus)生产过程中产生的粪便和垫料(垫料)通常含有高水平的砷(As),当有机砷罗硝唑和对氨基苯砷酸被添加到饲料中以防治疾病和提高禽类体重时会出现这种情况。本研究旨在确定来自三个主要肉鸡生产公司的垫料中的砷水平和种类,以及施用于垫料的土壤、玉米组织(Zea mays L.)和地下水中的砷水平。三个不同整合商的垫料中的总砷含量在<1 至 44 毫克/千克之间。垫料中约有 15%至 20%的总砷由主要为砷酸盐组成,还有少量的罗硝唑和几种可与磷酸盐缓冲液提取的转化产物。用垫料改良的土壤具有更高水平的生物可利用砷(可通过 Mehlich 3 溶液提取并被玉米叶片吸收)。然而,植物组织和地下水中的砷浓度低于世界卫生组织的阈值,这归因于富铁和富铝土壤中砷酸盐的强烈吸附/沉淀。用富含砷的垫料改良土壤对生态的影响取决于垫料中的砷种类,以及强烈影响环境中砷迁移性和生物可利用性的土壤化学和物理性质。

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