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Reversible Stability of Emulsion and Polymer Latex Controlled by Oligochitosan and CO2

机译:寡壳聚糖和CO2控制的乳液和聚合物胶乳的可逆稳定性

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摘要

The addition of salt to a colloid solution ensures that emulsions can be easily separated into two phases and that polymer latexes can be coagulated. The switchable stability of emulsions and polymer latexes would improve the properties for their current applications. A switchable process of salt addition can be achieved using CO2 and switchable water, and it is a novel, benign approach to achieving a switchable ionic strength in an aqueous solution. However, the problem associated with switchable water is that its additives are all synthetic tertiary amines, most of which are harmful to human beings and the environment. Oligochitosan, as a natural product, can also be used as a switchable water additive. In this paper, a new switchable water system using oligochitosan to change the ionic strength was explored for use in several potential industrial applications. The conductivity of the aqueous solution of oligochitosan (0.2 wt.%) was switched from 0.2 to 331 μS/cm through the addition and removal of CO2. Oligochitosan and CO2 were successfully utilized to reversibly break a crude oil emulsion. Polystyrene (PS) latexes could also be reversibly destabilized; the zeta potential of the PS latex changed between −5.8 and −45.2 mV in the absence and presence of CO2 after oligochitosan was dissolved in the PS latex. The use of oligochitosan is a more environmentally friendly means for reversibly separating colloid solutions.
机译:向胶体溶液中添加盐可确保将乳液轻松分为两相,并使聚合物胶乳凝结。乳液和聚合物胶乳的可切换稳定性将改善其当前应用的性能。可以使用CO2和可转换的水来实现盐添加的可转换过程,这是在水溶液中实现可转换的离子强度的一种新颖,良性的方法。但是,与可转换水有关的问题是其添加剂都是合成的叔胺,其中大多数对人类和环境有害。寡壳聚糖,作为天然产物,也可用作可转换的水添加剂。在本文中,探索了一种使用寡聚壳聚糖改变离子强度的新型可切换水系统,可用于多种潜在的工业应用。通过添加和去除CO 2,将低聚壳聚糖水溶液(0.2重量%)的电导率从0.2μS/ cm切换至331μS/ cm。低聚壳聚糖和二氧化碳已成功用于可逆地破坏原油乳液。聚苯乙烯(PS)胶乳也可以可逆地不稳定。在低聚壳聚糖溶解于PS乳胶中之后,在不存在和存在CO2的情况下,PS乳胶的zeta电位在-5.8和-45.2 mV之间变化。寡聚壳聚糖的使用是一种可逆分离胶体溶液的更环保的方法。

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