4.7 Article

A Methodological Sustainability Assessment to Process Intensification (MSAtoPI) by reactive-separation systems

期刊

FUEL
卷 348, 期 -, 页码 -

出版社

ELSEVIER SCI LTD
DOI: 10.1016/j.fuel.2023.128562

关键词

Sustainability; Intensification; Biomass; IGCC; AR; MR

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In order to produce clean and cheap power, it is necessary to develop new technologies or improve existing processes based on sustainability criteria and alternative fuels. The integration of sustainability into process design helps eliminate or minimize negative effects. However, measuring sustainability performance and decision-making are crucial and challenging steps in developing sustainable industrial processes. This study introduces the framework of Methodological Sustainability Assessment to Process Intensification (MSAtoPI) as a methodological approach with appropriate sustainability indicators, which effectively analyzes and communicates complex process operations, and demonstrates its effectiveness in a biomass-based process for clean power production.
To produce clean and cheap power by eliminating the economic and energy penalties, it is necessary to develop new technologies or improve the existing processes based on sustainability criteria and alternative fuels. Inte-gration of sustainability into process design contributes to the achievement of this target by eliminating or minimizing negative effects. However, measuring sustainability performance and decision-making are crucial and challenging steps for the development of sustainable industrial processes. The framework for Methodological Sustainability Assessment to Process Intensification (MSAtoPI) is thus introduced in this study as a methodo-logical approach with appropriate sustainability indicators that ensures the capability of gathering and abstracting the complex process operations (energy, mass, and momentum transport phenomena), and that offers clear analysis and communication. The main concepts are demonstrated in practice by using a biomass-based, highly efficient, and ultra-compact process to produce H2 while simultaneously capturing CO2 in an IGCC (In-tegrated Gasification Combined Cycle) power plant, which is intensified by reactive-separation systems (a hybrid membrane reactor (MR)/adsorptive reactor (AR) system). MSAtoPI clearly concretizes that the proposed intensified reactive-separation systems have huge potential to produce clean and cheap power by eliminating the economic and energy penalties by having more sustainable natures (minimum:-18%, average:-75%, maximum:-140% improvement in sustainability).

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