Recycled and upcycled materials in contemporary architecture and civil engineering: Their applications, benefits, and challenges

Abdalrhman Milad
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引用次数: 0

Abstract

This paper explores the increasingly popular practice of integrating recycled and upcycled materials in modern architecture and civil engineering and highlights their central role in promoting sustainability, energy efficiency, and environmental responsibility. Upcycling transforms discarded materials, such as reclaimed metal, wood, masonry, glass, concrete, and plastic, into valuable resources and offers a promising course for achieving sustainability. This research evaluates the performance, durability, and aesthetic potential of discarded materials through case studies of completed projects to illustrate their successful applications. It also addresses the challenges and opportunities associated with the widespread use of recycled and upcycled materials by focusing on technological advancements, lifecycle assessments, and economic feasibility. The findings underscore the significance of continued research and innovation in this field and the need for supportive government regulations and better public awareness. In summary, the study emphasizes the compelling need to integrate recycled and upcycled materials in construction to promote sustainable construction practices and develop a more resilient, resource-efficient built environment.
当代建筑和土木工程中的回收和升级再利用材料:它们的应用、效益和挑战
本文探讨了在现代建筑和土木工程中日益流行的将回收和升级再利用材料结合起来的做法,并强调了它们在促进可持续性、能源效率和环境责任方面的核心作用。升级回收将废弃的材料,如回收的金属、木材、砖石、玻璃、混凝土和塑料转化为宝贵的资源,并为实现可持续发展提供了一条有前途的道路。本研究通过已完成项目的案例研究来评估废弃材料的性能、耐久性和美学潜力,以说明它们的成功应用。它还通过关注技术进步、生命周期评估和经济可行性,解决了与广泛使用回收和升级再利用材料相关的挑战和机遇。研究结果强调了在这一领域继续研究和创新的重要性,以及支持性政府法规和提高公众意识的必要性。总之,该研究强调了在建筑中整合回收和升级回收材料的迫切需要,以促进可持续建筑实践,并开发更具弹性和资源节约型的建筑环境。
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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CiteScore
2.60
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