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Starch/PVA hydrogels for oil/water separation

机译:用于油/水分离的淀粉/ PVA水凝胶

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摘要

PVA polymers have been well-known as water-absorbing materials but their brittle nature hinders their applicability. In this study, we enhanced the strength of hydrogel and its water-absorbing capabilities by glutaraldehyde-assisted crosslinking of starch with PVA and blending BMIM-BF4 to enhance the plasticity and generate porosity within the hydrogel multiplying the swelling capacity up to 300% and understand the kinetics and mechanism of water absorption based on the structure of the hydrogel. The ability of starch/PVA hydrogel to selectively adsorb water from oil-water emulsions was determined by establishing the underwater oleophobic nature (oil contact angle similar to 153.6 degrees), subjecting the hydrogel to oil-water emulsion to determine the water absorbed. The hydrogels' biodegradable nature was tested by an efficient in-house biotic system and mechanisms for biodegradation have been discussed. The biodegradability (similar to 90%) was determined for 50% starch in PVA sample in 28 days. These properties observed in the hydrogels will find applications in irrigating arid and semi-arid areas and also in developing super-absorbent hydrogels for hygiene-related product development etc. which can be biodegraded in an economic way.
机译:PVA聚合物已被众名人称为吸水性材料,但其脆性性质阻碍了其适用性。在这项研究中,我们通过戊二醛辅助交联的淀粉与PVA的辅助交联增强了水凝胶及其吸水能力的强度,并将BMIM-BF4混合增强了水凝胶内的塑性,并在水凝胶内产生孔隙率,使溶胀容量达到300%并理解基于水凝胶结构的吸水性动力学和机制。通过建立水下的疏水性质(类似于153.6度的油接触角)来确定淀粉/ PVA水凝胶从油 - 水乳液中吸附水的能力,使水凝胶对油水乳液进行水乳液以确定吸收的水。通过高效的内部生物系统测试水凝胶的可生物降解性,并讨论了生物降解的机制。在28天内测定50%淀粉在PVA样品中的50%淀粉的生物降解性(类似于90%)。在水凝胶中观察到的这些性质将在灌溉干旱和半干旱区域以及开发用于卫生相关产品开发等的超吸收水凝胶中的应用,这可以以经济方式生物降解。

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