Soluble protein-free natural rubber latex prepared using guanidine hydrochloride as a denaturant

IF 1.2 4区 化学 Q4 POLYMER SCIENCE Journal of Rubber Research Pub Date : 2023-04-09 DOI:10.1007/s42464-023-00198-3
Nurul Hayati Yusof, Suhawati Ibrahim, Kim Song Tan, Ruhida Ab Rahim, Fatimah Rubaizah Mohd Rasdi
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Abstract

Purified natural rubber was successfully prepared in the presence of a denaturant named guanidine hydrochloride (GNH). In this work, fresh field natural rubber (FNR) latex was used as a starting material. The conditions of purification such as the effect of GNH concentrations, incubation time and temperature were studied. The results showed that the soluble protein-free natural rubber (SPFNR) contained undetectable extractable (EP) and antigenic (AP) protein, and very low nitrogen content, i.e. 0.013 wt% at GNH concentration of 0.1 phr, after 1-h incubation at 30 °C. These results were supported by the Fourier transform infrared (FTIR) spectroscopy, where the absorption peak of the amine functional group (proteins) disappeared substantially and the fatty acid ester functional group (lipids) decreased swiftly after purification. Transmission electron microscope (TEM) images showed that the non-rubber component matrix disappeared in the SPFNR film. Less water hydration was obtained for the SPFNR film, which was reflected by a lower water uptake percentage than the FNR film. Furthermore, the thermal property determined by a thermogravimetric analyzer (TGA) showed that FNR and SPFNR films were comparable to each other. The stress at break showed that the FNR film was superior to the SPFNR film. Interestingly, the strain at break was about similar for both films, indicating the SPFNR film has softer and more elastic characteristics.

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以盐酸胍为变性剂制备的可溶性无蛋白天然胶乳
在盐酸胍(GNH)变性剂的存在下,成功制备了纯化的天然橡胶。本研究以新鲜天然橡胶(FNR)乳胶为起始材料。研究了GNH浓度、培养时间、温度等条件对纯化效果的影响。结果表明,在GNH浓度为0.1 phr的条件下,30℃培养1 h后,可溶性无蛋白天然橡胶(SPFNR)中含有无法检测的可提取(EP)和抗原(AP)蛋白,氮含量极低,为0.013 wt%。傅里叶变换红外光谱(FTIR)支持了这些结果,纯化后胺官能团(蛋白质)的吸收峰基本消失,脂肪酸酯官能团(脂类)的吸收峰迅速下降。透射电镜(TEM)图像显示,非橡胶成分基体在SPFNR薄膜中消失。与FNR膜相比,SPFNR膜的吸水率较低,水化效果较差。此外,热重分析仪(TGA)对FNR和SPFNR薄膜的热性能进行了测试。断裂应力测试结果表明,FNR薄膜的断裂应力优于SPFNR薄膜。有趣的是,两种薄膜的断裂应变大致相似,表明SPFNR薄膜具有更柔软和更有弹性的特性。
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来源期刊
Journal of Rubber Research
Journal of Rubber Research 化学-高分子科学
自引率
15.40%
发文量
46
审稿时长
3 months
期刊介绍: The Journal of Rubber Research is devoted to both natural and synthetic rubbers, as well as to related disciplines. The scope of the journal encompasses all aspects of rubber from the core disciplines of biology, physics and chemistry, as well as economics. As a specialised field, rubber science includes within its niche a vast potential of innovative and value-added research areas yet to be explored. This peer reviewed publication focuses on the results of active experimental research and authoritative reviews on all aspects of rubber science. The Journal of Rubber Research welcomes research on: the upstream, including crop management, crop improvement and protection, and biotechnology; the midstream, including processing and effluent management; the downstream, including rubber engineering and product design, advanced rubber technology, latex science and technology, and chemistry and materials exploratory; economics, including the economics of rubber production, consumption, and market analysis. The Journal of Rubber Research serves to build a collective knowledge base while communicating information and validating the quality of research within the discipline, and bringing together work from experts in rubber science and related disciplines. Scientists in both academia and industry involved in researching and working with all aspects of rubber will find this journal to be both source of information and a gateway for their own publications.
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