Influence of Salt Concentration on Alkaline Extracted Refined Kappa- carrageenan and Its Characterization

A. P, Preethy Paul, R. M., Jeanine Joy, R. Anandan, S. Mathew
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Abstract

Kappaphycus alverazii remains as a predominant source of kappa-carrageenan which is farmed extensively in Indonesia, Philippines and South East Asia. The current research focuses on the influence of concentration of salts and approach to dialysis on properties of carrageenan. Carrageenan due to its pronounced gelling and viscosifying properties, has gained significant usage in the areas of food, cosmetics, textiles, pharmaceutics, biomedicine, and numerous others. The process of extraction was conducted in a hot, alkaline condition at 80 oC for a duration of 2 hours. The alkaline substance used was KCl with 2% and 4% concentration and solvent to seaweed ratio was 20:1.Further, the resultant extracted samples were subjected to dialysis to evaluate the effect of dialysis on the quality of carrageenan. The absorbance peak at 849 cm–1 from Fourier Transform Infrared-Spectroscopy (FTIR) at all extraction conditions indicated D-galactose-4 sulphate related to kappa carrageenan obtained with no traces of \(\mu\)-precursor. The study demonstrated that the concentration of salts and the approach of dialysis have influenced the quality of yield, viscosity, gel strength, moisture content and ash content for the extracted carrageenan, which remains ideal for commercial applications.
盐浓度对碱提精制Kappa-卡拉胶的影响及其表征
Kappaphycus alverazii仍然是kappa- carrage胶的主要来源,在印度尼西亚,菲律宾和东南亚广泛种植。目前的研究主要集中在盐的浓度和透析方式对卡拉胶性能的影响。卡拉胶由于其显著的胶凝和增粘特性,在食品、化妆品、纺织品、制药、生物医药和许多其他领域获得了重要的应用。提取过程在80℃的热碱性条件下进行,时间为2小时。使用的碱性物质为氯化钾和2% and 4% concentration and solvent to seaweed ratio was 20:1.Further, the resultant extracted samples were subjected to dialysis to evaluate the effect of dialysis on the quality of carrageenan. The absorbance peak at 849 cm–1 from Fourier Transform Infrared-Spectroscopy (FTIR) at all extraction conditions indicated D-galactose-4 sulphate related to kappa carrageenan obtained with no traces of \(\mu\)-precursor. The study demonstrated that the concentration of salts and the approach of dialysis have influenced the quality of yield, viscosity, gel strength, moisture content and ash content for the extracted carrageenan, which remains ideal for commercial applications.
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