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Opuntia ficus-indica is an excellent eco-friendly biosorbent for the removal of chromium in leather industry effluents

机译:Apuntia Ficus-indica是一种优异的生态友好的生物吸附剂用于去除皮革工业流出物中的铬

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摘要

In Brazil, the leather industry is an important economic segment moving around U$ 3 billions of dollars a year. However, high amounts of water are requested to transform skin animals into leather, causing high wastewater amounts to be consequently produced. A major problem is attached to the presence of chromium in the wastewater from the tanning process. Chromium is a heavy metal potentially toxic both to the environment and to the human health. In order to control the levels of chrome dumped into the environment, Brazilian agencies require the treatment of effluents by the generating source. Thus, this study aimed to develop an alternative method to the removal of chromium in wastewater from the leather industry using the Opuntia ficus-indica biomass as eco-friendly biosorbent. Crude waste samples were collected in a tannery stabilization pond for chromium quantification and further treatments. The powdered Opuntia ficus-indica was obtained from species collected in Pernambuco, Brazil, and its physical parameters and pHPCZ were characterized. Adsorptions studies and acute toxicity were also carried out. The biomass remaining after the sorption was analyzed through scanning electron microscopy and Fourier-transform infrared spectroscopy. The chromium content was above the limit allowed by the Brazilian regulatory agency. In sorption studies, biomass was able to remove 74.8% and 84.88% of Cr (III) using 2.0 g and 4.0 g of biomass, respectively. The surface of biomass is very favorable to biosorption and the chemical bindings among oxygen atoms present in the chemical components of this biomass and the heavy metal was confirmed through infrared spectrum. This study proved that Opuntia ficus-indica is effectively biosorbent to chromium, promising and with low costs for the leather industry, able to reduce its ecotoxicity as proven by chemical and biological assays.
机译:在巴西,皮革行业是一年围绕1美元的重要经济部门。然而,要求大量的水将皮肤动物转化为皮革,从而产生高废水量。从鞣制过程中,在废水中存在铬的存在。铬是对环境和人类健康潜在毒性的重金属。为了控制倾倒环境的镀铬水平,巴西机构需要通过发电来治疗流水。因此,本研究旨在使用仙人掌榕生物量作为环保生物测量剂从皮革工业中从皮革行业中除去铬的替代方法。在制革稳定池中收集粗废物样品,用于铬定量和进一步处理。粉末仙人掌曲面籼稻是从佩尔南多,巴西的物种中获得的,其物理参数和PHPCZ的特征在于。还进行了adsorptions研究和急性毒性。通过扫描电子显微镜和傅里叶变换红外光谱分析吸附后剩余的生物质。铬含量高于巴西监管机构允许的极限。在吸附研究中,生物质能够分别使用2.0g和4.0g生物质去除74.8%和84.88%的Cr(III)。生物质表面对生物吸附性以及在该生物质的化学成分中存在的氧原子中的化学结合,通过红外光谱证实了重金属。本研究证明,仙海棠型籼稻有效地生物吸附剂,对皮革行业的有前途和低成本,能够通过化学和生物学测定来降低其生态毒性。

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