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Super water absorbing polymeric gel from chitosan, citric acid and urea: Synthesis and mechanism of water absorption

机译:来自壳聚糖,柠檬酸和尿素的超水吸收聚合物凝胶:用于吸水的合成和机制

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摘要

A new superabsorbent with maximum water absorption capacity of similar to 1250 g/g is prepared by hydrothermal synthesis from sustainable and biodegradable resources such as chitosan, citric acid and urea (denoted as 'CHCAUR'). CHCAUR is characterized extensively by various analytical techniques such as PXRD, SSNMR, FTIR, and TGA. Pure and saline water absorption study showed that CHCAUR could be a better adsorbent compared to the super absorbent polymer (SAP) used in commercial diaper material. The mechanism of water absorption is shown to arise out of a combination of electrostatic attraction of water to the ionic crosslinks and the presence of macropores as well as undulated surface due to the formation of nanofibrous bundles. When applied to soil CHCAUR was found to decrease water evaporation rate significantly.
机译:通过可持续和可生物降解资源如壳聚糖,柠檬酸和尿素(表示为“Chcaur”),通过水热合成制备具有相似的最大吸水能力的新超吸收剂。 Chcaur是通过各种分析技术进行广泛的特征,如PXRD,SSNMR,FTIR和TGA。 纯净和盐水吸水性研究表明,与商业尿布材料中使用的超吸收性聚合物(SAP)相比,CHCaR可以是更好的吸附剂。 除了形成纳米纤维束的形成之外,水吸收机理被出现出水与离子交联的静电吸引和麦克波孔的存在以及出现的表面的存在。 当施用于土壤中,发现显着降低水蒸发速率。

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