Comparative Studies on Solubility and Thermo Dynamics Properties of Natural Rubber Filled with CB/CPKS and CB/APKS Fillers

M. Dosu, Ola Dapo, Odidi Donald Okpo, Adewuyi Sulaiman Olalekan, Egharevba Owen, Ehis-Iyoha Esohe, M. Dauda, Oseghale Faithful, Okpara Efe Godwin, Okoh Kenneth, Abimbade Sunday Felix
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Abstract

In this research, the comparative studies on solubility and thermodynamics properties of natural rubber vulcanizates filled with blends of activated palm kernel shell and carbonized palm kernel shell has been investigated. Palm Kernel Shell (PKS) was locally sourced. washed and sun dried to remove accompanying and moisture. The PKS was then pulverized to particle size, carbonized at 600°C for one hour (1hr) using Carbolite furnaces and chemically activated using 0.1M H3PO4 and 0.1M KOH solutions. The NR-filler loading concentrations of CB/APKS and CB/CPKS were compounded using two-roll mill. The solubility was done using three different solvents of water, kerosene and petrol respectively. The solubility results obtained for CB/APKS and CB/CPKS has no significance difference as the temperature varies when immersed in water. The solubility values observed for CB/APKS and CB/CPKS ranges from 1.06g to 1.19g and 1.03g to 1.19g across the samples respectively. This shows that since the filler is an organic substance, it has little or no affinity for water. In the case of kerosene and petrol, both are organics and the filler is an organic substance which follows the statement ‘like-dissolves-like’ as the temperature increases, the absorption of kerosene is lower than that of petrol. The results recorded for kerosene across the samples of CB/APKS and CB/CPKS ranges from 1.18g to 4.37g and 2.02g to 4.79g while the results for petrol ranges from 2.25g to 4.92g and 2.51g to 4.88g respectively. This may be due to the fact that petrol is volatile and flammable compared to kerosene. The results of the activation energy were a reflection of the solvent’s permeability except for water which showed contrary results. The results of the activation energy obtained for the three solvents across CB/APKS and CB/CPKS were 5.55 KJ/mol for water, kerosene with 9.48 KJ/mol and petrol with 13.61 KJ/mol respectively. The results observed for water might be due to its nature as the universal solvent being entirely different from other solvents in terms of reactivity and anomalous property. This means polar solvents dissolve polar molecules while nonpolar solvents dissolve nonpolar molecules. This research shows that both CB/APKS and CB/CPKS possess great potential in rubber system.
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CB/CPKS和CB/APKS填充天然橡胶溶解度和热力学性能的比较研究
本研究对活化棕榈仁壳和碳化棕榈仁壳共混物填充天然橡胶硫化胶的溶解度和热力学性能进行了对比研究。棕榈仁壳(PKS)是本地采购的。洗净后晒干,去除伴随的水分。然后将PKS粉碎至颗粒大小,使用炭石炉在600°C下碳化1小时(1hr),并使用0.1M H3PO4和0.1M KOH溶液进行化学活化。采用双辊轧机对CB/APKS和CB/CPKS的nr填料加载浓度进行复合。分别用水、煤油和汽油三种不同的溶剂来测定其溶解度。CB/APKS和CB/CPKS在水中的溶解度随温度的变化无显著差异。CB/APKS和CB/CPKS的溶解度分别为1.06g ~ 1.19g和1.03g ~ 1.19g。这表明,由于填料是一种有机物质,它对水的亲和力很小或没有。以煤油和汽油为例,两者都是有机物,填充物是一种有机物质,符合“类-溶-类”的说法,随着温度的升高,煤油的吸收率低于汽油。CB/APKS和CB/CPKS样品中煤油的记录结果分别为1.18g至4.37g和2.02g至4.79g,而汽油的结果分别为2.25g至4.92g和2.51g至4.88g。这可能是因为与煤油相比,汽油易挥发且易燃。活化能的结果反映了溶剂的渗透性,但水的结果相反。三种溶剂在CB/APKS和CB/CPKS上的活化能分别为:水(5.55 KJ/mol)、煤油(9.48 KJ/mol)和汽油(13.61 KJ/mol)。对水所观察到的结果可能是由于它作为通用溶剂的性质,在反应性和异常性质方面与其他溶剂完全不同。这意味着极性溶剂溶解极性分子,而非极性溶剂溶解非极性分子。研究表明,CB/APKS和CB/CPKS在橡胶体系中都具有很大的应用潜力。
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