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Hazardous Waste Management of Buffing Dust Collagen

机译:抛光粉尘胶原蛋白的危险废物管理

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摘要

Buffing Dust Collagen (BDC) is a hazardous waste product of chromium tanning bovine hides. The aim of this study was to investigate whether BDC has the desirable properties required of modern fillers. The microstructural properties of BDC were characterized by elemental analysis (N, Cr O ) of dry residue and scanning electron microscopy (SEM). The BDC was applied (5 to 30 parts by weight) to styrene butadiene rubber (SBR), obtaining SBR-BDC composites. The physicochemical properties of the SBR-BDC composites were examined by Fourier transform infrared analysis, SEM, UV–Vis spectroscopy, swelling tests, mechanical tests, thermogravimetric analysis (TGA), and differential scanning calorimetry (DSC). The biodegradability of the SBR-BDC composites and their thermo-oxidative aging were also investigated. The filler contributed to increase the cross-link density in the elastomer structure, as evidenced by enhanced mechanical strength. The introduction of a filler into the elastomer structure resulted in an increase in the efficiency of polymer bonding, which was manifested by more favorable rheological and mechanical parameters. It also influenced the formation of stable interfacial bonds between the individual components in the polymer matrix, which in turn reduced the release of compact chromium in the BDC filler. This was shown by the absorption bands for polar groups in the infrared analysis and by imaging of the vulcanization process.
机译:抛光粉尘胶原蛋白(BDC)是鞣制铬的牛皮的有害废品。这项研究的目的是研究BDC是否具有现代填料所需的理想性能。通过干燥残留物的元素分析(N,Cr O)和扫描电子显微镜(SEM)对BDC的微观结构特性进行了表征。将BDC(5至30重量份)施加到丁苯橡胶(SBR)上,获得SBR-BDC复合材料。通过傅立叶变换红外分析,SEM,UV-Vis光谱,溶胀测试,机械测试,热重分析(TGA)和差示扫描量热法(DSC)检查了SBR-BDC复合材料的理化性能。还研究了SBR-BDC复合材料的生物降解性及其热氧化老化。填料有助于增加弹性体结构中的交联密度,这可以通过增强的机械强度来证明。将填料引入弹性体结构导致聚合物粘结效率的提高,这表现为更有利的流变学和机械参数。它还影响了聚合物基质中各个组分之间的稳定界面键的形成,从而减少了BDC填料中紧密铬的释放。红外分析中极性基团的吸收带和硫化过程的成像表明了这一点。

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