Dai Tuo, Li Yun, Huang Honghai, Ding Li, Li Jianwei, Geng Haoran, Song Yazhong, Zhao Tao, Zhao Liguang, Gui Hongxing
Hainan Natural Rubber Technology Innovation Center, Rubber Research Institute, Chinese Academy of Tropical Agricultural Science, Haikou 571101, China.
Mengla Tianye Rubber Sales Co., Ltd., Xishuangbanna 666100, China.
Polymers (Basel). 2025 Feb 13;17(4):490. doi: 10.3390/polym17040490.
Natural rubber (NR) is a material with a wide range of industrial and commercial applications, including agriculture, defense, transportation, and domestic use. However, the mechanical properties of natural rubber treated by traditional acid coagulation are limited, which restricts its application in high-end products. Furthermore, the wastewater generated also causes soil acidification. Consequently, there is a necessity to investigate new coagulation methods to enhance the comprehensive performance of natural rubber and reduce environmental pollution. In this work, a novel method for the preparation of environmentally friendly high-performance natural rubber by alkaline protease/calcium chloride coagulation of natural rubber (AC-NR) is reported. The research demonstrates that the products of protein cleavage by alkaline protease together with calcium ions can greatly enhance the cross-linking between rubber particles, form the network structure of natural rubber well. Furthermore, increasing the pH at the isoelectric point of the discharged wastewater reduces the impact on soil acidification. In comparison with those from conventional acid coagulation of natural rubber (A-NR), the tensile strength of AC-NR was increased by 7.9 MPa, the tear strength was increased by 5.3 kN/m, the final temperature rise was lowered by 6.5 °C, and abrasion performance was improved. This study demonstrates that by utilizing the collaborative impact of alkaline protease and calcium chloride on the rubber molecular chain during the coagulation process of natural rubber, environmentally friendly high-performance natural rubber with excellent mechanical properties and reduced environmental pollution can be prepared without the necessity for chemical modification or cumbersome processes, which is conducive to the green development and high-quality pursuit of NR materials.
天然橡胶(NR)是一种具有广泛工业和商业应用的材料,包括农业、国防、交通运输和家庭用途。然而,传统酸凝固法处理的天然橡胶的机械性能有限,这限制了其在高端产品中的应用。此外,产生的废水还会导致土壤酸化。因此,有必要研究新的凝固方法,以提高天然橡胶的综合性能并减少环境污染。在这项工作中,报道了一种通过天然橡胶的碱性蛋白酶/氯化钙凝固制备环保型高性能天然橡胶(AC-NR)的新方法。研究表明,碱性蛋白酶与钙离子一起对蛋白质的裂解产物能够极大地增强橡胶颗粒之间的交联,很好地形成天然橡胶的网络结构。此外,提高排放废水等电点时的pH值可减少对土壤酸化的影响。与传统酸凝固法制备的天然橡胶(A-NR)相比,AC-NR的拉伸强度提高了7.9MPa,撕裂强度提高了5.3kN/m,最终温度上升降低了6.5℃,磨损性能得到改善。本研究表明,通过在天然橡胶凝固过程中利用碱性蛋白酶和氯化钙对橡胶分子链的协同作用,无需化学改性或繁琐工艺即可制备出具有优异机械性能且环境污染小的环保型高性能天然橡胶,这有利于天然橡胶材料的绿色发展和高质量追求。