Beknazarov Kanat, Tokpayev Rustam, Nakyp Abdirakym, Karaseva Yulia, Cherezova Elena, El Fray Miroslawa, Volfson Svetoslav, Nauryzbayev Mikhail
Center of Physical Chemical Methods of Research and Analysis, Faculty of Chemistry and Chemical Technology, Al-Farabi Kazakh National University, Al-Farabi Ave. 71, Almaty 050038, Kazakhstan.
Institute of Polymers, Kazan National Research Technological University, 68 K. Marx Str., 420015 Kazan, Russia.
Polymers (Basel). 2024 Nov 29;16(23):3370. doi: 10.3390/polym16233370.
This study presents data on the use of shungite ore (the Bakyrchik deposit, Kazakhstan) and its concentrate as fillers in elastomer composites based on nitrile butadiene rubber. In addition to carbon, these shungite materials contain oxides of Si, Fe, K, Ca, Ti, Mn, and Al. The shungite concentrate was obtained through a flotation process involving five stages. The chemical composition analysis of these natural fillers revealed that during flotation, the carbon content increased 3.5 times (from 11.0 wt% to 39.0 wt%), while the silicon oxide content decreased threefold (from 49.4 wt% to 13.6 wt%). The contents of oxides of K, Ca, Ti, Mn, and Al decreased by less than 1%, and iron oxide content increased by 40% (from 6.7 wt% to 9.4 wt%). The study explored the impact of partial or full replacement of carbon black (CB) of P 324 grade with the shungite ore (ShO) and the shungite concentrate (ShC) on the vulcanization process and the physical-mechanical properties of the rubber. It was found that replacing CB with ShO and ShC reduces Mooney viscosity ML (1 + 4) 100 °C of the rubber compounds by up to 29% compared to the standard CB-filled sample. The use of the shungite fillers also increased scorch time (t) by up to 36% and cure time (t) by up to 35%. The carbon content in the shungite fillers had little influence on these parameters. Furthermore, it was demonstrated that replacing 5-10 wt% of CB with ShO or ShC improves the tensile strength of the rubber. The results of the flotation enrichment process enable the assessment of how these shungite fillers affect the properties of the composites for producing rubbers with specific characteristics. It was also found that substituting CB with ShO or ShC does not significantly affect the rubber's resistance to standard oil-based media. The findings indicate that Kazakhstan's shungite materials can be used as fillers in rubber to partially replace CB.
本研究展示了关于使用硅碳石矿石(哈萨克斯坦的巴 Kyrchik 矿床)及其精矿作为基于丁腈橡胶的弹性体复合材料填料的数据。除了碳之外,这些硅碳石材料还含有硅、铁、钾、钙、钛、锰和铝的氧化物。硅碳石精矿是通过一个包括五个阶段的浮选过程获得的。对这些天然填料的化学成分分析表明,在浮选过程中,碳含量增加了 3.5 倍(从 11.0 重量%增至 39.0 重量%),而氧化硅含量减少了两倍(从 49.4 重量%降至 13.6 重量%)。钾、钙、钛、锰和铝的氧化物含量减少不到 1%,氧化铁含量增加了 40%(从 6.7 重量%增至 9.4 重量%)。该研究探讨了用硅碳石矿石(ShO)和硅碳石精矿(ShC)部分或全部替代 P 324 级炭黑(CB)对硫化过程以及橡胶物理机械性能的影响。结果发现,与标准 CB 填充样品相比,用 ShO 和 ShC 替代 CB 可使橡胶胶料在 100℃下的门尼粘度 ML(1 + 4)降低多达 29%。使用硅碳石填料还使焦烧时间(t)增加多达 36%,硫化时间(t)增加多达 35%。硅碳石填料中的碳含量对这些参数影响很小。此外,结果表明用 ShO 或 ShC 替代 5 - 10 重量%的 CB 可提高橡胶的拉伸强度。浮选富集过程的结果有助于评估这些硅碳石填料如何影响用于生产具有特定特性橡胶的复合材料的性能。还发现用 ShO 或 ShC 替代 CB 对橡胶耐标准油基介质的性能没有显著影响。研究结果表明,哈萨克斯坦的硅碳石材料可作为橡胶填料用于部分替代 CB。