Department of Architecture and Architectural Engineering, Yonsei University, Seoul, Republic of Korea.
School of Arch, Civil, Environment, and Energy, Kyungpook National University, Daegu, Republic of Korea.
J Hazard Mater. 2021 Feb 5;403:123804. doi: 10.1016/j.jhazmat.2020.123804. Epub 2020 Sep 2.
Although various technologies are being developed in the construction industry, management technologies for achieving environmental sustainability in the local community are still lacking. As such, this study suggests future insights for the development of an automated intelligent environment management system for the promotion of environmental sustainability in the local community, through a systematic review of 1,707 relevant literature. The systematic review was conducted in two steps: (i) quantitative review: keyword co-occurrence and trend analysis; and (ii) qualitative review: a review on monitoring, evaluation, and improvement technologies. As a result, the research level related to the local-level pollutants (noise, vibration, and dust) was found to be quantitatively insufficient, and the limitations of the existing technologies for these pollutants were presented. Eventually, to overcome these limitations, new technologies and application strategies that can be applied to construction sites as future research roadmap to effectively manage the hazardous pollutants were proposed. Furthermore, an intelligent management system should be developed, and the management of environmental complaints is also necessary for environmental sustainability at the local level in the construction industry. As a fundamental study, this study could become a benchmark for future researches dealing with environmental sustainability and hazardous pollutants in the construction industry.
虽然建筑行业正在开发各种技术,但在实现当地社区环境可持续性方面的管理技术仍然缺乏。因此,本研究通过对 1707 篇相关文献进行系统回顾,为开发用于促进当地社区环境可持续性的自动化智能环境管理系统提出了未来的见解。系统回顾分两步进行:(i)定量回顾:关键词共现和趋势分析;(ii)定性回顾:监测、评估和改进技术的回顾。结果发现,与地方级污染物(噪声、振动和灰尘)相关的研究水平在定量上不足,并且提出了现有技术在这些污染物方面的局限性。最终,为了克服这些局限性,提出了新的技术和应用策略,可以作为未来研究的路线图,应用于建筑工地,以有效管理危险污染物。此外,应该开发一个智能管理系统,并且对于建筑行业的地方层面的环境可持续性而言,管理环境投诉也是必要的。作为一项基础研究,本研究可以成为未来处理建筑行业环境可持续性和危险污染物的研究的基准。