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首页> 外文期刊>Industrial Crops and Products >Novel approach to determine non-rubber content in Hevea brasiliensis: Influence of clone variation on properties of un-vulcanized natural rubber
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Novel approach to determine non-rubber content in Hevea brasiliensis: Influence of clone variation on properties of un-vulcanized natural rubber

机译:霍氏藻菌中非橡胶含量确定非橡胶含量的新方法:克隆变异对未硫化天然橡胶性能的影响

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摘要

The mesostructure and non-rubber content, including proteins and lipids, in natural rubber from three different Hevea brasiliensis clones, namely RRIT408, PB235 and RRIM600, were investigated by a new technique, temperature scanning stress relaxation (TSSR), along with other relevant methods It was found that the significant relaxation spectrum of TSSR was found as broad peaks in the temperature ranges of 58-60 degrees C which indicated level of interaction for proteins and lipids at the chain terminals. This directly relates to storage hardening phenomenon. Furthermore, we found that the molecular mass distribution is bimodal for RRIM600 clone while it is unimodal for RRIT408 and PB235. Furthermore, the RRIM600 clone contained high aggregates and non rubber components that enhanced the mechanical and rheological properties and caused strong storage hardening phenomenon. This might be attributed to the high fraction of short chains providing many chain ends, and to the total content of proteins and lipids. However, the unimodal rubber from PB235 clone exhibited poorer mechanical and physical properties and less storage hardening than those from RRIM600 and RRIT408. This might be attributed to lower content of proteins and lipids and longer molecular chains (low number of chain ends), causing less formation of aggregates or lower gel content.
机译:通过新技术研究了来自三种不同HEVEA Brasiliensis克隆的天然橡胶,包括蛋白质和脂质,包括蛋白质和脂质,包括来自三种不同的HEVEA Brasiliensis克隆的蛋白质和脂质,以及其他相关方法以及其他相关方法发现TSSR的显着弛豫谱被发现为58-60摄氏度的温度范围的宽峰,这表明链末端的蛋白质和脂质的相互作用水平。这直接涉及储存硬化现象。此外,我们发现分子量分布是RRIM600克隆的双峰,而RRIT408和PB235是单峰的。此外,RRIM600克隆含有高聚集体和非橡胶组分,可增强机械和流变性能,并引起强大的储存硬化现象。这可能归因于提供许多链末端的高链条的高分,以及蛋白质和脂质的总含量。然而,来自PB235克隆的单峰橡胶表现出较差的机械和物理性质,并且比来自RRIM600和RRIT408的储存硬化较少。这可能归因于蛋白质和脂质的含量较低,并且较长的分子链(链末端的少量),导致聚集体或较低的凝胶含量的形成。

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