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Incorporating the recovered carbon black produced in an industrial-scale waste tire pyrolysis plant into a natural rubber formulation

机译:将回收的炭黑掺入工业规模的废轮胎热解厂中生成的,进入天然橡胶配方

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This paper presents the experimental results obtained after incorporating the recovered Carbon Black (rCB) produced in an industrial-scale waste tire pyrolysis plant into a Natural Rubber (NR) formulation. The purpose of this study is to increase the technical knowledge on the use of rCB as a sustainable raw material in the rubber industry. The rCB and virgin Carbon Black (vCB) (ref. N550) under study were characterized using elemental and proximate analyses, X-Ray Fluorescence (XRF), Fourier Transform Infrared (FTIR) spectroscopy, and Scanning Electron Microscopy (SEM) were used, and different measures, including the Brunauer-Emmett-Teller (BET) surface area (S_(BET)), particle size distribution (PSD), specific gravity, and pH, were estimated. The effect of rCB incorporation on the rheological, thermal, structural, and mechanical properties of the NR composites was assessed and compared to those obtained with vCB alone. The NR composites were prepared using different loads of vCB (20, 30, 40, and 50 phr), which was also replaced with rCB at different proportions (0, 50, and 100%). According to the characterization results, rCB offers lower reinforcement properties than vCB, which is attributable to its higher volatile matter and ash contents, higher apparent PSD, lower presence of acidic functional groups, and lower S_(BET). Despite this, interesting performances can be achieved when rCB is partially incorporated into the formulations or by increasing its load in the composites. For instance, when 50% of vCB was replaced with rCB, the values of the aforementioned properties were found to be between those obtained with the NR composites prepared with vCB and rCB. In addition, when increasing the rCB loading, some properties matched the behavior exhibited by vCB alone, thus compensating for the low reinforcement properties of rCB. These results are expected to provide an important impetus to move towards circular economy strategies having very positive impacts from the sustainable perspective.
机译:本文呈现掺入回收在工业规模的废轮胎热解植物产生成天然橡胶(NR)的制剂炭黑(RCB)之后所获得的实验结果。这项研究的目的是增加对使用RCB作为在橡胶工业可持续原料的技术知识。使用元素和邻近分析所研究的RCB和处女炭黑(VCB)(参考文献N550)进行了表征,X射线荧光(XRF),傅立叶变换红外(FTIR)光谱法和扫描电子显微镜(SEM)被用来,和不同的措施,包括布鲁诺 - 埃梅特 - 特勒(BET)表面积(S_(BET)),粒度分布(PSD),比重,和pH值,估计。在NR复合材料的流变学,热,结构和机械性能RCB加入的效果进行了评估,并与单独用VCB所获得的那些。使用VCB(20,30,40,和50份),将其也以不同的比例替换RCB(0,50,和100%)的不同载荷制备NR复合材料。根据表征结果,RCB报价低于VCB,这归因于它的高挥发性物质和灰分含量,更高的表观PSD,酸性官能团的存在下增强性能,并降低S_(BET)。尽管这样,当RCB被部分掺入到制剂中或通过在复合材料中增加其负荷,可以实现有趣的性能。例如,当VCB的50%用RCB替换,发现上述性能的值是用VCB和RCB制备的NR复合获得的那些之间。另外,增加的RCB装载时,一些性质匹配的单独VCB所表现出的行为,从而补偿RCB的低增强性能。这些结果预计将提供给朝向具有从可持续的角度非常积极的影响,循环经济战略,移动的重要推动力。

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