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首页> 外文期刊>Journal of Cleaner Production >LCA and LCC of a chemical recycling process of waste CF-thermoset composites for the production of novel CF-thermoplastic composites. Open loop and closed loop scenarios
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LCA and LCC of a chemical recycling process of waste CF-thermoset composites for the production of novel CF-thermoplastic composites. Open loop and closed loop scenarios

机译:LCA和LCC的废弃物CF-热固性复合材料的化学回收过程,用于生产新型CF热塑性复合材料。 开环和闭环方案

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The case study presented in this paper is a follow up of a topic already examined in previous studies relating the life cycle assessment (LCA) of a chemical treatment process used to recycle a specific type of carbon fiber (CF) reinforced thermoset composite. In the present study the LCA is coupled with the life cycle cost (LCC) analysis for the economic assessment. Furthermore, the research sought to specify the best available technology for the reuse of the materials recovered through the chemical recycling process. The new LCA results are more reliable and more current than the scenario presented in the previous LCA studies. In the previous scenario the possibility to recover long carbon fibers & ldquo;ready to use & rdquo; was considered. This scenario, even if under investigation by the recycling company, is still not possible for technological limitations as the fibers recovered after the chemical process require further treatments before being used in thermoset composite. Consequently, a more feasible technology was investigated and, according to our laboratory research results, one practical way to recycle the CF-thermoset composites is to shred them before the chemical treatment in order to recover shredded CFs and epoxy thermoplastic from cleavable thermosets. These materials can be easily compounded together to manufacture a CF-thermoplastic composite through injection moulding as we demonstrated herein through some laboratory experiments. The LCA and LCC were accounted for the recycling process via solvolysis up to the recovery phase of the epoxy-thermoplastic resin and the short carbon fibers. The paper presents laboratory test results of the remanufacture of the two reclaimed materials for the production of a thermoplastic CF-composite.(c) 2021 The Authors. Published by Elsevier Ltd. This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
机译:本文提出的案例研究是在先前研究中已经检查的主题的后续研究,该研究有关用于再循环特定类型的碳纤维(CF)增强热固性复合材料的化学处理过程的生命周期评估(LCA)。在本研究中,LCA与经济评估的生命周期成本(LCC)分析相结合。此外,研究寻求指定通过化学回收过程回收的材料的最佳可用技术。新的LCA结果比以前的LCA研究中提出的情景更可靠,更电流。在以前的情况下,恢复长碳纤维的可能性;准备使用和rdquo;被考虑。这种情况,即使在回收公司的调查下,在化学过程后恢复的纤维需要进一步治疗之前,仍然无法进行技术限制,在热固性复合材料中需要进一步处理。因此,调查了更可行的技术,并根据我们的实验室研究结果,再循环CF-ThermoTet复合材料的一种实用方法是在化学处理之前将它们切碎,以便从可切割的热固性中回收切碎的CFS和环氧热塑性塑料。当我们通过一些实验室实验证明,这些材料可以容易地混合在一起,以通过注射成型制造通过注射成型的CF-热塑性复合材料。将LCA和LCC通过溶解至环氧 - 热塑性树脂和短碳纤维的回收阶段来核对再循环过程。本文介绍了用于生产热塑性CF复合材料的两种再生材料的再制造的实验室测试结果。(c)作者2021。由elsevier有限公司发布这是CC下的开放式访问文章(http://creativecommons.org/licenses/by/4.0/)。

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