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首页> 外文期刊>Journal of material cycles and waste management >Evaluation of solid product obtained from tire-derived fuel (TDF) pyrolysis as carbon black
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Evaluation of solid product obtained from tire-derived fuel (TDF) pyrolysis as carbon black

机译:评估由轮胎衍生燃料(TDF)热解获得的固体产物作为炭黑

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The main focus of this study was quality improvement of solid product obtained from tire-derived fuel (TDF) pyrolysis to use it as a substitute for commercial carbon blacks. First of all, TDF samples were analyzed by means of proximate and ultimate analysis, heating value, X-ray diffraction (XRD) and scanning electron microscopy (SEM) analysis. They were then pyrolyzed at a 400 A degrees C pyrolysis temperature with 5 A degrees C/min heating rate. After that, a two-stage improvement was performed on solid product to reduce its sulfur and ash content to that of commercial carbon black. As a result of this improvement process, the sulfur and ash content of the solid product was reduced to 0.22 and 0.27 % from 1.71 and 12.14 %, respectively. In addition, the XRD, SEM, atomic force microscopy, Brunauer-Emmett-Teller surface area, oil adsorption number and ICP-MS/MS analyses were performed for all products. The results were compared with different commercial carbon blacks. It was determined that the properties of the improved products were similar to those of commercial carbon blacks. These results suggest that improved pyrolytic product of TDF can be used as a raw material by industries such as tire, plastic and paint manufacturing.
机译:这项研究的主要重点是提高轮胎衍生燃料(TDF)热解获得的固体产品的质量,以将其用作商业炭黑的替代品。首先,通过近似分析和最终分析,热值,X射线衍射(XRD)和扫描电子显微镜(SEM)分析TDF样品。然后将它们在400 A的热解温度下以5 A / min的加热速率进行热解。之后,对固体产品进行了两阶段改进,以将其硫和灰分含量降低至商品炭黑。作为该改进过程的结果,固体产物的硫和灰分含量分别从1.71%和12.14%降低到0.22%和0.27%。另外,对所有产品进行了XRD,SEM,原子力显微镜,Brunauer-Emmett-Teller表面积,吸油量和ICP-MS / MS分析。将结果与不同的商业炭黑进行了比较。可以确定,改进产品的性质与商业炭黑相似。这些结果表明,改进的TDF热解产物可以被轮胎,塑料和油漆制造等行业用作原料。

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