Use of Industrial By-Products in Urban Roadway Infrastructure

被引:20
作者
Carpenter, Alberta C. [1 ]
Gardner, Kevin H. [1 ]
机构
[1] Univ New Hampshire, Durham, NH 03824 USA
关键词
beneficial use; industrial capital management; industrial ecology; life cycle assessment (LCA); road construction; transportation impacts; LIFE-CYCLE; CONSTRUCTION; IMPACTS; WASTE;
D O I
10.1111/j.1530-9290.2009.00175.x
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
P>Incorporating the beneficial use of industrial by-products into the industrial ecology of an urban region as a substitute or supplement for natural aggregate can potentially reduce life cycle impacts. This article specifically looks at the utilization of industrial by-products (IBPs) (coal ash, foundry sand, and foundry slag) as aggregate for roadway sub-base construction for the Pittsburgh, Pennsylvania, urban region. The scenarios compare the use of virgin aggregate with the use of a combination of both virgin and IBP aggregate, where the aggregate material is selected based on proximity to the construction site and allows for minimization of transportation impacts. The results indicate that the use of IBPs to supplement virgin aggregate on a regional level has the potential of reducing impacts related to energy use, global warming potential, and emissions of nitrogen oxides (NO(x)), sulfur dioxide (SO(2)), carbon monoxide (CO), PM(10) (particulate matter-10 microns), mercury (Hg), and lead (Pb). Regional management of industrial by-products would allow for the incorporation of these materials into the industrial ecology of a region and reduce impacts from the disposal of the IBP materials and the extraction of virgin materials and minimize the impacts from transportation. The combination of reduced economic and environmental costs provides a strong argument for state transportation agencies to develop symbiotic relationships with large IBP producers in their regions to minimize impacts associated with roadway construction and maintenance-with the additional benefit of improved management of these materials.
引用
收藏
页码:965 / 977
页数:13
相关论文
共 50 条
[41]   The use of different by-products in the production of lightweight alkali activated building materials [J].
Dembovska, Laura ;
Bajare, Diana ;
Ducman, Vilma ;
Korat, Lidija ;
Bumanis, Girts .
CONSTRUCTION AND BUILDING MATERIALS, 2017, 135 :315-322
[42]   Editorial: Technically-based use of by-products as a tool to control pollution [J].
Nunez-Delgado, Avelino .
JOURNAL OF ENVIRONMENTAL MANAGEMENT, 2019, 242 :65-67
[43]   Challenges and realistic opportunities in the use of by-products from processing of fish and shellfish [J].
Olsen, Ragnar L. ;
Toppe, Jogeir ;
Karunasagar, Lddya .
TRENDS IN FOOD SCIENCE & TECHNOLOGY, 2014, 36 (02) :144-151
[44]   Impact of dynamic wheel load on roadway infrastructure sustainability [J].
Kang, Seunggu ;
Al-Qadi, Imad L. ;
Gungor, Osman Erman .
TRANSPORTATION RESEARCH PART D-TRANSPORT AND ENVIRONMENT, 2021, 94
[45]   Valorisation of Winemaking By-products [J].
Skracic, Z. ;
Ljubenkov, I. ;
Mimica, N. ;
Mekinic, Generalic .
KEMIJA U INDUSTRIJI-JOURNAL OF CHEMISTS AND CHEMICAL ENGINEERS, 2023, 72 (3-4) :247-255
[46]   Performance Evaluation of Engineering Properties, Radiation Shielding, and Sustainability of Hollow Masonry Blocks Produced Using a High Volume of Industrial By-Products [J].
Nayaka, Ramappa Ramesh ;
Alengaram, U. Johnson ;
Jumaat, Mohd Zamin ;
Yusoff, Sumiani ;
Ganasan, Reventheran .
JOURNAL OF MATERIALS IN CIVIL ENGINEERING, 2021, 33 (03)
[47]   Linking Food Industry to "Green Plastics" - Polyhydroxyalkanoate (PHA) Biopolyesters from Agro-industrial By-Products for Securing Food Safety [J].
Koller, Martin .
APPLIED FOOD BIOTECHNOLOGY, 2019, 6 (01) :1-6
[48]   Utilization of Agro-industrial By-products for Production of Lipase Using Mix Culture Batch Process [J].
Prabha, Sarit ;
Verma, Gaurav ;
Pandey, Srinath ;
Singh, B. Brajesh ;
Dwivedi, Vinay .
BIOSCIENCE BIOTECHNOLOGY RESEARCH COMMUNICATIONS, 2019, 12 (03) :748-756
[49]   Dolomite industrial by-products as active material for CO2 adsorption and catalyst for the acetone condensation [J].
Ursueguia, David ;
Faba, Laura ;
Diaz, Eva ;
Caballero, Roberto ;
Ordonez, Salvador .
WASTE MANAGEMENT, 2023, 168 :431-439
[50]   Preparation of Novel Fe Catalysts from Industrial By-Products: Catalytic Wet Peroxide Oxidation of Bisphenol A [J].
Juhola, Riikka ;
Heponiemi, Anne ;
Tuomikoski, Sari ;
Hu, Tao ;
Vielma, Tuomas ;
Lassi, Ulla .
TOPICS IN CATALYSIS, 2017, 60 (17-18) :1387-1400