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首页> 外文期刊>Journal of Materials Science >Superabsorbent polymer composites: Does clay always improve properties?
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Superabsorbent polymer composites: Does clay always improve properties?

机译:高吸收性聚合物复合材料:粘土会始终改善性能吗?

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Clay is frequently incorporated to many materials including superabsorbent polymers (SAPs) to improve their properties. Superior properties have been reported for the SAP composite (SAPC) materials comparing to their clay-free counterparts. However, study of the effect of clay on some of very important requirements of superabsorbents, particularly the residual monomer (RM), has been unnoticed in the academic literature. Here, we report preparation of a series of SAPCs via a conventional solution polymerization of partially neutralized acrylic acid in the presence of common MMT clay (Na-montmorillonite). The products were characterized by FTIR spectroscopy, differential scanning calorimetry, thermogravimetric, thermomechanical, and rheometrical analyses. The RM content of the samples was determined by high performance liquid chromatography. It was found that the clay had unfavorable effects on the crosslinking polymerization process. This fact was observed as declining mechanical strength of the SAPCs in both dried and swollen states, increased swelling capacity, decreased gel fraction, and increased RM content. For instance, RM of clay-free sample was 740 ppm which was continuously increased with level of the clay incorporated. It surprisingly reached to ~34,000 ppm at clay content of 12%. The undesirable function of clay was attributed to inactivation and barrier effects of clay incorporated to the polymerization medium. These unwanted effects were more pronounced at high clay content. However, overall thermostability of SAPCs was improved comparing to the non-composite counterpart. It was concluded that such conventionally prepared SAPCs, in spite of the previously reported claims, could not be suitable candidates for hygienic applications, particularly those prepared with high clay percentages.
机译:粘土经常掺入许多材料中,包括超吸收性聚合物(SAP),以改善其性能。据报道,SAP复合材料(SAPC)与不含粘土的同类材料相比具有优越的性能。然而,在学术文献中尚未注意到对粘土对超吸收剂的一些非常重要的要求,特别是残余单体(RM)的影响的研究。在这里,我们报告了在普通MMT粘土(钠蒙脱土)存在下,通过部分中和的丙烯酸的常规溶液聚合制备一系列SAPC的方法。通过FTIR光谱,差示扫描量热法,热重分析,热机械分析和流变分析对产品进行了表征。样品的RM含量通过高效液相色谱法测定。发现该粘土对交联聚合过程具有不利的影响。在干燥和溶胀状态下,SAPC的机械强度均下降,溶胀能力提高,凝胶分数降低和RM含量增加,可以观察到这一事实。例如,无粘土样品的RM为740 ppm,随掺入的粘土含量的增加而不断增加。当粘土含量为12%时,它令人惊讶地达到了约34,000 ppm。粘土的不良功能归因于掺入聚合介质中的粘土的失活和阻挡作用。在高粘土含量下,这些不良影响更为明显。但是,与非复合材料相比,SAPC的整体热稳定性得到了改善。结论是,尽管有先前报道的权利要求,但这种常规制备的SAPCs不适合用于卫生应用,特别是那些以高粘土含量制备的SAPC。

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