首页> 外文期刊>Journal of Applied Polymer Science >Adsorption/ion-exchange behavior between a water-insoluble cationic starch and 2-chlorophenol in aqueous solutions
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Adsorption/ion-exchange behavior between a water-insoluble cationic starch and 2-chlorophenol in aqueous solutions

机译:水不溶性阳离子淀粉与2-氯苯酚在水溶液中的吸附/离子交换行为

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摘要

An investigation was undertaken regarding the removal of 2-chlorophenol from solutions using highly crosslinked cationic starch containing a tertiary amine group. The mechanism of removed 2-chlorophenol is affected by the pH of the aqueous phase. The nonionized and ionized species are removed by the adsorption and ion-exchange process, respectively. It has been found that the adsorption process predominated over the initial pH ranging from 2 to 6, the ion-exchange process predominated at initial pH 12, and both processes coexist over the initial pH ranging from 8 to 10. A method is suggested to determine the contribution of the nonionized and ionized species to remove 2-chlorophenol over the test pH range. The adsorption process is initially pH-independent, and the ion-exchange :process is initially pH-dependent. The adsorption and ion-exchange processes are concentration-dependent, endothermic, and follow the Langumir isothermal adsorption. The Delta H is 2.504 kcal/mol for the adsorption process and 3.580 kcal/mol for the ion-exchange process. The ion-exchange capacity is larger than the adsorption capacity. (C) 1998 John Wiley & Sons, Inc. [References: 18]
机译:关于使用含有叔胺基的高度交联的阳离子淀粉从溶液中除去2-氯苯酚的研究。除去2-氯苯酚的机理受水相pH的影响。非离子化和离子化的物质分别通过吸附和离子交换过程去除。已经发现,在初始pH为2至6时,吸附过程占主导;在初始pH为12时,离子交换过程占主导;在初始pH为8至10时,两种过程共存。建议采用一种方法确定在测试pH范围内,非离子化和离子化物质对去除2-氯苯酚的贡献。吸附过程最初与pH无关,而离子交换过程最初与pH无关。吸附和离子交换过程取决于浓度,吸热,并且遵循Langumir等温吸附。对于吸附过程,ΔH为2.504kcal / mol,对于离子交换过程为3.580kcal / mol。离子交换容量大于吸附容量。 (C)1998 John Wiley&Sons,Inc. [参考:18]

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