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Nature of compounds formed in phase of strongly basic anion exchanger in contact with Fe-2(SO4)(3) solutions

机译:与Fe-2(SO4)(3)溶液接触的强碱性阴离子交换剂相中形成的化合物的性质

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摘要

The thermochemical changes taking place in the phase of a Fe(III)-containing strongly basic anion exchanger (AV-17) are investigated by using Mossbauer, IR, and EPR spectroscopy. During the heating of Fe(Ill)-containing resin in air up to 200 degrees C, redox processes in the polymer phase take place. On boiling in water, the jarosite-type compounds in the polymer are converted into higher dispersed beta-FeOOH particles. After sorption-boiling in water cycles in the polymer phase, relatively massive and magnetically ordered beta-FeOOH particles are formed. A portion of the beta-FeOOH particles remains in the highly dispersed superparamagnetic state distributed in the narrow pores of the exchanger. It is suggested that the Fe(III) ion sorption from Fe-2(SO4)(3) solutions by an exchanger takes place through the formation in the polymer phase of solid ultrafine particles of jarosite mineral-type compounds. (c) 2005 Wiley Periodicals, Inc.
机译:使用Mossbauer,IR和EPR光谱研究了含Fe(III)的强碱性阴离子交换剂(AV-17)相中发生的热化学变化。在空气中将含铁(III)的树脂加热到最高200摄氏度的过程中,在聚合物相中发生了氧化还原过程。在水中沸腾时,聚合物中的黄钾铁矾型化合物转化为更高分散的β-FeOOH颗粒。在聚合物相中的水循环中发生吸附沸腾后,会形成相对较大且呈磁性排列的β-FeOOH颗粒。一部分β-FeOOH颗粒保持高度分散的超顺磁性状态分布在交换器的狭窄孔中。建议通过交换剂从Fe-2(SO4)(3)溶液中吸附Fe(III)离子是通过在黄铁矿矿物型化合物的固体超细颗粒的聚合物相中形成而发生的。 (c)2005年Wiley Periodicals,Inc.

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