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首页> 外文期刊>Journal of Chemical Engineering of Japan >Removal of Hexavalent Chromium from Model Tannery Wastewater by Adsorption Using Mongolian Natural Zeolite
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Removal of Hexavalent Chromium from Model Tannery Wastewater by Adsorption Using Mongolian Natural Zeolite

机译:蒙古天然沸石吸附去除制革废水中的六价铬。

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摘要

We applied Mongolian natural zeolite to adsorptive removal of hexavalent chromium contained in tannery wastewater. At first, characterization was carried out for various kinds of natural zeolites obtained from Tsagaan Tsav and Urgon deposits in Dornogovi province, southeast part of Mongolia. From the X-ray diffractometry analysis, the zeolite samples were composed of mordenite, quartz, gismondine, clinoptilolite, and chabazite, and many of the samples contained clinoptilolite, which is the most abundant natural zeolite. The BET surface areas and the pore volumes of the samples were much lower than those of pure zeolites, and ranged from 15 to 160 m~2·g~(-1) and from 0.03 x 10~(-6) to 0.1 x 10~(-6) m~3·g~(-1), respectively. A part of the zeolite samples were modified by a metal cation, barium cation, in order to adsorb hexavalent chromium, which is anion of chromate in aqueous solution. The content of barium in the modified zeolite was much higher than that in the unmodified one, so that the successful zeolite modification could be confirmed. Secondly, batch equilibrium adsorptions of hexavalent chromium from aqueous solution, the model tannery wastewater, by the natural zeolites were carried out. Although the adsorption performances varied with the natural zeolite, all of the zeolites modified by barium cation could adsorb hexavalent chromium favorably and the fractional removal was over 0.9 at maximum, while the unmodified ones could not almost at all. The higher solution pH gave the higher adsorption performance and, then, main adsorbate was CrO_4~(2-), since this species is dominant in higher pH according to the speciation of hexavalent chromate anion. Consequently, we proposed to utilize Mongolian natural zeolite to treat the tannery wastewater containing hexavalent chromium.
机译:我们将蒙古天然沸石用于吸附去除制革废水中所含六价铬。首先,对蒙古东南部多尔诺戈维省的Tsagaan Tsav和Urgon矿床中获得的各种天然沸石进行了表征。通过X射线衍射分析,该沸石样品由丝光沸石,石英,基斯蒙定,斜发沸石和菱沸石组成,并且许多样品包含斜发沸石,这是最丰富的天然沸石。样品的BET表面积和孔体积比纯沸石低得多,范围为15至160 m〜2·g〜(-1)和0.03 x 10〜(-6)至0.1 x 10 〜(-6)m〜3·g〜(-1)。为了吸附六价铬,该沸石样品的一部分被金属阳离子钡阳离子改性,六价铬是水溶液中铬酸根的阴离子。改性沸石中钡的含量比未改性沸石中的钡高得多,因此可以确认成功的沸石改性。其次,利用天然沸石对模型制革废水中的水溶液进行六价铬的间歇平衡吸附。尽管吸附性能随天然沸石的不同而不同,但所有经钡阳离子改性的沸石均能较好地吸附六价铬,其分馏率最高可达0.9以上,而未改性的沸石几乎不能去除。较高的溶液pH值具有较高的吸附性能,然后,主要吸附物为CrO_4〜(2-),因为根据六价铬酸盐阴离子的形态,该物种在较高的pH中占优势。因此,我们建议利用蒙古天然沸石处理含六价铬的制革废水。

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