Formic acid synthesis using CO2 as raw material

Techno-economic and environmental evaluation and market potential

Journal Article (2016)
Author(s)

Mar Pérez-Fortes (European Commission Joint Research Centre)

Jan C. Schöneberger (Chemstations Europe GmbH)

A. Boulamanti (European Commission Joint Research Centre)

G. Harrison (European Commission Joint Research Centre)

Evangelos Tzimas (European Commission Joint Research Centre)

Affiliation
External organisation
DOI related publication
https://doi.org/10.1016/j.ijhydene.2016.05.199
More Info
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Publication Year
2016
Language
English
Affiliation
External organisation
Issue number
37
Volume number
41
Pages (from-to)
16444-16462

Abstract

The future of carbon dioxide utilisation (CDU) processes, depend on (i) the future demand of synthesised products with CO2, (ii) the availability of captured and anthropogenic CO2, (iii) the overall CO2 not emitted because of the use of the CDU process, and (iv) the economics of the plant. The current work analyses the mentioned statements through different technological, economic and environmental key performance indicators to produce formic acid from CO2, along with their potential use and penetration in the European context. Formic acid is a well-known chemical that has potential as hydrogen carrier and as fuel for fuel cells. This work utilises process flow modelling, with simulations developed in CHEMCAD, to obtain the energy and mass balances, and the purchase equipment cost of the formic acid plant. Through a financial analysis, with the net present value as selected metric, the price of the tonne of formic acid and of CO2 are varied to make the CDU project financially feasible. According to our research, the process saves CO2 emissions when compared to its corresponding conventional process, under specific conditions. The success or effectiveness of the CDU process will also depend on other technologies and/or developments, like the availability of renewable electricity and steam.

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