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应用于工业系统的潜在储能材料的环境概况。

Environmental profile of latent energy storage materials applied to industrial systems.

机构信息

CIRCE - Centre of Research for Energy Resources and Consumption, University of Zaragoza, Zaragoza, Spain.

CIRCE - Centre of Research for Energy Resources and Consumption, University of Zaragoza, Zaragoza, Spain.

出版信息

Sci Total Environ. 2014 Mar 1;473-474:565-75. doi: 10.1016/j.scitotenv.2013.12.013. Epub 2014 Jan 4.

Abstract

Industry sector is an intensive-energy consumer and approximately 20-50% of industrial energy consumption is lost as waste heat. Therefore, there is a great potential for reducing energy consumption and, subsequently, decreasing the fossil fuels used if this lost energy can be recovered. Thermal Energy Storage (TES) based on Latent Heat Storage systems (LHS) using Phase Change Materials (PCMs) has become one of the most feasible solutions in achieving energy savings through waste heat recovery, especially when there is a mismatch between the supply and consumption of energy processes. In this paper, a shell and tube heat exchanger incorporating PCMs has been considered to store the excess energy available in an industrial process. Several attempts have been made to design the most appropriate system considering many cost-benefit and technical criteria to maximise the heat recovery. However, the environmental criterion also is an important factor when determining whether this technology is not only energy and cost-efficient but also environmentally friendly, considering the whole life of the system from its manufacture to its disposal. To this end, this research includes a Life Cycle Assessment (LCA) to determine whether the energy savings of conventional fuels during the operation stage are large enough to balance the environmental impact originated in an industrial TES system including the manufacture, use and disposal phases. Inputs and outputs of each management stage have been defined, and the inventory emissions calculated by SIMAPRO v7.3.2. A midpoint and endpoint approaches have been carried out using two methods, CML 2001 and Eco-indicator 99, respectively. As a preliminary result, a promising reduction in the overall impacts was obtained by the use of this technology. From the environmental impact results, a matrix of possible technical solutions is displayed, to improve the environmental performance.

摘要

工业部门是一个能源密集型消费部门,大约 20-50%的工业能源消耗以废热的形式损失。因此,如果能够回收这些损失的能源,就有很大的潜力来降低能源消耗,进而减少化石燃料的使用。基于潜热存储系统(LHS)利用相变材料(PCM)的热能存储(TES)已成为通过回收余热实现节能的最可行解决方案之一,特别是当能源过程的供应和消耗之间存在不匹配时。在本文中,已经考虑使用 PCM 的壳管式换热器来存储工业过程中多余的能量。已经进行了多次尝试,以考虑许多成本效益和技术标准来设计最合适的系统,以最大限度地回收热量。然而,在确定这项技术不仅在能源和成本方面具有效率,而且在环境方面也是环保的时,环境标准也是一个重要因素,要考虑从制造到处置的整个系统的生命周期。为此,本研究包括生命周期评估(LCA),以确定在运行阶段常规燃料的节能是否足以平衡包括制造、使用和处置阶段在内的工业 TES 系统产生的环境影响。已经定义了每个管理阶段的投入和产出,并通过 SIMAPRO v7.3.2 计算了清单排放量。使用两种方法,即 CML 2001 和生态指标 99,分别进行了中点和终点方法。作为初步结果,通过使用这项技术,获得了整体影响的显著降低。从环境影响结果中,可以显示出可能的技术解决方案的矩阵,以提高环境性能。

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