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Chemical transformations of lead compounds under humid conditions: implications for bioaccessibility

机译:潮湿条件下铅化合物的化学转化:对生物可及性的影响

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This short communication documents chemical transformations caused by weathering of two Pb compounds that commonly occur in house dust. Chamber experiments were designed to simulate humid indoor environment conditions to determine whether Pb compounds undergo chemical transformations influencing bioaccessibility. Reference compounds of Pb metal (12 % bioaccessibility) and Pb sulfate (14 % bioaccessibility) were subjected to an oxygenated, humidified atmosphere in closed chambers for 4 months. X-ray diffraction (XRD) and X-ray absorption near-edge structure (XANES) spectroscopy were used to characterize the main Pb species, and the change in Pb bioaccessibility was determined using a simulated gastric acid digestion. At the end of the weathering period a small amount of Pb carbonate (9 % of total Pb) appeared in the Pb sulfate sample. Weathering of the Pb metal sample resulted in the formation of two compounds, hydrocerussite (Pb hydroxyl carbonate) and Pb oxide, in significant amounts (each accounted for 26 % of total Pb). The formation of highly bioaccessible Pb carbonate (73 % bioaccessibility), hydrocerussite (76 % bioaccessibility), and Pb oxide (67 % bioaccessibility) during weathering resulted in a measurable increase in the overall Pb bioaccessibility of both samples, which was significant (p = .002) in the case of the Pb metal sample. This study demonstrates that Pb compounds commonly found in indoor dust can ‘age’ into more bioaccessible forms under humid indoor conditions.
机译:这段简短的交流记录了由两种Pb化合物的风化引起的化学转变,这通常发生在房屋粉尘中。设计箱室实验以模拟潮湿的室内环境条件,以确定Pb化合物是否经过化学转化而影响生物可及性。将铅金属(12%生物可访问性)和硫酸铅(14%生物可访问性)的参考化合物在密闭的密室中置于充氧的潮湿气氛中4个月。使用X射线衍射(XRD)和X射线吸收近边缘结构(XANES)光谱表征主要的Pb种类,并使用模拟的胃酸消化法测定Pb的生物可及性变化。在风化期结束时,硫酸铅样品中出现了少量的碳酸铅(占总铅的9%)。铅金属样品的风化导致形成了两种化合物,水铜铁矿(碳酸铅羟基碳酸)和氧化铅,含量很高(每种占总铅的26%)。风化过程中高生物可利用性的碳酸铅(73%生物可及性),水硬铜矿(76%生物可及性)和氧化铅(67%生物可及性)的形成导致两个样品的总体铅生物可及性都有可测量的增加,这是显着的(p = .002)(对于Pb金属样品)。这项研究表明,在潮湿的室内条件下,室内尘埃中常见的Pb化合物可以“老化”成更多可生物利用的形式。

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