The Effect of the Fresh Latex Ratio on the Composition and Properties of Bio-Coagulated Natural Rubber
文献类型: 外文期刊
作者: Li, Jianwei 1 ; Huang, Honghai 1 ; Ding, Li 1 ; Dai, Tuo 1 ; Geng, Haoran 1 ; Zhao, Tao 1 ; Zhao, Liguang 1 ; Wu, Fan 1 ; Gui, Hongxing 1 ;
作者机构: 1.Chinese Acad Trop Agr Sci, Rubber Res Inst, Haikou 571101, Peoples R China
2.Hainan Prov Special Nat Rubber Proc Technol Innova, Haikou 571101, Peoples R China
3.Wuhan Univ Technol, Ctr Smart Mat & Devices, State Key Lab Adv Technol Mat Synth & Proc, Wuhan 430070, Peoples R China
关键词: fresh latex; composition; performance; bio-coagulated; natural rubber
期刊名称:POLYMERS ( 影响因子:4.9; 五年影响因子:5.2 )
ISSN:
年卷期: 2025 年 17 卷 16 期
页码:
收录情况: SCI
摘要: By proportionally blending fresh latex from PR107, Reyan 72059, and Reyan 73397, and employing both acid- and enzyme-assisted microbial coagulation methods, this study analyzed the effects of the specific latex formulation on the following: physicochemical properties, non-rubber components, molecular weight and distribution, vulcanization characteristics of compounded rubber, and physical-mechanical properties of vulcanized natural rubber. The results indicate that, compared to acid-coagulated natural rubber, enzyme-assisted microbial coagulated natural rubber exhibits slightly lower levels of volatile matter, impurities, plasticity retention index (PRI), nitrogen content, calcium ions (Ca2+), iron ions (Fe3+), and fatty acid content. Conversely, it demonstrates higher values in ash content, initial plasticity (P0), Mooney viscosity (ML(1+4)), acetone extract, magnesium ions (Mg2+), copper ions (Cu2+), manganese ions (Mn2+), gel content, molecular weight and distribution, and glass transition temperature (Tg). With the increase in the proportion of PR107 and Reyan 72059 fresh latex, the ash content, volatile matter content, fatty acid content, gel content, and dispersion coefficient (PDI) of natural rubber gradually decrease, while the impurity content, PRI, nitrogen content, weight-average molecular weight (Mw), and number-average molecular weight (Mn) gradually increase. Compared to acid-coagulated natural rubber compounds, enzyme-assisted microbial-coagulated natural rubber compounds exhibit higher minimum torque (ML) and maximum torque (MH), but shorter scorch time (t10) and optimum cure time (t90). Furthermore, as the proportion of PR107 and Reyan 72059 fresh latex increases, the ML of the compounds gradually decreases. In pure rubber formulations, enzyme-assisted microbial-coagulated natural rubber vulcanizates demonstrate higher tensile strength, tear strength, modulus at 300%, and Shore A hardness compared to acid-coagulated natural rubber vulcanizates. When the fresh latex ratio of PR107, Reyan 72059, and Reyan 73397 is 1:1:3, the tensile strength and 300% modulus of the natural rubber vulcanizates reach their maximum values. In carbon black formulations, the tensile strength and tear strength of enzyme-assisted microbial-coagulated natural rubber vulcanizates are significantly higher than those of acid-coagulated natural rubber vulcanizates in pure rubber formulations, with the increase exceeding that of other samples.
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