March 26, 2013. Fleet Maintenance ResidentialCommercial Mitigate local Landfill Impact Reduce local carbon footprint The SynTech Process (a “Local Economic.

Slides:



Advertisements
Similar presentations
Copyright © Rational Energies, LLC 2009 Waste To Fuels Company Overview.
Advertisements

Solid Domestic Waste IB Syllabus 5.5.1, AP Syllabus Ch 21 Personal Waste Audit Trashed video.
Bill Chynoweth Resource Management Partners Troy, Michigan Bill Chynoweth Resource Management Partners Troy, Michigan Renewable Energy Which way should.
ACHEIVING ENERGY INDEPENDENCE THROUGH SOLID WASTE?
Chapter 24 Solid and Hazardous Wastes
Chapter 24 Solid and Hazardous Waste
CE 326 Principles of Environmental Engineering Prof. Tim Ellis February 4, 2008 Municipal Solid Wastes
Anuchit Jayapipat 3 July 2014 MSW Technology Anuchit Jayapipat 3 July 2014.
“Garbage to Gas” Team Bravo Mentor Eleftherios Avtzis David Garcia
Construction + Demolition Waste Trends Trends in Construction and Demolition Waste in Oregon AOR Construction and Demolition Recycling Forum March 15,
Chapter 9 The Urban World. Population and Urbanization Jobs define urban vs. rural, not populations.
The most efficient Waste to Energy Technology Henry A. Melendez, Ph.D.
©October, 2006 Masada OxyNol  MASADA OxyNol, L.L.C. FINALLY, A CLEAN SMART SOLUTION TURNING WASTE INTO ETHANOL Presentation for Alternative Energy Solutions.
Striclty for educational purposes Final project in M.Sc. Course for teachers, in the framework of the Caesarea –Rothschild program of the Feinberg Grad.
+ Alliance Ventures Ltd. Advanced Renewable Projects Advanced Waste to Fuel Technology Efficient waste management solutions.
 By: Yesmil, Alorfy, Darwin & Jomar..  An organic material made from plants and animals.  Biomass contains stored energy from the sun.
Presentation Using PowerPoint
Municipal Solid Waste (MSW) as a Cellulosic Feedstock: Opportunities and Challenges David Bransby Professor, Energy Crops and Bioenergy Auburn University.
Özgül AYYILDIZ.  Thermal Processing of Solid Wastes  Combustion Systems  Pyrolysis  Gasification  Case Studies  Conclusion.
Biomass Electricity Megan Ziolkowski November 29, 2009.
Proprietary work product, not for reproduction 1 BIOMASS GASIFIER 20 MW POWERPLANT Energy & Environmental Integrators Note! This system can be scaled from.
ENERGY FROM BIOMASS. Biomass Biomass energy is energy produced from burning wood or plant residue, or from organic wastes (manure, dung). Algae is most.
CONVERSION TECHNOLOGIES The Future of Waste - to - Energy.
PAGMaW Plasma Arc Gasification of Municipal Solid Waste Thesis Presentation April 2, 2014 Celerick Stephens Masters Management (Marketing) Masters Engineering.
 Energy from Waste Mass burn technologies operating at extremely high temperatures Initially - no filtration for hazardous air emissions No federal or.
Miami Dade Resources Recovery Facility Operated By: Montenay Power Corporation.
Anaerobic Digestion and the Path Towards Zero Waste Paul Relis Senior Vice President CR&R Incorporated July 14,2009.
Waste Chapter 19.
Waste.
Environmental Impacts of Chemical Industries Dr. Lek Wantha.
1 Nursery Products Hawes Composting Facility Helping Farmers, Recycling Resources, Protecting the Environment.
Renewable & Nonrenewable Resources Lesson 2.4: “Solid Waste Management”
Life Cycle Assessment of Waste Conversion Technologies April 15, 2004.
ERT 319 Industrial Waste Treatment Semester /2013 Huzairy Hassan School of Bioprocess Engineering UniMAP.
Integrated Solid Waste Management ENVM 649: Principles of Waste Management and Pollution Control Dr. Robert Beauchamp.
Municipal Solid Waste Generation, Recycling, and Disposal in the U.S. for 2006 U.S. EPA Office of Solid Waste November 2007.
Solid Waste Ecological Issues Winter Mobro 4000 March 22, 1987 – 3,168 tons of garbage refused as landfill in Islip, NY Transferred onto the barge.
“Garbage to Gas” Team Bravo Eleftherios Avtzis David Garcia Bryan Isles Zack Labaschin Alena Nguyen Mentor Dan Rusinak Che Team Bravo.
Biomass Renewable Energy Source Michael Parsons. What is Biomass? Biomass Renewable Energy from Plants and Animals Biomass Renewable Energy from Plants.
Benefits to Recycling Mary Rieu-Sicart April 6, 2014.
Primenergy, L.L.C. Solids Gasification & Energy Generation.
Waste. Solid Waste Any discarded solid material The U.S. produces 10 billion metric tons of solid waste each year. The amount of waste generated by each.
Waste Treatment Pyrogasification PRESENTED BY: BASHIR CORBANI DATE: 17/10/2015.
Science based waste to renewable synthetic transportation fuels
We are REALLY excited to talk paper vs. plastic! We love packaging!
What is done with Waste/Trash?. Solid Waste: Generation of Waste.
Chapter 16 Waste Generation and Waste Disposal. Refuse collected by municipalities from households, small businesses, and institutions such as schools,
Smart Cities - Driving a New Economy – March 2016 David Lynch General Manager, Research and Development Enerkem biorefineries: A Smart City Solution for.
Used oil recycling clean wood reuse+recycling large-scale composting newsprint de-inking+recycling landfill design+operations communityequipment advanced.
Biomass Fuel Energy Planting the biomass in your life By: Mya Cavanagh.
__________________________ © Cactus Moon Education, LLC. CACTUS MOON EDUCATION, LLC ENERGY FROM PLANTS AND ANIMALS BIOMASS.
Thermal Waste Gasification (WG/TO) – Solid Waste Disposal & Electrocoagulation Water Purification & Treatment (EC) by International Environmental Technologies,
ECO tourism Carbon neutral footprint SustainabilityECO segmentsMonitoring & CertificationInvestment.
Southern California Emerging Waste Technologies Forum July 27, 2006 Conversion Technology 101.
Content 1.The main flowchart and technology 2.Advantage and disadvantages of each technology, way to improve. On-Nuch disposal site Group Member: Lu Li.
Options for Valorizing Solid Wastes
Chapter 24 Solid and Hazardous Waste
Seerdrum Processing of Municipal Solid Waste
PROBLEMS OF SOLID WASTES FORMATION & ENVIRONMENTAL POLUTION
Waste Generation and Waste Disposal
Making sustainability a reality: materials, energy and value
Ultra Clean Thermal and Plasma Technologies For the Future
MUNICIPAL SOLID WASTE MANAGEMENT IN AKSARAY
Waste management trash, recyclables, hazardous waste, nuclear waste, e-waste, biological waste, . . .
Waste Generation and Waste Disposal
Environmental Geotechnics
Wasted City Review.
PROCESSING & RECOVERY.
SOLID WASTE MANAGEMENT PRINCIPLES
Presentation transcript:

March 26, 2013

Fleet Maintenance ResidentialCommercial Mitigate local Landfill Impact Reduce local carbon footprint The SynTech Process (a “Local Economic Biosphere”®) 250 tons/day MSW Mitigation Sustainable Clean Energy Plant

Confidential & Proprietary; Property of SynTech Bioenergy, LLC © 2013 Advantages of ICER MSW to Power MSW Collected250 tons/day 65,000 tons/yr Conventional MSW Collection to Landfill Morris Materials Recovery Facility (MRF) Materials Separated to Recycle29,900 tons/yr45.9 Contained Carbon11,400 tons/yr40.3 Refuse Derived Feedstock32,900 tons/yr50.6 Contained Carbon tons/yr58.7 % MSW 2,200 tons/yr tons/yr40.3 To Landfill65,000 tons/yr Contained Carbon28,400 tons/yr

Confidential & Proprietary; Property of SynTech Bioenergy, LLC © 2013 Advantages of ICER MSW to Power Power and Fuels ProductionAvoided Conventional Fuel Use Power 6.1 MWhr 53,400 MWhr (annual) SynDiesel36,500 gallons Natural Gas55 million scfh 480 million scf Carbon Reduction7,600 tons Petroleum Diesel36,500 gallons Carbon Reduction102 tons Eliminated Transport Costs to Distant Landfills 9,360 Trips 1.7 million to 2.7 million gallons or petroleum diesel Carbon Avoidance4,700 – 7,600 Tons

Confidential & Proprietary; Property of SynTech Bioenergy, LLC © 2013 Permitting Air Quality Permits National Pollution Discharge Elimination System (NPDES) Permits and Plans Waste Management Permits Ecological Permitting Federal Aviation Administration Clearance Permit Noise Analysis Truck Traffic Analysis Local Permitting Requirements

The SynTech Process (a “Local Economic Biosphere”®) Fleet Maintenance ResidentialCommercial Mitigate local Landfill Impact Reduce local carbon footprint Material Receiving Material Recovery Residual Feedstock Processing Advanced Thermal Chemical Conversion Waste Heat Recovery Cooling Cleaning Filtration Power Generation Liquid Fuel Production Fleet Fueling Carbon Negative Footprint

The SynTech Process (a “Local Economic Biosphere”®) Fleet Maintenance ResidentialCommercial Mitigate local Landfill Impact Reduce local carbon footprint Material Recovery Residual Feedstock Processing Advanced Thermal Chemical Conversion Waste Heat Recovery Cooling Cleaning Filtration Power Generation Liquid Fuel Production Fleet Fueling Carbon Negative Footprint MaterialReceiving

Confidential & Proprietary; Property of SynTech Bioenergy, LLC © 2013 Material Receiving Process MSW Garbage Truck Loader Presort Infeed Conveyor

Confidential & Proprietary; Property of SynTech Bioenergy, LLC © 2013 Municipal Solid Waste (MSW) Metals, Steel Plastics Wood Glass Aluminum Textiles Yard Trimmings Inerts Food Paper and Paperboard

Confidential & Proprietary; Property of SynTech Bioenergy, LLC © 2013 Recoverable Materials MSW Materials Recovery Facility (MRF) Non-processable (i.e. rocks, concrete) Miscellaneous (wood, food, shoes, etc.) Paper Glass Metals Plastic

The SynTech Process (a “Local Economic Biosphere”®) Fleet Maintenance ResidentialCommercial Mitigate local Landfill Impact Reduce local carbon footprint Residual Feedstock Processing Advanced Thermal Chemical Conversion Waste Heat Recovery Cooling Cleaning Filtration Power Generation Liquid Fuel Production Fleet Fueling Carbon Negative Footprint Material ReceivingMaterialRecovery

Confidential & Proprietary; Property of SynTech Bioenergy, LLC © 2013 Material Recovery Inert and Oversize Materials Final Material Recovery MSW Residuals to Shredder From MSW Presort Trommel Screen

The SynTech Process (a “Local Economic Biosphere”®) Fleet Maintenance ResidentialCommercial Mitigate local Landfill Impact Reduce local carbon footprint ResidualFeedstockProcessing Advanced Thermal Chemical Conversion Waste Heat Recovery Cooling Cleaning Filtration Power Generation Liquid Fuel Production Fleet Fueling Carbon Negative Footprint Material Receiving Material Recovery

Confidential & Proprietary; Property of SynTech Bioenergy, LLC © 2013 RDFStorage Compaction & Densification Blending & Homogenization Feedstock Engineering ShredderDryer from MSW

The SynTech Process (a “Local Economic Biosphere”®) Fleet Maintenance ResidentialCommercial Mitigate local Landfill Impact Reduce local carbon footprint by ___t/yr Residual Feedstock Processing AdvancedThermalChemicalConversion Waste Heat RecoveryCoolingCleaningFiltration Power Generation Liquid Fuel Production Fleet Fueling Carbon Negative Footprint Material Receiving Material Recovery

Confidential & Proprietary; Property of SynTech Bioenergy, LLC © 2013 Advanced Thermal-Chemical Conversion Feedstock Storage Feedstock Holding Oxygen or Air Primary Ash Recovery Hot Syngas Feedstock Metering Fuel/Air Interface Fluid Bed Reactor Environmentally Friendly Salable Product Additional Ash Recovery CementFertilizer

Confidential & Proprietary; Property of SynTech Bioenergy, LLC © 2013 Reactor Process Oxygen deprived No flame or “burning” Self-Sustaining Endothermic Reaction Hot Syngas 1900° F RDF 700° F ° F Primary Ash Recovery Environmentally Friendly Salable Product CementFertilizer Oxygen or Air

Confidential & Proprietary; Property of SynTech Bioenergy, LLC © 2013 Syngas Filtration Syngas Receiver Syngas (Clean and Cool) Water RecycleReuse Waste Heat Recovery Cooling, Filtration, & Ash Collection Waste Heat Recovery & Syngas Cooling Environmentally Friendly Ash Collection Hot Syngas Cyclone CementFertilizer Syngas Scrubbing

Confidential & Proprietary; Property of SynTech Bioenergy, LLC © 2013 Environmentally Friendly Salable Ash Production ‘Primarily’ Unconvertible Minerals ‘Some’ Char (Unconverted Carbon) Proven Uses, Existing Markets Concrete Additive Soil Amendment Ash

The SynTech Process (a “Local Economic Biosphere”®) Fleet Maintenance ResidentialCommercial Mitigate local Landfill Impact Reduce local carbon footprint by ___t/yr Residual Feedstock Processing Advanced Thermal Chemical Conversion Waste Heat Recovery Cooling Cleaning Filtration PowerGeneration Liquid Fuel Production Fleet Fueling Carbon Negative Footprint Material Receiving Material Recovery

The SynTech Process (a “Local Economic Biosphere”®) Fleet Maintenance ResidentialCommercial Mitigate local Landfill Impact Reduce local carbon footprint by ___t/yr Residual Feedstock Processing Advanced Thermal Chemical Conversion Waste Heat Recovery Cooling Cleaning Filtration Power Generation LiquidFuelProduction FleetFueling Carbon Negative Footprint Material Receiving Material Recovery

Confidential & Proprietary; Property of SynTech Bioenergy, LLC © 2013 Advanced Liquid Fuel Production Sustainable SynTech SynDiesel (proprietary micro-refinery process) fuel gases Fleet Fueling Station Syngas CompressorHeater Synthesis Reactor Heavy Hydrocarbon Cracking Distillation SynTech SynDiesel Product (to Fueling or Storage) Cooler Storage

March 26, 2013