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Life Cycle Energy Analysis and Evaluation of Retreaded Engineering Tires

机译:改良工程轮胎的生命周期能量分析与评估

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摘要

In this paper, energy consumption models of retreaded engineering tires were constructed based on life cycle analysis, theoretical calculation model, and energy consumption method during the four stages of retreaded engineering tires, i.e., production, transportation, usage, and recycling stage. The energy substitute model and energy evaluation index during the recycling stage, which involves one of five classical retreaded engineering tire recycling methods, i.e., secondary retreading, mechanical smash, low-temperature smash, combustion decomposition, and combustion power generation, were presented. Life cycle energy analysis of retreaded engineering tires was conducted, and the energy consumption during the different life cycle stages was quantitatively analyzed, thus obtaining the energy restoration rate of the five classical recycling stages of retreaded engineering tires. Energy consumption analysis and energy evaluation at different stages were performed. Main conclusions indicate that the energy consumption during the production stage is the highest, and energy consumption during the transportation stage is the lowest. The energy recycling result of the secondary retreading or combustion decomposition of retreaded engineering tires is obtained.
机译:在本文中,基于生命周期分析,理论计算模型和能耗方法构建了翻新工程轮胎的能量消耗模型在翻新工程轮胎的四个阶段,即生产,运输,使用和回收阶段。介绍了再循环阶段的能量替代模型和能量评估指标,涉及五种经典翻新工程轮胎回收方法中的一种,即二次翻新,机械粉碎,低温粉碎,燃烧分解和燃烧发电。进行了翻新工程轮胎的生命周期能量分析,并且定量地分析了不同生命周期阶段的能量消耗,从而获得了翻新工程轮胎的五个经典回收阶段的能量恢复率。进行了不同阶段的能量消耗分析和能量评估。主要结论表明,生产阶段期间的能源消耗最高,运输阶段的能耗是最低的。获得了翻新工程轮胎的二次转换或燃烧分解的能量回收结果。

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