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首页> 外文期刊>Polymer Composites >Study on Superabsorbent Composite.XI.Effect of Thermal Treatment and Acid Activation of Attapulgite on Water Absorbency of Poly(acrylic acid)/Attapulgite Superabsorbent Composite
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Study on Superabsorbent Composite.XI.Effect of Thermal Treatment and Acid Activation of Attapulgite on Water Absorbency of Poly(acrylic acid)/Attapulgite Superabsorbent Composite

机译:十一。凹凸棒石的热处理和酸活化对聚丙烯酸/凹凸棒石超吸收剂复合材料吸水率的影响

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摘要

The effect of acid activation and thermal treatment of attapulgite on water absorbency of superabsorbent composite were investigated.Under the same preparation conditions,superabsorbent composite prepared with natural attapulgite exhibited a water absorbency of 639 g/g and it merely kept 71 % of its initial water absorbency after 5 times of swelling-deswell-ing-reswelling test.However,superabsorbent composites prepared with 2-10 M hydrochloric acid acidified attapulgite and 100-400°C thermal treated attapulgite respectively exhibited the water absorbency of 884-1,241 g/g and 701-1,515 g/g.Also,those superabsorbent composites can keep 87% and 85% of their initial water absorbency after 5 times of swelling-deswelling-reswelling test,respectively.These results showed that,compared with superabsorbent composite prepared with natural attapulgite,the comprehensive water-absorbing properties of poly(acrylic acid)/ attapulgite superabsorbent composites were improved effectively by acid activation and thermal treatment of attapulgite.This improvement of water absor-bencies and gel strength of superabsorbent composite may be due to synthetical factors such as changes in the crystalline structure and the specific surface area and improvement of the number and the activity of hydroxyl groups of attapulgite,which in turn influence the grafting efficiency of monomer,crosslinking density,and the structure of superabsorbent composite network.
机译:研究了凹凸棒石的酸活化和热处理工艺对高吸水复合材料吸水率的影响。在相同的制备条件下,天然凹凸棒土制备的高吸水复合材料吸水率为639 g / g,仅保留初始水的71%。 5次溶胀-溶胀-膨胀试验后的吸水率。然而,由2-10 M盐酸酸化的凹凸棒土和100-400°C热处理的凹凸棒土制备的高吸水复合材料的吸水率分别为884-1,241 g / g和701-1,515 g / g。此外,这些超吸收性复合材料经过5次溶胀-溶胀-溶胀测试后,其初始吸水率分别保持87%和85%。这些结果表明,与天然凹凸棒石制备的超吸收性复合材料相比酸活化能有效提高聚丙烯酸/凹凸棒石高吸水复合材料的综合吸水性能凹凸棒石的离子和热处理。超吸收性复合材料的吸水率和凝胶强度的这种提高可能是由于合成因素引起的,例如晶体结构和比表面积的变化以及羟基的数量和活性的提高。凹凸棒石,继而影响单体的接枝效率,交联密度以及高吸收性复合材料网络的结构。

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