INFLUENCE OF CHEMICAL MODIFICATION ON THE COMPOSITION AND PROPERTIES OF ORGANOMINERAL COMPOSITE MATERIALS

U.Zh. Dzhusipbekov, G.O. Nurgalieva, Z.K. Bayakhmetova, Hamdi Temel
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Abstract

The structure characteristic and polyfunctionality of humic substances makes it possible to obtain new products by chemical modification. The aim of this work is to study the regularities of sodium humate modification processes with phosphogypsum and phosphogypsum with polyacrylamide (PAA) mixture, to establish the composition and properties of obtained organomineral composite materials. Methods. Chemical analysis, infrared spectroscopy, differential thermal analysis and scanning electron microscopy. Results and discussion. The possibility of obtaining new types of products by modifying sodium humate with phosphogypsum and its mixture with PAA is shown. The dependence of the composition and properties of obtained organomineral composite materials on the modifier nature has been revealed. The chemical modification has been shown to increase the content of COOH groups to 0.24 mg-eq/g, phenolic OH groups to 1.83 mg-eq/g, total pores to 0.44 cm3/g, static exchange capacity to 27.25 mg-eq/g, P2O5 to 1.34%, nitrogen up to 1.71% and the humic acid yield - up to 42.83%. The reaction between sodium humate and phosphogypsum proceeds leads to an increase in the content of total, digestible and water-soluble forms of P2O5. Conclusion. It has been established that the use of phosphogypsum for humic substances modification contributes to the phosphorus production waste processing. Organo-mineral materials obtained by modifying sodium humate acquire growth-stimulating, fertilizing, reclamation, water-retaining, and sorption properties. The complexity and multi-component composition of synthesized compositions is determined by DTA, IR, SEM methods. It has been shown that when sodium humate is modified with phosphogypsum, ion exchange reactions and complex formation occur.
化学改性对有机复合材料组成和性能的影响
腐殖质的结构特点和多功能性为化学改性获得新产品提供了可能。研究了磷石膏和磷石膏与聚丙烯酰胺(PAA)混合物改性腐植酸钠的工艺规律,确定了所得有机复合材料的组成和性能。方法。化学分析,红外光谱,差热分析和扫描电子显微镜。结果和讨论。指出了磷石膏及其与PAA混合改性腐植酸钠制备新型产品的可能性。揭示了改性剂性质对有机复合材料组成和性能的影响。化学改性后,羧基含量为0.24 mg-eq/g,酚基含量为1.83 mg-eq/g,总孔隙量为0.44 cm3/g,静态交换容量为27.25 mg-eq/g, P2O5含量为1.34%,氮含量为1.71%,腐植酸收率为42.83%。腐植酸钠与磷石膏之间的反应导致P2O5的总、可消化和水溶性形式的含量增加。结论。利用磷石膏对腐殖质进行改性,有利于磷生产废弃物的处理。通过改性腐植酸钠获得的有机矿物材料具有刺激生长、施肥、回收、保水性和吸附性能。采用差热分析、红外光谱、扫描电镜等方法测定了合成产物的复杂性和多组分组成。研究表明,磷石膏对腐植酸钠进行改性后,会发生离子交换反应,形成络合物。
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