TECHNOLOGY DESCRIPTION RECYCLING TECHNOLOGY PROCESSING PLASTIC WASTE MATERIALS INTO LIQUID FUEL OR INTO AN ELECTRICAL ENERGY AND A HEAT ENERGY INTO AN.

Slides:



Advertisements
Similar presentations
Product Introduction FOUT Worlds First Vaporizing-type Food Disposer.
Advertisements

Work Work: Work is said to be done when the point of application of a force moves and it is measured using the product of force and the distance moved.
Energy Energy: Energy is the capacity of a body to do work.
Approximate efficiency of an average coal-fired power plant
September Wood to Warmth – Bioenergy Appliances Michael Beech TV Energy.
The REMake project: Recycling and resource efficiency in manufacturing Forum on Environmental Goods & Services and Green Business Models Brussels, 15 October.
Site Waste Management Plans and the Code
1 Energy Efficiency and Iowa Utilities Presentation to the Energy Policy Advisory Forum, convened by Governor-Elect Chet Culver January 4, 2007 Presented.
Site Selection March 2010.
O T F O R D T O O L & G A U G E C O M P A N Y L I M I T E D The Design and Manufacture of Mini Applicators O T F O R D T O O L & G A U G E C O M P A N.
Pressboard panel recycling Unit [11] Recycling of Pressboard Panels The recovered Wood chips will be sold to the to the chip board and the pulp industry.
Plasma and Renewable Energy Center (PREC)
Market Presence Grows with Environmental Concerns.
Great team work. Rominserv Valves IAIFO Rominserv Valves Iaifo is the largest Romanian manufacturer of steel and cast iron valves, considering the diversity.
Appliance Exam. 1. Energy Star appliances exceed minimum US Government energy standards by ______% or more? a. 15% b. 10% c. 30% d. 50%
Exhaust Heat Recovery Systems
Buckeye Wood Energy Converting Waste Wood Into Energy.
U.S. Energy Information Administration Independent Statistics & Analysis 2014 Electricity Forms Re-clearance Vlad Dorjets, Form EIA-860 Project.
Renewable Energy Pathway Presentation.. What are Energy Pathways. Energy pathways are complete cycles that start with a raw material with energy potential.
Welcome to the Presentation of Plasma Based HNO3 Manufacturing Plant
© OECD/IEA 2010 Data Compilation Issues for Electricity and Heat Energy Statistics Workshop Beijing, China, Sept Pierre Boileau International Energy.
Manufacturing technology Introduction
PART 75 SPAN & RANGE Manuel J Oliva Clean Air Markets Division
JJ, your No.#1 high quality manufacturing source ! Electrical Products Since 1998.
Summary of Transport Application of the SRA draft, version December 2004 H2/FC TP SRA - Transport Applications Applications Fuel Cell System Technical.
Environmental Recycling Technologies plc (ERT) The Powder Impression Moulding (PIM) Process Revolutionising the use of recycled plastics.
© Fraunhofer UMSICHT Asja Mrotzek, Fraunhofer UMSICHT / Energy Technology International Forum of R&D for Eco-innovation: Research for combining environmental.
Triple Effect of Reject to Power on Joburg’s Waste Vision
Chemistry 121/122. Natural Gas  Made up of hydrocarbons with low molar masses (mostly methane)  Good for combustion because it burns with a hot, clean.
BASFORD GAS WORKS REMEDIATION USING SOIL WASHING TECHNOLOGY.
Objectives: Understand importance of utility and maintenance system in industry/plant.
„Business opportunities in waste treatment” Conference -Tel Aviv
Investigating ways to increase the efficient use of Electrical Energy in the Manufacturing Industry MALTA.
ENERGY SOURCES. ALTERNATIVE ENERGY SOURCES Geothermal Energy comfort… savings... environment.
Presentation Using PowerPoint
Case Studies Implementation of EMAS in the Cleaning Material Sector 1 ETIV - EMAS Technical Implementation and Verification 1 Project ETIV – EMAS TECHNICAL.
Steam Power Station Presented By Ashvin G. Patel Asst. Prof. (E.E.)
1.3 billion dollars 49% of our company 1 massive hostile takeover… …of.
Chapter 24 Addition polymers
The plastic age Suggest 10 items made of plastics. What are they made of before the invention of plastics? - used as daily products - used as substitutes.
Cleaner Technology - CT for Factories Cleaner Technology Unit Bureau of Industrial Environment Technology Department of Industrial Works Copyrights of.
Environmental issues in food manufacturing and packaging.
THE CHEMICAL INDUSTRY Revised from:
By: Newaz Ahmed. C.2.1  Compare the use of oil as an energy source and as a chemical feedstock.
A WORLDWIDE UNIQUE TECHNOLOGY Environmentally friendly.
Refinery Processes Muhammad Fahad Ansari.
California Power Authority Industrial Development Bonds For Energy Financing $30 MILLION IN TAX-EXEMPT* FINANCING AVAILABLE NOW Borrowers must qualify.
R E C Y C L I N G.
Chapter 14: Energy: A Fuels Paradise Chemistry for Changing Times 10 th edition Hill/Kolb Daniel Fraser University of Toledo, Toledo OH ©2004 Prentice.
TAOYUAN ENVIRONMENTAL SCIENCE & TECHNOLOGY PARK BUSINESS INVITATION SEMINAR PRESENTATION OF PREFERENTIAL MEASURE & COUNSELING ENVIRONMENTAL PROTECTION.
CBIA Next Generation Manufacturing “Green” Technologies May 20, 2005.
Literature Survey Mohammed Al-Mohsen Yaqoub Bader Ali Mohammed Al-Faraj Nasser Al-Ajmi Ali Shamsaldein
Plastics A. Plastic is a common name for polymers: materials made of long strings of carbon and other elements. Each unit in a string is called a monomer,
8 th Grade Chemistry Ms. Mudd.  What are some properties of organic compounds?  What are some properties of hydrocarbons?  What kind of structures.
Refining Crude Oil Picture courtesy of HowStuffWorks Copyright © HowStuffWorks, Inc. All rights reserved.
Plastic is an organic substance, such as wood, paper, wool. Arises from natural resources, mainly coal, common salt, gas and especially oil in world production.
PROCESS DESIGN DEVELOPMENT
QUOVADIS – PRACTICE OF SRF IN EUROPE:THE CASE OF NEW MEMBER STATES EU THE POTENTIAL POSSIBILITIES OF BULGARIA IN SRF USAGE. PRELIMINARY SRF DATA ABOUT.
.  1.Leaderships in energy and environmental design (LEED). 2.Khalifa tower Environment friendly. 3.Elevators of Khalifa tower. 4.Evacuation and fire.
We use at our unit polymeric membranes to separate hydrocarbons without heating feedstock to the boiling point, and without using fired heaters.
Exhaust Heat Recovery Systems
 II THE ADVANTAGES OF ELECTRICITY
Energy Management and Planning MSJ0210
Clean Technology (PB382) Click to edit Master title style Numfon Eaktasang, Ph.D.
What is a Product Life Cycle?
What is a Product Life Cycle?
JSC «Vasilevsky glass factory»
Solid Waste ? The amount of solid waste generated in parallel with increasing population, urbanization and industrialization is increasing rapidly and.
Catalytic Conversion of Waste Rubber into Liquid Oil Fuels: Lab scale and Industrial scale.
Nadine ALLEMAND Objectives of the presentation
Presentation transcript:

TECHNOLOGY DESCRIPTION RECYCLING TECHNOLOGY PROCESSING PLASTIC WASTE MATERIALS INTO LIQUID FUEL OR INTO AN ELECTRICAL ENERGY AND A HEAT ENERGY INTO AN ELECTRICAL ENERGY AND A HEAT ENERGY

Plane of innovation of Technology Characteristic of raw material Raw Material Condition Stages of technological process Depolymerisation process (scheme) Diagram of units location PCP Green Power Unit The end product Technical data Work modes The stages in bussines range The Awards Commercial information THE PRESENTATION PLAN TECHNOLOGY DESCRIPTION

ENERGYENERGY THE ENERGY FROM PLASTIC WASTE IS REUSED THE ENERGY FROM PLASTIC WASTE IS REUSED ECOLOGYECOLOGY LADFILDS EXTENSION BY REDUCTION OF LONG-TERM BIODEGRADATION WASTE LADFILDS EXTENSION BY REDUCTION OF LONG-TERM BIODEGRADATION WASTE ECONOMYECONOMY PLASTIC WASTE PROCESSED INTO MARKETING END PRODUCT OR AN ELECTRICAL ENERGY OR A HEAT ENERGY PLASTIC WASTE PROCESSED INTO MARKETING END PRODUCT OR AN ELECTRICAL ENERGY OR A HEAT ENERGY TECHNOLOGY DESCRIPTION The Plane of Innovation of Technology

Re-granulation mechanical recycling, Plastic disposal, Combustion. Recycling technology processing plastic waste materials into liquid fuel or into an electrical energy and a heat energy. UTYLIZATION METHODS UNTIL NOW UTYLIZATION T -Technology TECHNOLOGY DESCRIPTION The Plane of Innovation of Technology 2.

Sybmors are suitable to European Union designation. TECHNOLOGY DESCRIPTION Characteristic of Plastic Waste Material 1.

POLIETYLEN Is the product of ethylene polymerization. It is used for the manufacture of plastic materials for the production of packages and bags, insulations, cables, conductors, acid-proof pipes for building and chemical industries, bottles, toys and lots of household products. It is used for the manufacture of plastic materials for the production of packages and bags, insulations, cables, conductors, acid-proof pipes for building and chemical industries, bottles, toys and lots of household products.POLIPROPYLEN is the product of propylene polymerisation. Owing to its high mechanical and heat resistance it is used for manufacture of a wide variety products including packaging for chemicals and foodstuffs, piping and casing elements for various kinds of equipment. Owing to its high mechanical and heat resistance it is used for manufacture of a wide variety products including packaging for chemicals and foodstuffs, piping and casing elements for various kinds of equipment. TECHNOLOGY DESCRIPTION Characteristic of Plastic Waste Material 2.

Raw Material Condition 1. TECHNOLOGY DESCRIPTION

Before loading the charge does not need to be ground with the exception of hard elements with an area exceeding 100 x 100 cm. This recommendation pertains particularly to elements such as: auto bumpers, boxes, computer cases, canisters and other large objects. It does not require any additional cleaning. Raw Material Condition 2. TECHNOLOGY DESCRIPTION

1)Supply and preparation of the raw materials in necessary quantities. 2)The depolymerization process by catalytic method. 3)Storage of the end product. 4)The end product is used to the turbine run. * * Forth stage depend on the customer Stages os Technological Process The process of transformation plastic wastes into an electrical energy and a heat energy run according to following scheme:

TECHNOLOGY DESCRIPTION Depolymerisation Process (Scheme)

TECHNOLOGY DESCRIPTION 1. Raw material store 2. Manual feed 3. Rectifier 4. Stack 5. Heating system heat exchanger 6. Reactor 7. Rectifier system heat exchanger 8 Heating system 9.Cleaning system heat exchanger 10. Cleaning system final storage 11. Finished product store 12. Inspection & Control system Diagram of units location

TECHNOLOGY DESCRIPTION PCP Green Power Unit SYSTEM PLACEMENT WITH THE FINAL PRODUCT – AN ELECTRICAL ENERGY AND A HEAT ENERGY AND A HEAT ENERGY Supply the raw material Storage of the raw material 2 x PCP sets Storages of final product Boiler Turbine

min. 1 PCP – FINAL PRODUCT AS THE LIQUID FUEL COMPOUND According to the results of detailed analyses of the final product carried out by recognized laboratories: The product does not contain sulphur and chlorine – it is a valuable product for many sectors of industry. It is composed of hydrocarbons with a relatively high number of methyl groups (- CH2 -). It does not contain significant quantities of aromatic compounds (no benzene detected); it does not contain any compounds composed of carbonyl and alcohol groups; neither triple bonds nor coupled double bonds are found. Particular fractions of hydrocarbons characterised by different boiling points may be separated by means of distillation. TECHNOLOGY DESCRIPTION Final product 1.

min. 2 PCP + turbine - FINAL PRODUCT THE ELECTRICAL ENERGY AND THE HEAT ENERGY Efficiency of turbine approx. 5 MW electrical energy 4 MW heat energy 4 MW heat energy TECHNOLOGY DESCRIPTION Final product 2.

1 PCP 2 PCP + turbine Raw material – t/mo. Raw material – t/mo. Final product – 250 – 350 t/mo. Final product – 250 – 350 t/mo. (liquid fuel compound) (liquid fuel compound) Power supply - 240/400 [V] Power supply - 240/400 [V] Average consumption of natural gas - approx 40 [m3/h] Average consumption of natural gas - approx 40 [m3/h] Catalyst consumption – 0,15 % of input mass Catalyst consumption – 0,15 % of input mass Recommended area of the production: Recommended area of the production: min 20x20 m height 6.5 m min 20x20 m height 6.5 m Raw material – ton/mo Raw material – ton/mo Final product – approx. 5 MW electrical energy & 4 MW heat energy Final product – approx. 5 MW electrical energy & 4 MW heat energy Power supply - 240/400 [V] Power supply - 240/400 [V] Average consumption of natural gas - approx 80 [m3/h] Average consumption of natural gas - approx 80 [m3/h] Catalyst consumption– 0,15 % of input mass Catalyst consumption– 0,15 % of input mass Recommended area of the production : Recommended area of the production : min 40x60 m height 10 m min 40x60 m height 10 m TECHNOLOGY DESCRIPTION Technical Data

The offered production technology runs in a continuous mode of TECHNOLOGY DESCRIPTION 6800 hours per year. Work Modes

Stage 1: Signature the contract of installation purchase Stage 1: Signature the contract of installation purchase Stage 2: The selection of immovables Stage 2: The selection of immovables Etap 3: Obtainment indispensable permissions Etap 3: Obtainment indispensable permissions Stage 4: The assembly and start-up the installation Stage 4: The assembly and start-up the installation Stage 5: Exploatation of the installation Stage 5: Exploatation of the installation TECHNOLOGY DESCRIPTION The Stages In Business Range

The technology on Gold Medal in IV edition EEP Awards FOR INNOVATIVE ENVIRONMENTAL TECHNOLOGY INNOVATIVE ENVIRONMENTAL TECHNOLOGY Pollutec 2006 Fair Lyon. Pollutec 2006 Fair Lyon. TECHNOLOGY DESCRIPTION The Awards

Developed & Technology Service Poland 97 – 400 Bełchatów, ul. Jasna 9 Factory & Customer Service Kecel II.Rákóczi F. út Hungary The Commercial Information TECHNOLOGY DESCRIPTION