Issue 5, 2025

Life cycle assessment of formic acid synthesis utilizing CO2 from direct air capture

Abstract

This study presents a comprehensive cradle-to-gate life cycle assessment (LCA) of formic acid (FA) synthesis from direct air captured (DAC) carbon dioxide (CO2) utilizing chemical plant waste heat. The research focuses on a project to implement a low-temperature solid sorbent DAC system co-located with a FA production facility at a fertilizer plant, utilizing industrial waste heat from nitric acid production. This study employs projected operational data from two companies which own the DAC and FA conversion technologies to examine the environmental impacts and benefits of this DAC-to-FA conversion process. By leveraging waste heat and renewable energy, the proposed project demonstrates the environmental advantages of advanced carbon utilization technologies, providing valuable insights for future policy and industrial applications in sustainable chemical manufacturing. Key results indicate that the capture and conversion process, when powered by renewable energy, achieves a net negative global warming potential of −0.806 kg CO2 eq. per kg FA produced, contrasted against traditional FA production methods which are calculated to emit at best +2.03 kg CO2 eq. The use of waste heat significantly reduces the energy consumption of the process. Compared to traditional FA production methods, the processes also show substantial reductions in ozone depletion, fossil fuel depletion, and other environmental impacts. The novelty of this study lies in its analysis of DAC technology using projected and actual operational data from a DAC development company, which is unique in academic studies. This enhances the accuracy of the LCA and provides a robust foundation for understanding the environmental impacts and benefits of the proposed system. This study also aims to be the first LCA to analyze the life cycle impacts of DAC-to-FA conversion technology.

Graphical abstract: Life cycle assessment of formic acid synthesis utilizing CO2 from direct air capture

Supplementary files

Article information

Article type
Paper
Submitted
18 Feb 2025
Accepted
15 Apr 2025
First published
22 Apr 2025
This article is Open Access
Creative Commons BY license

RSC Sustainability, 2025,3, 2404-2421

Life cycle assessment of formic acid synthesis utilizing CO2 from direct air capture

N. Badger, D. Mattice, M. Atwood and S. Amini, RSC Sustainability, 2025, 3, 2404 DOI: 10.1039/D5SU00111K

This article is licensed under a Creative Commons Attribution 3.0 Unported Licence. You can use material from this article in other publications without requesting further permissions from the RSC, provided that the correct acknowledgement is given.

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