presentation db technologies

30

Upload: bio-energy-management

Post on 25-Dec-2014

111 views

Category:

Technology


0 download

DESCRIPTION

SEPARATE – Accelerating the market uptake of an innovative separation and cleaning system for bio-waste from MSW db technologies BV has received a European grant to accelerate the market uptake of its innovative separation and cleaning system that radically improves the quality of bio-waste stemming from Municipal Solid Waste (MSW) and separate bio-waste collection. Through this eco-innovative process, bio-waste can be effectively recycled and used in anaerobic digestion instead of losing valuable organic material through incineration or landfilling.

TRANSCRIPT

Page 1: Presentation DB Technologies
Page 2: Presentation DB Technologies

Municipal solid waste has always been considered a problem to be

solved as quickly as possible disposing of it in the landfills.

If we change the approach to the waste, it is possible to find a rich

source of recyclable materials and energy.

Page 3: Presentation DB Technologies

Municipal solid waste as a resource is composed of

three main product groups:

- Recyclable materials

- Organic fraction

- Dry fraction

Page 4: Presentation DB Technologies

WET

DRY

Paper 2%

Wood, chipboard

2%

Plastic 6%

Rubber 0.5%

Textiles 1%

Glass 1%

Metal 1%

Inerts 20%

Bio-waste 60%

Miscellaneous 7%

Page 5: Presentation DB Technologies

MSW contains

40-45% biodegradable waste

55-60%, residual waste

25-30% of the total amount is water

Biological waste contains

70-80% biodegradable waste

15-20%, residual waste

65-75% of the total amount is water

Page 6: Presentation DB Technologies

How can we process biological

waste and MSW ?

Once the potential of the different components of the waste is

identified, it is possible to design the recovery process:

» recycling of materials

» energy recovery from the wet fraction

» energy recovery from the dry fraction

Page 7: Presentation DB Technologies

Test with two different pressures

1000 kg and 3000 kg

The compression principle

Page 8: Presentation DB Technologies

DRY Inorganic WET Organic

Page 9: Presentation DB Technologies

The pressure extrusion process performed by VMpress consists of high-pressure (600–

1000 bar) treatment of Municipal Solid Waste.

The waste is squeezed in special extrusion chambers fitted with holes in the external

surface.

As a result of the high pressure, the organic part of the waste is extracted through the

holes and physically separated from the dry one.

The extruder press

Page 10: Presentation DB Technologies

VMpress develops two different machines:

» MSW/domestic waste » biological waste

From waste to energy:

the heart of the process is the press

Page 11: Presentation DB Technologies

• The MSW is loaded into a chamber;

• the material is compressed at extremely high pressure;

• cellular materials behave similar to a liquid and are pressed from

the waste, which is a perfect start for digestion;

• what remains is a dry waste fraction with a higher caloric value.

The VM Press

Page 12: Presentation DB Technologies

The dry fraction of the VM press

The dry fraction from the extruder press can be used as rdf in grid

burning plants or re-used as recyclable material.

It is composed of plastics, cardboard, wood and inert materials.

Its main characteristics are:

humidity: 18-20 %

low heating value: 12.000 – 16.000 kJ/kg

inert content: sand, stones, glass 25 %

density: 0,5-0,8 t/m3

Page 13: Presentation DB Technologies

The dry fraction from the VMpress

From the press-extruded dry fraction it is easily possible to produce high

quality RDF, because of its high pressure treatment.

The several following processes are:

- screening

- wind sifting

- optical sorting

- magnetic separation

Page 14: Presentation DB Technologies

The wet fraction squeezed out of the extrusion chambers can be put into

anaerobic digestion plants for the production of biogas.

Its main characteristics are:

Humidity: 55-80 %

COD: 725.000,00 mg/l

BOD5: 325.000,00 mg/l

Residue 105 °C: 47 %

Residue 600 °C: 42 %dm

Organic substance content: 65 %dm

The wet fraction from the VMpress

Page 15: Presentation DB Technologies

The wet fraction from the VMpress

The material that is extruded from the waste is broken and

opened up for digestion;

the material is extruded through a mesh so it contains no

large items;

it is easily transportable;

total solids 30-35%, so less water in dry fraction;

perfect for dry digestion.

Page 16: Presentation DB Technologies

Collect Cardboard - Glass – Metals – Wood – Elettrical – Organic biomass – Inert materials

PRESSURE EXTRUDER

DRY FRACTION (60 %) O.M.G. (40 %) ORGANIC MATTER GEL

Screening

(Inert separation – magnetic separation)

R.D.F. REFUSE DERIVED FUEL

THERMIC TRASFORMATION

COGENERATION

(GAS TURBINE – STEAM TURBINE)

ELECTRIC

EFFICIENCY 30 %

ELECTRIC ENERGY

ASH 5 - 10%

ANAEROBIC DIGESTOR

MUDS DIGEST BIOGAS

DEHYDRATE

DRIED

THERMAL

EFFICIENCY34 %

PURIFY

DESHUMIDITY

COGENERATION

(GAS TURBINE – STEAM TURBINE)

THERMIC ENERGY

Municipal Solid Waste

Page 17: Presentation DB Technologies
Page 18: Presentation DB Technologies
Page 19: Presentation DB Technologies

Overview of a VMpress system with dry fermentation and preparation

of dry fraction

Page 20: Presentation DB Technologies

Cleaning system

Page 21: Presentation DB Technologies

Screening with Lamella Wave screen

Top deck: lamella grid for coarse screening

Bottom deck: flip-flow screen

Page 22: Presentation DB Technologies

Ballistic Wind sifting

» Hard parts bounce and roll on conveyor

» Lighter parts are lifted up by the air flow

Page 23: Presentation DB Technologies

Star screen

» separates fine material from the dry fraction

» separates large fraction from the compost

Page 24: Presentation DB Technologies

Ballistic separator

» Ballistic separator to separate soft from hard

Page 25: Presentation DB Technologies
Page 26: Presentation DB Technologies
Page 27: Presentation DB Technologies
Page 28: Presentation DB Technologies
Page 29: Presentation DB Technologies
Page 30: Presentation DB Technologies