ENTHALPY OF INTERACTION OF ION-EXCHANGE HETEROGENEOUS MEMBRANES AND THEIR GRANULAR ANALOGUES WITH AMMONIUM NITRATE SOLUTION

IF 0.6 Q4 CHEMISTRY, MULTIDISCIPLINARY
S. Niftaliev, Y. Peregudov, O. Kozaderova, Kseniya B. Kim
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引用次数: 0

Abstract

Ion-exchange membranes are widely used for extraction, separation and concentration of aqueous nitrogen-containing solutions. In the study the heterogeneous ion-exchange membranes of cationic type- MK-40, Ralex CM (H) -PP, MK-41 – and anionic type - MA-41, Ralex AM (H) -PP and also their granular analogues – cation exchanger  KУ-2·8 and anion exchanger AB-17·8 were used. Sorption of nitrate ions and ammonium ions was conducted from the ammonium nitrate solution with concentration of 0.012 mole / dm³. To determine sorption thermochemical characteristics of the studied ions the calorimetric method was used. It was found that for all the studied types of membranes and ion exchangers the processes were accompanied by heat evolution. From the calorimetric measurements the thermokinetic interaction curves of cation-exchange membranes and KУ-2×8 with the ammonium nitrate solution and anion-exchange membranes and AB-17×8 with the solution of the same salt were obtained. According to the curves the power of heat evolution and time of the process were determined. It was shown that the ion exchangers KУ-2·8 and AB-17·8 are characterized by a longer time to achieve the maximum of heat evolution and process time than for the similar membranes. This fact is explained by the different number and accessibility of the functional groups in the membranes and ion exchangers. From the thermo-kinetic curves the enthalpies of interaction were calculated. The process of the interaction between the granular ion exchangers and ions is characterized by higher values of the enthalpy than for the membranes which large steric effects are common for. Saline concentration, nature of exchangeable ions and type of functional groups of the ion exchanger and also its moisture content influence the enthalpy value. Experimental calorimetric data indicated that the energy costs connected with the effects of dehydration and conformational changes in the sorbent polymer chains do not overlap the exothermic sorption effect. The calorimetric method is informative to determine the nature and mechanism of sorption.
离子交换非均相膜及其颗粒类似物与硝酸铵溶液的相互作用焓
离子交换膜广泛用于含氮水溶液的萃取、分离和浓缩。在本研究中,使用了阳离子型-MK-40、Ralex CM(H)-PP、MK-41和阴离子型-MA-41、Ralex AM(H)-P P的非均相离子交换膜及其颗粒类似物——阳离子交换器KУ-2.8和阴离子交换器AB-17.8。从浓度为0.012mol/dm³的硝酸铵溶液中进行硝酸根离子和铵离子的吸附。为了测定所研究离子的吸附热化学特性,使用了量热法。研究发现,对于所有研究类型的膜和离子交换器,其过程都伴随着放热。通过量热测量,获得了阳离子交换膜和KУ-2×8与硝酸铵溶液和阴离子交换膜以及AB-17×8与相同盐溶液的热动相互作用曲线。根据这些曲线,确定了该过程的放热功率和时间。研究表明,离子交换器KУ-2·8和AB-17·8的特点是,与类似膜相比,实现最大放热和处理时间的时间更长。这一事实可以通过膜和离子交换剂中官能团的不同数量和可及性来解释。根据热动力学曲线计算了相互作用的焓。颗粒离子交换剂和离子之间的相互作用过程的特征是焓值比大空间效应常见的膜的焓值更高。盐浓度、可交换离子的性质、离子交换器的官能团类型及其含水量影响焓值。实验量热数据表明,与脱水和吸附剂聚合物链构象变化的影响相关的能量成本与放热吸附效应不重叠。量热法可用于确定吸附的性质和机理。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
1.40
自引率
44.40%
发文量
83
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