Techno-economic and CO2 net assessment of dimethyl carbonate production from biomass-derived methano
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The increasing concern over greenhouse gas emissions, particularly CO2, has
emphasized the urgency for practical solutions to mitigate the environmental impacts of
climate change. This study assessed the technical, economic, and environmental feasibility
of producing dimethyl carbonate (DMC) through an integrated route using methanol derived
from biomass gasification in sugarcane-based industries. Unlike previous studies that
analyzed isolated aspects of DMC production, this research was conducted through process
modeling and simulation in Aspen Plus® V12.1, evaluating key performance indicators
such as conversion rates, product purity, capital and operating expenses, and CO2 emissions.
A DMC conversion rate of 78.06% and a purity level of 96.80% were achieved. However,
the integration of methanol production increased both CAPEX and OPEX, leading to a net
present value (NPV) of R$ 36.7 million over 10 years, lower than alternative routes using
commercially available methanol. Additionally, the process resulted in a net CO2 emission
of 3.41 kg CO2 per kg of DMC, exceeding conventional methods. These findings suggest
that under the evaluated conditions, process integration did not offer economic advantages,
despite many environmental advantages over commercially available methanol.
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CUSTODIO, Renan Fagunde et al. Techno-economic and CO2 net assessment of dimethyl carbonate production from biomass-derived methanol. Processes. Basel, v. 13, e573, 2025. DOI: 10.3390/pr13020573. Disponível em: https://www.mdpi.com/2227-9717/13/2/573. Acesso em: 31 jul. 2026.