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Establishment and Evaluation of Energy Consumption, Carbon Emission, and Economic Models of Retreaded Tires Based on Life Cycle Theory

机译:基于全寿命理论的翻新轮胎能耗、碳排放及经济模型的建立与评价

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摘要

This paper identifies the system composition of the life cycle of retreaded tires and constructs the energy consumption model, carbon emission model, and economic model of retreaded tires based on the life cycle theory. Moreover, the theoretical calculation model and method for the energy consumption, carbon emission, and economy at the production phase, transportation phase, usage phase, and reuse phase of retreaded tires are proposed. After that, this paper puts forward the energy substitution model, carbon reduction model, and cost profit model of five reuse methods of retreaded tires, namely, secondary retreading, mechanical pulverization, low-temperature pulverization, combustion decomposition, and combustion power generation. Finally, this paper proposes the evaluation index for the energy consumption, carbon emission, and economy in the life cycle of retreaded tires and quantitatively analyzes the energy consumption, carbon emission, and cost profit list in each phase of the life cycle of retreaded tires, obtaining the energy recovery rate, carbon reduction rate, and profit-to-cost ratio of the five reuse methods of retreaded tires. The main conclusions of this paper are as follows: the energy consumption and carbon emission of retreaded tires are the largest at the production phase, while the energy consumption and carbon emission are the lowest at the transportation phase. Among the five reuse methods, the energy recovery effect, carbon reduction rate, and economy of secondary retreading are the optimal ones, and the quantitative results show that retreading is the most effective way for the reuse of waste tires.
机译:本文识别了翻新轮胎生命周期的系统组成,并基于生命周期理论构建了翻新轮胎的能耗模型、碳排放模型和经济模型。此外,提出了翻新轮胎生产阶段、运输阶段、使用阶段和再利用阶段能耗、碳排放和经济性的理论计算模型和方法。在此基础上,本文提出了翻新轮胎二次翻新、机械粉碎、低温粉碎、燃烧分解、燃烧发电五种再利用方式的能量替代模型、减碳模型和成本利润模型。最后,提出了翻新轮胎全生命周期能耗、碳排放和经济性评价指标,定量分析了翻新轮胎生命周期各阶段的能耗、碳排放、成本利润表,得到了翻新轮胎五种再利用方式的能量回收率、减碳率和成本利润比。本文的主要结论是:翻新轮胎在生产阶段的能耗和碳排放量最大,而运输阶段的能耗和碳排放量最低。在5种再利用方式中,能量回收效果、减碳率、二次翻新经济性最优,定量结果表明,翻新是废旧轮胎再利用最有效的方式。

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