Life Cycle Cost, Energy, and Carbon Emissions of Molds for Pre-Cast Concrete (2023-07)¶
10.1016/j.resconrec.2023.107117
Armstrong Kristina, Kamath Dipti, , Rencheck Mitchell, Tekinalp Halil, , Hun Diana, Ozcan Soydan
Journal Article - Resources, Conservation and Recycling, Vol. 197, No. 107117
Abstract
Molds for precast concrete are commonly used to create simple- to complex-shaped concrete products away from construction sites. These molds are often handmade from wood; however, additively manufacturing (AM, or 3D printing) fiber-reinforced polymer composites is an advantageous alternative, producing significantly more durable, highly complex molds faster, but likely at a higher cost. This study explores the impact of material and production variables on the cost, energy, and carbon emissions of employing composite AM molds over the full lifecycle. The case study employed techno-economic and life cycle assessments to show that using wood flour–poly(lactic acid) or recycled carbon fiber–acrylonitrile butadiene styrene for AM molds can be less expensive than conventional wood molds, especially when considering use phase costs. While wood molds have the least environmental impacts due to wood's higher biogenic carbon sequestration and minimal processing, optimizing AM designs could reduce energy demand, carbon emissions, and cost.
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0 References
2 Citations
- Türk Ayşe, Türk Furkan, Edebali Serpil, Keskin Ülkü (2025-11)
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BibTeX
@article{arms_kama_zhao_renc.2023.LCCEaCEoMfPCC,
author = "Kristina O. Armstrong and Dipti Kamath and Xianhui Zhao and Mitchell L. Rencheck and Halil Tekinalp and Matthew N. Korey and Diana Hun and Soydan Ozcan",
title = "Life Cycle Cost, Energy, and Carbon Emissions of Molds for Pre-Cast Concrete: Exploring the Impacts of Material-Choices and Additive Manufacturing",
doi = "10.1016/j.resconrec.2023.107117",
year = "2023",
journal = "Resources, Conservation and Recycling",
volume = "197",
pages = "107117",
}
Formatted Citation
K. O. Armstrong, “Life Cycle Cost, Energy, and Carbon Emissions of Molds for Pre-Cast Concrete: Exploring the Impacts of Material-Choices and Additive Manufacturing”, Resources, Conservation and Recycling, vol. 197, p. 107117, 2023, doi: 10.1016/j.resconrec.2023.107117.
Armstrong, Kristina O., Dipti Kamath, Xianhui Zhao, Mitchell L. Rencheck, Halil Tekinalp, Matthew N. Korey, Diana Hun, and Soydan Ozcan. “Life Cycle Cost, Energy, and Carbon Emissions of Molds for Pre-Cast Concrete: Exploring the Impacts of Material-Choices and Additive Manufacturing”. Resources, Conservation and Recycling 197 (2023): 107117. https://doi.org/10.1016/j.resconrec.2023.107117.