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首页> 外文期刊>International Journal of Environmental Research and Public Health >Synthesis of Minerals with Iron Oxide and Hydroxide Contents as a Sorption Medium to Remove Arsenic from Water for Human Consumption
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Synthesis of Minerals with Iron Oxide and Hydroxide Contents as a Sorption Medium to Remove Arsenic from Water for Human Consumption

机译:合成具有氧化铁和氢氧化物含量的矿物质作为吸附介质以去除水中的砷以供人类消费

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摘要

Arsenic has been classified as a toxic and carcinogenic chemical element. It therefore presents a serious environmental problem in different regions of the country and the world. In the present work, two adsorbent media were developed and evaluated to remove arsenic from water in the Pájaro Verde mine shaft, Huautla, Tlaquiltenango, Morelos. The media were synthesized and characterized, obtaining a surface area of 43.04 m2·g?1 for the goethite and 2.44 m2·g?1 for silica sand coated with Fe(III). To conduct the sorption kinetics and isotherms, a 23 factorial design was performed for each medium in order to obtain the optimal conditions for the factors of arsenic concentration, pH and mass of the adsorbent. The best results were obtained for goethite, with a removal efficiency of 98.61% (C0 of As(V) 0.360 mg·L?1), and an effluent concentration of 0.005 mg·L?1, a value that complies with the modified Official Mexican Standard NOM-127-SSA1-1994 [1] and WHO guidelines (2004) [2]. The kinetic equation that best fit the experimental data was the pseudo-second-order, resulting in the highest values for the constants for synthetic goethite, with a rate constant sorption of 4.019·g·mg?1·min?1. With respect to the sorption isotherms, both media were fitted to the Langmuir-II linear model with a sorption capacity (qm) of 0.4822 mg·g?1 for goethite and 0.2494 mg·g?1 for silica sand coated with Fe(III).
机译:砷已被列为有毒和致癌的化学元素。因此,它在国家和世界的不同地区提出了严重的环境问题。在目前的工作中,开发了两种吸附剂介质,并进行了评估,以从莫雷洛斯州瓦乌特拉,特拉奎特南戈,帕哈罗佛得角的矿井中去除水中的砷。合成并表征了介质,针铁矿的表面积为43.04 m2·g?1,铁(III)包覆的硅砂的表面积为2.44 m2·g?1。为了进行吸附动力学和等温线,对每种介质进行了23个因子设计,以便获得砷浓度,pH和吸附剂质量因素的最佳条件。针铁矿的最佳去除效果为98.61%(As(V)的C0为0.360 mg·L?1),出水浓度为0.005 mg·L?1,该值符合改性官方标准。墨西哥标准NOM-127-SSA1-1994 [1]和WHO指南(2004)[2]。最适合实验数据的动力学方程是拟二阶,因此合成针铁矿的常数最大值最高,吸附速率常数为4.019·g·mg?1·min?1。关于吸附等温线,两种介质均符合Langmuir-II线性模型,针铁矿的吸附量(qm)为0.4822 mg·g?1,Fe(III)涂覆的硅砂的吸附量为(q494)0.2494 mg·g?1 。

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