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首页> 外文期刊>Journal of Chemical Engineering of Japan >Adsorption Behavior of Lignophenol Compounds and Their Dimethylamine Derivatives Prepared from Rice and Wheat Straws for Precious Metal Ion
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Adsorption Behavior of Lignophenol Compounds and Their Dimethylamine Derivatives Prepared from Rice and Wheat Straws for Precious Metal Ion

机译:稻麦秸秆制备的木质素酚类化合物及其二甲胺衍生物对贵金属离子的吸附行为

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摘要

References(18) Cited-By(3) Lignophenol-based adsorbents were prepared from rice and wheat straws and further modified by immobilization of dimethylamine groups. The adsorption behavior of the substrates for various metal ions in hydrochloric acid solution was studied. The lignophenol adsorbents selectively adsorbed Au(III) over the entire range of hydrochloric acid concentrations tested but showed no affinity for base metal ions. Adsorption of Au(III), Pd(II), and Pt(IV) on the dimethylamine-modified adsorbents was also unaffected by the presence of base metal ions. The highest loading capacity was observed for Au(III) in the case of all adsorbents; this could be primarily explained by the facile reduction of Au(III) to Au(0). The electrostatic interactions between protonated amine groups and anionic chloro complexes of Pd(II) and Pt(IV) in acidic chloride media was proposed as the main adsorption mechanism.
机译:参考文献(18)被引用的By(3)木质素酚基吸附剂是从稻草和小麦秸秆制备的,并通过固定二甲胺基团进一步改性。研究了基质在盐酸溶液中对各种金属离子的吸附行为。在测试的整个盐酸浓度范围内,木质素酚吸附剂选择性吸附Au(III),但对贱金属离子没有亲和力。贱金属离子的存在也不会影响Au(III),Pd(II)和Pt(IV)在二甲胺改性的吸附剂上的吸附。在所有吸附剂的情况下,Au(III)的负载量最高。这主要可以通过将Au(III)轻松还原为Au(0)来解释。质子化胺基与酸性氯化物介质中Pd(II)和Pt(IV)的阴离子氯配合物之间的静电相互作用被认为是主要的吸附机理。

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