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Development of adsorbents from used tire rubber Their use in the adsorption of organic and inorganic solutes in aqueous solution

机译:废旧轮胎橡胶吸附剂的开发及其在水溶液中吸附有机和无机溶质的应用

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Using used tire rubber (UTR), carbonaceous adsorbents (CAs) were prepared by chemical treatment of the material with HCl, HNO3 and NaOH aqueous solutions and by heat treatment at 900 °C for 2 h in N2 atmosphere (H900). UTR and the UTR-derived products were first characterized in terms of texture by N2 adsorption at —196 °C and of oxygen surface groups by FT-IR spectroscopy and pH of the point of zero charge (pH_(pzc)). Then, the products were tested as adsorbents of phenol, p-aminophenol, p-nitrophenol, and p-chlorophenol and of chromium, cadmium, mercury and lead in aqueous solution. The development of porosity is very poor in UTR and in the chemically treated products. H900 is the only CA with a better developed porosity, mainly in the regions of meso and macropores. pH_(pzc) is close to 7.0 for most of the CAs. As an exception to the rule, pH_(pzc) is 8.4 for H900. For this CA, the adsorption of all the adsorptives is greater. Usually, adsorption kinetics are fast. This is so in particular for p-nitrophenol and p-chlorophenol, on the one side, and for mercury and lead, on the other side. Adsorption is much higher for mercury and lead than for the remaining adsorptives.
机译:使用废轮胎橡胶(UTR),可通过用HCl,HNO3和NaOH水溶液对材料进行化学处理,并在N2气氛中(H900)在900°C的温度下热处理2小时来制备碳质吸附剂(CAs)。 UTR和UTR衍生产品首先通过-196°C下的N2吸附来表征质地,通过FT-IR光谱学和零电荷点的pH(pH_(pzc))表征氧表面基团。然后,测试产物在水溶液中作为苯酚,对氨基苯酚,对硝基苯酚和对氯苯酚以及铬,镉,汞和铅的吸附剂的能力。 UTR和化学处理产品中的孔隙率发展非常差。 H900是唯一具有较好孔隙率的CA,主要在中孔和大孔区域。对于大多数CA,pH_(pzc)接近7.0。作为规则的例外,对于H900,pH_(pzc)为8.4。对于该CA,所有吸附剂的吸附更大。通常,吸附动力学很快。特别是对于一侧的对硝基苯酚和对氯苯酚,以及另一侧的汞和铅尤其如此。汞和铅的吸附量比其余的吸附剂高得多。

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