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肥料工业磷石膏中复杂的纳米矿物质和超细颗粒组合及其对人类暴露的影响。

Complex nanominerals and ultrafine particles assemblages in phosphogypsum of the fertilizer industry and implications on human exposure.

机构信息

Catarinense Institute of Environmental Research and Human Development-IPADHC, Capivari de Baixo, Santa Catarina, Brazil.

出版信息

Sci Total Environ. 2010 Oct 1;408(21):5117-22. doi: 10.1016/j.scitotenv.2010.07.023. Epub 2010 Aug 10.

DOI:10.1016/j.scitotenv.2010.07.023
PMID:20701953
Abstract

Phosphogypsum (CaSO(4).2H(2)O), a by-product of phosphate-rock processing, contains high amounts of impurities such P(2)O(5), F, radioactive elements, organic substances, secondary nanominerals, and ultrafine particles (UFP) enriched in metals and metalloids. In this study, we examine phosphogypsum (PG) collected from abandoned fertilizer industry facility in south Brazil (Santa Catarina state). The fragile nature of nanominerals and UFP assemblages from fertilizer industry systems required novel techniques and experimental approaches. The investigation of the geochemistry of complex nanominerals and UFP assemblages was a prerequisite to accurately assess the environmental and human health risks of contaminants and cost-effective chemical and biogeological remediation strategies. Particular emphasis was placed on the study and characterization of the complex mixed nanominerals and UFP containing potentially toxic elements. Nanometer-sized phases in PG were characterized using energy-dispersive X-ray spectrometer (EDS), field-emission scanning electron microscope (FE-SEM), and high-resolution transmission electron microscopy (HR-TEM) images. The chemical composition and possible correlations with morphology of nanominerals and UFP, as well as aspects of nanominerals and UFP, are discussed in the context of human health exposure, as well as in relation to management of the nanominerals and UFP in PG environments.

摘要

磷石膏(CaSO(4).2H(2)O)是磷酸岩加工的副产品,含有大量杂质,如 P(2)O(5)、F、放射性元素、有机物质、次生纳米矿物和富含金属和类金属的超细颗粒 (UFP)。在这项研究中,我们研究了来自巴西南部(圣卡塔琳娜州)废弃肥料工业设施的磷石膏 (PG)。肥料工业系统中的纳米矿物和 UFP 组合体的脆弱性质需要新的技术和实验方法。复杂纳米矿物和 UFP 组合体的地球化学研究是准确评估污染物的环境和人类健康风险以及具有成本效益的化学和生物地球化学修复策略的前提。特别强调研究和表征含有潜在有毒元素的复杂混合纳米矿物和 UFP。使用能量色散 X 射线光谱仪 (EDS)、场发射扫描电子显微镜 (FE-SEM) 和高分辨率透射电子显微镜 (HR-TEM) 图像对 PG 中的纳米级相进行了表征。纳米矿物和 UFP 的化学组成以及与形态的可能相关性,以及纳米矿物和 UFP 的各个方面,都在人类健康暴露的背景下进行了讨论,以及与 PG 环境中纳米矿物和 UFP 的管理有关。

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