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Economics of Distributed Power Generation via Gasification of Biomass and Municipal Solid Waste

Categories: Waste Management, Community Planning
Source: Sustainable Living Library

Summary

Technical report (2020). Covers Oklahoma State University, Stillwater, Oklahoma. Topics: distributed power generation, gasification, biomass, municipal solid waste. Agencies: International Energy Agency, Oklahoma State University, IRS. Cites 49 external works.

Local Knowledge Graph (41 entities)

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Knowledge graph centered on Economics of Distributed Power Generation via Gasi with 41 nodes and 80 connections. Top connected: United States Environmental Protection Agency, United States Department of Agriculture, climate change, United States Department of Energy, energy harvest capacity.

Stakeholders (19)

Agencies, organizations, and groups mentioned as actors in this document.

United States Environmental Protection AgencyUnited States Department of AgricultureUnited States Department of EnergyNational Renewable Energy LaboratoryOak Ridge National LaboratoryIRSThe International Energy AgencyU.S. Department of Labor
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Oklahoma State UniversityMDPIOffice of Energy Efficiency and Renewable EnergyIntergovernmental Panel on Climate ChangeU.S. Energy Information AdministrationBloombergOSU Research FoundationOklahoma Agricultural Experiment StationIndonesia Endowment Fund for EducationEnvironmental Research and Education FoundationHazardous Materials Management Facility of Boulder County

External References Cited (49)

Works cited by this document, grouped by type.

article (26)

  • Economics of Distributed Power Generation via Gasification of Biomass and Municipal Solid Waste (2020)Natarianto Indrawan, Betty Simkins, Ajay Kumar, Raymond L. Huhnke
  • Modeling low temperature plasma gasification of municipal solid waste (2019)Indrawan, N.; Mohammad, S.; Kumar, A.; Huhnke, R.L.
  • Tar reduction in biomass syngas using heat exchanger and vegetable oil bubbler (2019)Thapa, S.; Indrawan, N.; Bhoi, P.R.; Kumar, A.; Huhnke, R.L.
  • Weighted Average Cost of Capital (WACC) (2018)Hargrave, M.
  • Technoeconomic and policy drivers of project performance for bioenergy alternatives using biomass from beetle-killed trees (2018)Campbell, R.M.; Anderson, N.M.; Daugaard, D.E.; Naughton, H.T.
Show 21 more article
  • Electricity power generation from co-gasification of municipal solid wastes and biomass: Generation and emission performance (2018)Indrawan, N.; Thapa, S.; Bhoi, P.R.; Huhnke, R.L.; Kumar, A.
  • Scale-up of a downdraft gasifier system for commercial scale mobile power generation (2018)Bhoi, P.R.; Huhnke, R.L.; Kumar, A.; Thapa, S.; Indrawan, N.
  • Co-gasification of Municipal Solid Waste and Biomass in a Commercial Scale Downdraft Gasifier (2018)Bhoi, P.R.; Huhnke, R.L.; Kumar, A.; Indrawan, N.; Thapa, S.
  • Effects of syngas cooling and biomass filter medium on tar removal (2017)Thapa, S.; Bhoi, P.R.; Kumar, A.; Huhnke, R.L.
  • Palm biodiesel prospect in the Indonesian power sector (2017)Indrawan, N.; Thapa, S.; Rahman, S.F.; Park, J.-H.; Park, S.-H.; Wijaya, M.E.; Gobikrishnan, S.; Purwanto, W.W.; Park, D.-H.
  • Experimental and economic study of small-scale CHP installation equipped with downdraft gasifier and internal combustion engine (2017)Elsner, W.; Wysocki, M.; Niegodajew, P.; Borecki, R.J.A.E.
  • The biogas development in the Indonesian power generation sector (2017)Indrawan, N.; Thapa, S.; Wijaya, M.E.; Ridwan, M.; Park, D.-H.
  • Commercial CFB Gasification of Waste and Biofuels—Operational Experiences in Large Scale (2015)Isaksson, J.
  • Recent advances in utilization of biochar (2015)Qian, K.; Kumar, A.; Zhang, H.; Bellmer, D.; Huhnke, R.
  • The effect of bioenergy expansion: food, energy, and environment (2014)Popp, J.; Lakner, Z.; Harangi-Rakos, M.; Fari, M.
  • Effects of biomass feedstocks and gasification conditions on the physiochemical properties of char (2013)Qian, K.; Kumar, A.; Patil, K.; Bellmer, D.; Wang, D.; Yuan, W.; Huhnke, R.
  • Biomass gasification for electricity generation: Review of current technology barriers (2013)Ruiz, J.A.; Juárez, M.C.; Morales, M.P.; Muñoz, P.; Mendívil, M.A.
  • Bonding strength of heat treated compressed Eastern redcedar wood (2012)Dilik, T.; Hiziroglu, S.
  • Power from wood gasifiers in Uganda: a 250 kW and 10 kW case study (2012)Buchholz, T.; Da Silva, I.; Furtado, J.
  • Process and technological aspects of municipal solid waste gasification. A review (2012)Arena, U.
  • Biomass downdraft gasifier with internal cyclonic combustion chamber: Design, construction, and experimental results (2011)Patil, K.; Bhoi, P.; Huhnke, R.; Bellmer, D.
  • Application of Plasma Gasification Technology in Waste to Energy—Challenges and Opportunities (2010)Pourali, M.
  • Waste-to-energy: A review of the status and benefits in USA (2009)Psomopoulos, C.S.; Bourka, A.; Themelis, N.J.
  • Performance improvement of the combined cycle power plant by intake air cooling using an absorption chiller (2006)Boonnasa, S.; Namprakai, P.; Muangnapoh, T.
  • Management of municipal solid waste incineration residues (2003)Sabbas, T.; Polettini, A.; Pomi, R.; Astrup, T.; Hjelmar, O.; Mostbauer, P.; Cappai, G.; Magel, G.; Salhofer, S.; Speiser, C.
  • Cost to produce and deliver switchgrass biomass to an ethanol-conversion facility in the southern plains of the United States (1996)Epplin, F.M.

report (17)

  • State Minimum Wage Laws (2020)
  • Analysis of MSW Landfill Tipping Feesi (2018)Staley, B.F.; Kantner, D.L.; Choi, J.
  • Cost of Capital—Current Market Value (2018)Bloomberg Finance L.P.
  • Hazardous Waste Disposal Costs for Businesses (2018)County, B.
  • Modified Accelerated Cost-Recovery System (MACRS) (2018)
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  • Publication 946 (2017), How To Depreciate Property (2018)
  • 100 kW Standby Generator (2018)Stratton, B.
  • Idaho Researchers Slash Cost of Providing Biomass for Biofuels Production (2018)Kenney, K.
  • Crop-Based Biofuels—Facts and Figures about Investments and Jobs (2017)Mestre, C.
  • 2016 Billion-Ton Report: Advancing Domestic Resources for A Thriving Bioeconomy (2016)Langholtz, M.H.; Stokes, B.J.; Eaton, L.M.; Brandt, C.C.; Davis, M.R.; Theiss, T.J.; Turhollow, A.F., Jr.; Webb, E.; Coleman, A.; Wigmosta, M.
  • Comparative Assessment of Gasification and Incineration in Integrated Waste Management Systems (2014)Wilson, B.
  • Assessment of the National Prospects for Electricity Generation from Biomass (2014)Nderitu, D.G.; Preckel, P.V.; Gotham, D.J.; Dobis, E.A.
  • A Comparative Assessment of Commercial Technologies for Conversion of Solid Waste to Energy (2013)Wilson, B.; Williams, N.; Liss, B.; Wilson, B.
  • Biomass Gasification Technology Assessment: Consolidated Report (2012)Worley, M.; Yale, J.
  • Renewable Energy Sources and Climate Change Mitigation: Special Report of the Intergovernmental Panel on Climate Change (2011)Edenhofer, O.; Pichs-Madruga, R.; Sokona, Y.; Seyboth, K.; Kadner, S.; Zwickel, T.; Eickemeier, P.; Hansen, G.; Schlömer, S.; Von Stechow, C.
  • Review of Technologies for Gasification of Biomass and Wastes (2009)E4tech
  • State Clean Energy Policies Analysis (SCEPA) Project: An Analysis of Renewable Energy Feed-in Tariffs in the United States (Revised) (2009)Couture, T.; Cory, K.

book (3)

  • Energy Finance and Economics: Analysis and Valuation, Risk Management, and the Future of Energy (2013)Simkins, B.; Simkins, R.
  • Fundamentals of Financial Management (2012)Brigham, E.F.; Houston, J.F.
  • Essentials of Managerial Finance (2000)Besley, S.; Brigham, E.F.

study (2)

  • Feasibility Study of Biopower in East Helena, Montana. A Study Prepared in Partnership with the Environmental Protection Agency for the RE-Powering America′s Land Initiative: Siting Renewable Energy on Potentially Contaminated Land and Mine Sites (2013)Moriarty, K.
  • Effects of Feed Composition and Gasification Parameters on Product Gas from A Pilot Scale Fluidized Bed Gasifier (2007)Cateni, B.G.

other (1)

  • Environmental Advantages of Gasification: Public and Agency Awareness (2015)Jenkins, S.