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@@ -26,12 +26,7 @@ A Fast and Flexible Process Simulation Platform
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BioSTEAM is an open-source platform that streamlines the design, simulation, techno-economic
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analysis (TEA) and life-cycle assessment (LCA) of chemical processes across thousands
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of scenarios. BioSTEAM has been used to model a range of fermentation-based bioproduct pathways
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going from conventional/cellulosic crops, municipal solid waste, and flue gas all
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the way to diols, organic acids, oleochemicals, and biofuels. Newer applications
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for BioSTEAM include thermochemical upcycling of waste plastics through
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pyrolysis and solvent-based dissolution and precipitation.
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BioSTEAM is also leveraged by `QSDsan <https://qsdsan.readthedocs.io/en/latest/>`_,
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of scenarios. BioSTEAM is also leveraged by `QSDsan <https://qsdsan.readthedocs.io/en/latest/>`_,
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a library for the quantitative sustainable design of sanitation and resource recovery
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systems. The long-term growth and maintenance of BioSTEAM is supported
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through both community-led development and the research institutions invested in BioSTEAM,
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Scientific Papers
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-----------------
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Several studies have leveraged the BioSTEAM platform to compare conversion
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technologies, chart development pathways for various bioproducts, and build new
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tools for sustainability assessments. Here is a short list of related publications:
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BioSTEAM has been used to model a range of fermentation-based bioproduct pathways
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going from conventional/cellulosic crops, municipal solid waste, and flue gas all
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the way to diols, organic acids, oleochemicals, and biofuels. Newer applications
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for BioSTEAM include thermochemical upcycling of waste plastics through
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pyrolysis and solvent-based dissolution and precipitation. Several studies have leveraged the BioSTEAM platform to compare conversion
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technologies, chart development pathways, and build new tools for sustainability
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assessments:
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* **Software tools**:
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