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Published byScot Carson Modified over 9 years ago
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Alachua County Solid Waste History and Future Current Solid Waste System Mixed Waste Materials Recovery Facility Organics Recycling Technologies
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Alachua County Reports Existing Solid Waste System Performance Report Financial Pro Forma Mixed Waste Materials Recovery Facility Conceptual Processing Options Potential Organics Recycling Technologies Organics Recycling Technologies, Technology Evaluative Factors
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History and Future 1988 0% Residential Recycling begins in Alachua County 1998 35% SWLF Closes LBEP Opens Long Haul to NRRL 2003 30% Mandatory Commercial Recycling 2008 29% Recession House Bill 7135 2010 49% 75% Recycling Goal Report Private Hauler Begins Direct Haul of Waste 2011 50% 75% Goal added to Comp Plan 2013 54% Surpassed 2014 & 2015 Goals 2016 60% 2018 70% 2020 75% How do we get here ? get here ?
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Current System GeneratorsCollectionProcessingDestination
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Composition of Landfilled Wastes
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MWMRF M ixed W aste M aterials R ecovery F acility Mechanical and Operational Improvements to existing Transfer Station to allow removal of additional recycled materials Options Option 1Manual Sorting Intensive/Low Capital Cost Option 2Mid-Range Technology Sorting/Mid-Range Capital Cost Option 3Fully Automated Sorting/High Capital Cost Option 3+Integrated MWMRF and DS-MRF
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MWMRF Option 1
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MWMRF Option 2
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MWMRF Option 3
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MWMRF Option 3+
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MWMRF Performance Current Transfer Station MWMRF Option 1 MWMRF Option 2 MWMRF Option 3 Daily MSW Processed (tons)600 Daily Inorganic Recyclables Recovered (tons) 051100160 Daily Organics Recovered (tons)052 77 County Recycling Rate (%)54616572 Capital Cost$0$6,100,000$8,000,000$13,800,000
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Organics Recycling Technologies Composting without Heat Recovery with Heat Recovery Anaerobic Digestion Low-Solids Liquid Continuous High-Solids Batch High-Solids Gasification Refuse-Derived Products Fuel Soil Amendment Pyrolysis
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Composting without Heat Recovery Sevier County Solid Waste, Sevierville, TN Engineered Compost Systems AC Composter System
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Composting with Heat Recovery Greater Moncton New Brunswick, Canada
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Anaerobic Digestion Low-Solids Liquids Harvest Power, Lake Buena Vista, FL Dufferin Organics Processing Facility Toronto, Canada
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DRAFT Anaerobic Digestion Batch High-Solid Zero Waste Energy Development Company San Jose, CA
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Anaerobic Digestion Continuous High-Solid DRANCO Plant in Busan, South Korea Plant
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DRAFT Gasification Fiberight Blairstown, VA Transportable Plasma Waste-to- Energy System, Air Force
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DRAFT Refuse-Derived Products Miami-Dade County Resource Recovery Facility, Miami, FL North County Resource Recovery Facility, Palm Beach, FL
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Pyrolysis INEOS Bio Pure Oxygen Gasification Vero Beach, FL
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Active Facilities
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Organics Recycling Technologies Recommendation Greatest amount of full-scale operational experience for organic Rich fractions of solid wastes: Composting without Heat Recovery Biogas Recovery and Utilization via Anaerobic Digestion Next Step Request for proposals (RFP) for selected technology or technologies
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DRAFT Organics Recycling Technologies
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DRAFT
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Alachua County Solid Waste History and Future Current Solid Waste System Mixed Waste Materials Recovery Facility Alternative Recycling Technologies
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Questions ?
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