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Adsorption of uranium in the presence of different ions, humic acid and effect of thorium on uranium adsorption by activated carbon

机译:不同离子,腐殖酸存在下铀的吸附以及activated对活性炭吸附铀的影响

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In this study, rice straw-based carbon was prepared and then modified by two acidic and basic oxidizing agents. One oxidized by HNO3, labeled as RSN, and other oxidized by KOH labeled as RSK. The modified carbons (RSN and RSK) were tested in two single-component systems: Removal of U(VI) using RSK and Th(IV) using RSN. Factors affecting U(VI) in three multi-component systems were examined: (i) Co-existing anions and cations, (ii) co-existing Th(IV), and (iii) presence of humic acid (HA). In this concern, different cations under investigation have marginal effect on the adsorption of uranium, except in case of iron ion. Co-existing of iron ions at high levels may compete strongly for the adsorption sites with uranium ions, resulting in a substantial reduction of uranium removal. The prepared carbon showed good selectivity in extracting uranium even in the presence of relatively high concentrations (100 mg/l) of anionic complexing agents and common electrolyte species. In case of multi-component system U(VI)/Th(IV), the capacity of each metal was reduced due to the competition between two ions for sorption sites on carbon surface. In presence of HA, the metal-humic interactions play a very important role in determining the extent of adsorption. It is concluded that multi-species adsorption can be significantly affected by adsorbate interactions and the understanding of these interactions needs great attention in adsorption study in the future.
机译:在这项研究中,制备了稻草基碳,然后用两种酸性和碱性氧化剂对其进行了改性。一种被HNO3氧化,标记为RSN,另一种被KOH氧化,标记为RSK。在两个单组分系统中测试了改性碳(RSN和RSK):使用RSK去除U(VI)和使用RSN去除Th(IV)。研究了在三个多组分系统中影响U(VI)的因素:(i)阴离子和阳离子共存;(ii)Th(IV)共存;(iii)腐殖酸(HA)的存在。考虑到这一点,除了铁离子外,正在研究的不同阳离子对铀的吸附都有边际作用。高含量的铁离子共存可能会与铀离子激烈竞争吸附位点,从而导致铀去除量大大降低。所制备的碳即使在较高浓度(100 mg / l)的阴离子络合剂和常见的电解质种类下,也具有良好的选择性萃取铀。在多组分系统U(VI)/ Th(IV)的情况下,由于两种离子之间对碳表面吸附位的竞争而降低了每种金属的容量。在存在HA的情况下,金属与腐殖酸的相互作用在确定吸附程度方面起着非常重要的作用。可以得出结论,多物种的吸附会受到吸附物相互作用的显着影响,对这些相互作用的理解在未来的吸附研究中需要引起高度重视。

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