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首页> 外文期刊>Chemosphere >Using FTIR to corroborate the identity of functional groups involved in the binding of Cd and Cr to saltbush (Atriplex canescens) biomass
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Using FTIR to corroborate the identity of functional groups involved in the binding of Cd and Cr to saltbush (Atriplex canescens) biomass

机译:使用FTIR确认与Cd和Cr结合到Saltbush(Atriplex canescens)生物量中的官能团的身份

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摘要

Fourier transform infrared (FTIR) studies were performed to confirm the chemical modification of saltbush (Atriplex canescens) biomass and to provide information about the identity and binding characteristics of the chemical groups responsible for the binding of Cd(Ⅱ), Cr(Ⅲ), and Cr(Ⅵ). In addition, studies were performed to determine the optimum time for the binding of the three ions by saltbush biomass, and to study the efficiency of HC1 and sodium citrate as stripping agents. The metal quantification was performed using inductively coupled plasma optical emission spectroscopy (ICP-OES). The results showed that 10 min or less is enough to achieve the maximum metal binding, and that aqueous solutions of 0.1 mM HCl or sodium citrate were enough to strip more than 80% of the bound Cd. It was determined that more than 70% of the bound Cr(Ⅲ) was stripped using 0.1 mM HCl. Chemical modification of carboxyl and ester groups on the biomass was performed. The FTIR results confirmed that the esterification of carboxyl groups and hydrolysis of ester groups in the native biomass had occurred. The direct effect of these modifications on the binding properties of the biomass provided strong evidence that the carboxyl functionality is the main group responsible for binding Cd and Cr(Ⅲ). However, the IR data showed that for Cr(Ⅵ), a different type of functional group is involved.
机译:进行了傅里叶变换红外(FTIR)研究,以证实盐灌木(Atriplex canescens)生物量的化学修饰,并提供有关负责Cd(Ⅱ),Cr(Ⅲ),和Cr(Ⅵ)。另外,进行了研究以确定盐灌木生物质结合三种离子的最佳时间,并研究了HCl和柠檬酸钠作为汽提剂的效率。使用电感耦合等离子体发射光谱法(ICP-OES)进行金属定量。结果表明,10分钟或更短的时间足以达到最大的金属结合力,0.1 mM HCl或柠檬酸钠的水溶液足以剥离80%以上的结合的Cd。经测定,使用0.1 mM HCl可以去除70%以上的结合Cr(Ⅲ)。对生物质上的羧基和酯基进行化学修饰。 FTIR结果证实了天然生物质中已经发生了羧基的酯化和酯基的水解。这些修饰对生物质结合特性的直接影响提供了有力的证据,表明羧基官能团是负责结合Cd和Cr(Ⅲ)的主要基团。但是,IR数据表明,对于Cr(Ⅵ),涉及不同类型的官能团。

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