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A hybrid life cycle assessment of embodied energy and carbon emissions from conventional and industrialised building systems in Malaysia

机译:马来西亚传统和工业化建筑系统中包含的能源和碳排放的混合生命周期评估

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摘要

Life cycle assessment (LCA) is considered to be the most systematic methodology that is widely used in the area of energy analysis. However, embodied energy (EE) and carbon (EC) analysis requires significant time and effort to ensure the reliability of the LCA results. Therefore, a more comprehensive model of conducting the energy analysis is required to provide more realistic EE and EC analysis in turn. Hybrid LCA has been identified as the best model in improving the completeness of EE and EC inventory data. However, such a benefit was not empirically verified extensively, especially in the Malaysian construction industry. This paper demonstrates an extended application of hybrid LCA to Malaysian building design systems, and further investigates the completeness of the model. Finally, the potential for EE and EC reduction through the allocation of low EE and EC intensities of alternative materials, products or components has been evaluated. The results revealed that the hybrid LCA improved the completeness of the EE and EC inventory data compared with other models. By using low EE and EC intensity materials, products or components, a total EE and EC reduction of 43% and 41%, respectively was achieved. The results showed that the proposed methodology can assist designers practically during the early stage of the design process in the Malaysian construction industry. (C) 2018 Elsevier B.V. All rights reserved.
机译:生命周期评估(LCA)被认为是在能量分析领域广泛使用的最系统的方法。但是,内含能量(EE)和碳(EC)分析需要大量时间和精力来确保LCA结果的可靠性。因此,需要一种更全面的进行能量分析的模型来依次提供更现实的EE和EC分析。混合LCA已被认为是改善EE和EC库存数据完整性的最佳模型。但是,这种好处并未得到经验的广泛验证,特别是在马来西亚的建筑业中。本文演示了混合LCA在马来西亚建筑设计系统中的扩展应用,并进一步研究了模型的完整性。最后,评估了通过分配替代材料,产品或组件的低EE和EC强度来降低EE和EC的潜力。结果表明,与其他模型相比,混合LCA改善了EE和EC库存数据的完整性。通过使用低EE和EC强度的材料,产品或组件,可将总EE和EC分别降低43%和41%。结果表明,所提出的方法可以在设计过程的早期阶段为马来西亚建筑业的设计人员提供实际帮助。 (C)2018 Elsevier B.V.保留所有权利。

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