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Production of virgin coconut oil via water soluble materials and centrifugation method

机译:通过水溶性材料生产纯椰子油及其离心方法

摘要

The traditional ways of breaking Virgin Coconut Oil (VCO) using fermentation and heating are disadvantageous from both economic and environmental perspectives.In this study,the potentials of the water soluble,oil soluble materials that are environmentally friendly materials and centrifugation methods in demulsification of Virgin Coconut Oil (VCO).The effect of alcohols (methanol and ethanol) added to demulsification via water soluble material and centrifugation methods were also investigated.The study began with some characterization studies to provide understandings of fundamental issues such as formation, formulation and breaking of emulsions.The aim was to obtain optimized operating conditions as well as fundamental understanding of oil-in-water emulsion stability upon which further developing on demulsification process that could be developed.It was found that emulsion demulsification was related to some parameters such as water soluble concentration(0.5 v/v %),centrifugation speed (2,000 – 8,000 rpm) and processing time (30 – 90 minutes).Experimental results found that centrifugation method can enhance the demulsification in a very short time compared to the conventional fermentation method.The results obtained in this study have exposed the capability of centrifugation method in demulsification of Virgin Coconut Oil (VCO) emulsion.Further works are nevertheless required to provide deeper understanding of the mechanisms involved to facilitate the development of an optimum emulsion breaking system applicable to the industry.
机译:从经济和环境的角度来看,使用发酵和加热来破坏初榨椰子油(VCO)的传统方法都是不利的。在这项研究中,作为环保材料的水溶性,油溶性材料和离心方法在初榨破乳中的潜力椰子油(VCO)。还研究了通过水溶性物质和离心方法向破乳过程中添加酒精(甲醇和乙醇)的作用。该研究首先进行了一些表征研究,以提供对基础问题的理解,例如形成,配制和破乳。目的是获得最佳的操作条件以及对水包油型乳液稳定性的基本了解,并在此基础上进一步发展可开发的破乳过程。发现乳液的破乳作用与某些参数有关,例如水溶性浓度(0.5 v / v%),离心速度(2,000 – 8,000 rpm)和处理时间(30 – 90分钟)。实验结果表明,与传统的发酵方法相比,离心方法可以在很短的时间内增强破乳效果。本研究结果揭示了离心的能力然而,仍需要进一步的工作来更深入地了解所涉及的机制,以促进开发适用于该行业的最佳破乳剂系统。

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    Khoo Choon Gek;

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  • 年度 2012
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