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- W2032877255 abstract "Abstract Technical and economic aspects of equivalent hydrogen (moles of H2+moles of CO potentially converted to H2) production from biosolids produced in wastewater treatment are evaluated in this paper. ASPEN+ simulation of the gasification of biosolids and coal provides the basis for the analysis of the technical performance of a gasification process. The General Electric (GE, formerly Texaco) Gasifier was chosen for the study. The solids are assumed to be slurried as 50 wt% or 70 wt% solids (typical and maximum attainable) as feed streams for the gasifier with water. In this study, the incremental raw material costs (feed+oxygen) for gasification plants producing the same annual quantity of H2 from coal and/or biosolids are compared. It may be seen that under the conditions of this study, the estimated cost of H2 production may be significantly reduced when biosolids are included in the feed materials to gasification, but only when the avoided disposal costs of the biosolids are considered. Keywords: Biomass gasificationhydrogen productiongreen energy Acknowledgement Technical support and guidance from C.C.Churn, John Barber, and Craig Schmidt of Eastman Chemicals Company, Kingsport, Tennessee is gratefully acknowledged. We also gratefully acknowledge the support from various personnel of Knoxville Utility Board and Nashville Utility Board in furnishing data pertaining to municipal sludge transportation and disposal. This work was funded by a joint arrangement between the US Department of Energy and the Eastman Chemical Company." @default.
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- W2032877255 date "2006-08-01" @default.
- W2032877255 modified "2023-09-28" @default.
- W2032877255 title "Green Production of Hydrogen from Excess Biosolids Originating from Municipal Waste Water Treatment" @default.
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- W2032877255 doi "https://doi.org/10.1080/01496390600745743" @default.
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