地理空间技术在建筑和拆除废物管理中的应用:系统的文献综述

IF 5.4 3区 环境科学与生态学 Q2 ENGINEERING, ENVIRONMENTAL
Zhikang Bao, Shengping Li, Ying Chen, Huili Xie, Wuyan Long, Wei-Qiang Chen
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引用次数: 0

摘要

在全球范围内,建筑和拆除废物管理(CDWM)是一个重大挑战。传统的CDWM严重依赖于人类学方法,这可能会阻止利益相关者对制定有效战略的宏观立场获得全面的理解。地理空间技术的出现为清洁水机制提供了一种更加客观和精确的方法,以加强资源管理并支持环境和社会经济的可持续性。然而,对这些地理空间技术如何应用于CDWM的全面审查仍然缺乏。为了充分发挥地理空间技术在CDWM中的潜力,本研究旨在通过系统的文献综述,探讨不同类别的地理空间技术在CDWM中的不同应用场景。通过对2004年至2024年的73篇论文的深入研究,结果发现,自2017年以来,这一研究学科一直是一个热点。现有CDWM文献主要利用地理信息系统(GIS)技术,其次是遥感技术和混合技术策略。地理空间技术已与其他非地理空间技术广泛融合。现有文献主要分布在四个应用场景:识别与分类、选址、量化和决策支持。最后,指出了三个研究空白,指导未来的研究致力于提高数据精度,将地理空间技术与传统方法相结合,以及从生命周期角度扩展应用场景。本文为学者和实践者提供了如何利用地理空间技术推动CDWM学科向高效率和高精度发展的清晰路线图。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Applications of geospatial technologies for construction and demolition waste management: A systematic literature review

Construction and demolition waste management (CDWM) is a grand challenge on a global scale. Traditional CDWM has heavily relied on anthropological approaches, which may prevent stakeholders from acquiring a comprehensive understanding of a macro standpoint for developing effective strategies. The emergence of geospatial technologies offers a more objective and precise approach for CDWM to enhance resource management and support environmental and socio-economic sustainability. However, a holistic review of how these geospatial technologies have been applied to CDWM is still lacking. To fully harness the potential of geospatial technologies for CDWM, this study aims to examine how different categories of geospatial technologies serve different application scenarios in CDWM through a systematic literature review. Through delving into 73 papers spanning 2004 to 2024, the results find this research discipline has been a hotspot since 2017. Existing CDWM literature has predominantly utilized geographic information systems (GIS) technology, followed by remote sensing technology and a hybrid technology strategy. Geospatial technologies have been extensively integrated with other non-geospatial technologies. Existing literature is mainly distributed across four application scenarios: identification and classification, site selection, quantification, and decision support. Finally, three research gaps have been also pinpointed, directing future studies to devote specific efforts to improving data accuracy, combining geospatial technologies with traditional methods as well as expanding application scenarios from a life cycle perspective. This paper offers academics and practitioners a clear roadmap on how to utilize geospatial technologies for propelling the discipline of CDWM toward high efficiency and precision.

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来源期刊
Journal of Industrial Ecology
Journal of Industrial Ecology 环境科学-环境科学
CiteScore
11.60
自引率
8.50%
发文量
117
审稿时长
12-24 weeks
期刊介绍: The Journal of Industrial Ecology addresses a series of related topics: material and energy flows studies (''industrial metabolism'') technological change dematerialization and decarbonization life cycle planning, design and assessment design for the environment extended producer responsibility (''product stewardship'') eco-industrial parks (''industrial symbiosis'') product-oriented environmental policy eco-efficiency Journal of Industrial Ecology is open to and encourages submissions that are interdisciplinary in approach. In addition to more formal academic papers, the journal seeks to provide a forum for continuing exchange of information and opinions through contributions from scholars, environmental managers, policymakers, advocates and others involved in environmental science, management and policy.
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