Quantitative methods for predicting underground construction waste considering reuse and recycling

The construction industry has been greatly developed in the past few decades, especially in the extensive use of underground space. The increasing amount of waste (e.g., soil, sludge, and rock) generated in the underground construction constitutes an important part of construction and demolition was...

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Published inEnvironmental science and pollution research international Vol. 29; no. 3; pp. 3394 - 3405
Main Authors Chen, Rui, Li, Lanxin, Yang, Kai, Ren, Fumin, Xi, Chenggang, Lin, Yang, Zheng, Hai
Format Journal Article
LanguageEnglish
Published Berlin/Heidelberg Springer Berlin Heidelberg 2022
Springer Nature B.V
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Abstract The construction industry has been greatly developed in the past few decades, especially in the extensive use of underground space. The increasing amount of waste (e.g., soil, sludge, and rock) generated in the underground construction constitutes an important part of construction and demolition waste (CDW), but the related problems are rarely addressed in an independent quantitative study. In order to facilitate recycling of underground construction waste (UCW), quantitative methods for predicting UCW are proposed based on mass conservation in this study. Through on-site investigation and literature review, the source characteristics of UCW and corresponding recycling potential are firstly analyzed. Secondly, the corresponding quantitative method is proposed for predicting each type of UCW according to the principle of mass conservation. Finally, the proposed quantitative methods are applied in two real underground infrastructure projects to verify the accuracy. The results show that the accuracy of quantitative methods for predicting shield sludge and engineering soil is 82.03–95.79% and 94.49% respectively. The quantitative methods for predicting the amount of UCW proposed in this study is effective. In both cases, underground construction produced a large amount of construction waste with great recycling potential. UCW can theoretically reach 100% recycling, and full reuse and recycling of UCW will bring huge benefits and be conducive to the sustainable development of the construction industry.
AbstractList The construction industry has been greatly developed in the past few decades, especially in the extensive use of underground space. The increasing amount of waste (e.g., soil, sludge, and rock) generated in the underground construction constitutes an important part of construction and demolition waste (CDW), but the related problems are rarely addressed in an independent quantitative study. In order to facilitate recycling of underground construction waste (UCW), quantitative methods for predicting UCW are proposed based on mass conservation in this study. Through on-site investigation and literature review, the source characteristics of UCW and corresponding recycling potential are firstly analyzed. Secondly, the corresponding quantitative method is proposed for predicting each type of UCW according to the principle of mass conservation. Finally, the proposed quantitative methods are applied in two real underground infrastructure projects to verify the accuracy. The results show that the accuracy of quantitative methods for predicting shield sludge and engineering soil is 82.03–95.79% and 94.49% respectively. The quantitative methods for predicting the amount of UCW proposed in this study is effective. In both cases, underground construction produced a large amount of construction waste with great recycling potential. UCW can theoretically reach 100% recycling, and full reuse and recycling of UCW will bring huge benefits and be conducive to the sustainable development of the construction industry.
Author Li, Lanxin
Ren, Fumin
Yang, Kai
Xi, Chenggang
Chen, Rui
Lin, Yang
Zheng, Hai
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  surname: Chen
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  organization: Department of Municipal and Environmental Engineering, School of Civil Engineering, Beijing Jiaotong University, Beijing Key Laboratory of Aqueous Typical Pollutants Control and Water Quality Safeguard
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  givenname: Lanxin
  surname: Li
  fullname: Li, Lanxin
  organization: Department of Municipal and Environmental Engineering, School of Civil Engineering, Beijing Jiaotong University
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  givenname: Kai
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  organization: Department of Municipal and Environmental Engineering, School of Civil Engineering, Beijing Jiaotong University, CCCC Railway Consultants Group Co., Ltd
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  givenname: Fumin
  surname: Ren
  fullname: Ren, Fumin
  email: fmren@bjtu.edu.cn
  organization: Department of Municipal and Environmental Engineering, School of Civil Engineering, Beijing Jiaotong University, Beijing Key Laboratory of Aqueous Typical Pollutants Control and Water Quality Safeguard
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  organization: Zhonglu Gaoke Traffic Science and Technology Group Co., Ltd
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  organization: Hongrun Construction Group Co., Ltd
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  surname: Zheng
  fullname: Zheng, Hai
  organization: Hongrun Construction Group Co., Ltd
BackLink https://www.ncbi.nlm.nih.gov/pubmed/34389947$$D View this record in MEDLINE/PubMed
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CitedBy_id crossref_primary_10_3390_su16124889
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Issue 3
Keywords Engineering verification
Quantitative methods
Source characteristics
Recycling
Underground construction waste
Mass conservation
Language English
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Snippet The construction industry has been greatly developed in the past few decades, especially in the extensive use of underground space. The increasing amount of...
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SubjectTerms Aquatic Pollution
Atmospheric Protection/Air Quality Control/Air Pollution
Conservation
Construction Industry
Construction industry wastes
Construction Materials
Earth and Environmental Science
Ecotoxicology
Environment
Environmental Chemistry
Environmental Health
Environmental science
Industrial development
Industrial Waste - analysis
Literature reviews
Quantitative analysis
Quantitative research
Recycling
Research Article
Sludge
Soils
Sustainable Development
Underground construction
Waste disposal
Waste Management
Waste Water Technology
Water Management
Water Pollution Control
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Title Quantitative methods for predicting underground construction waste considering reuse and recycling
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