QR Code-Based Material Passports for Component Reuse Across Life Cycle Stages in Small-Scale Construction

Circular Economy Pub Date : 2023-07-01 DOI:10.55845/iweb6031
Brandon S. Byers, C. De Wolf
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引用次数: 0

Abstract

The rise of attention to the circular economy in the built environment faces a pervasive problem that buildings are designed to last longer than the careers of those who built them. Predicting how to best preserve and convey information on building construction and materials from the beginning to the end of life is difficult. This paper explores the impact of track and trace technology, specifically quick-response (QR) codes, on reusing elements at the end of a building’s life. In two case studies, we tested the effectiveness of using a material passport (MP) in small-scale construction, providing insights into the digital and physical processes. Ultimately, QR codes are shown to be good stores of static information but are not optimized for dynamic process information during construction life cycles. Despite the challenges of ensuring sustainable, circular construction, the results of this study should motivate those in the construction industry to implement and improve these processes in anticipation of future policy, environmental, and economic demands.
基于QR码的材料通行证,用于构件跨生命周期阶段的重复使用
对建筑环境中循环经济的关注日益增加,但也面临着一个普遍存在的问题:建筑的设计寿命要比建造者的职业生涯更长。预测如何最好地保存和传递建筑结构和材料从开始到结束的信息是困难的。本文探讨了跟踪和追踪技术的影响,特别是快速响应(QR)代码,在建筑物生命周期结束时对元素的再利用。在两个案例研究中,我们测试了在小规模建筑中使用材料通行证(MP)的有效性,提供了对数字和物理过程的见解。最终,QR码被证明是静态信息的良好存储,但在建筑生命周期中没有优化动态过程信息。尽管在确保可持续循环建筑方面存在挑战,但本研究的结果应该激励建筑行业的人们在预期未来的政策、环境和经济需求时实施和改进这些过程。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
3.60
自引率
0.00%
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