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Pyrolysis Plant Manufacturer & Gasification Equipment | BL Engineering

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Pyrolysis process is a thermal disintegration of organic material into lower hydrocarbons particularly in the absence of oxygen. it can be treated as the ultimate waste management and recycling technology. – PowerPoint PPT presentation

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Title: Pyrolysis Plant Manufacturer & Gasification Equipment | BL Engineering


1
PLASMA PYROLYSIS SYSTEM RANGE 5 - 500 Kg/Hr
R
BLU-TEK
Technology l icensed from
?Âľ? ?????????? ???3??? Institute for Plasma
Research Department of Atomic Energy
Government of India
R
BLU-TEK
B L ENGINEERING
2
PLASMA PYROLYSIS SYSTEM RANGE 5 - 500 Kg/Hr
Pyrolysis process is a thermal disintegration of
organic material into lower hydrocarbons
particularly in the absence of oxygen. It results
in the formation of combustible gases, organic
liquid, char and tar in varying quantity
depending upon the feed composition, heating
rate, temperature of pyrolysis and residence
time. The amount of char and tar formation
reduces as the pyrolysis temperature increases.
The temperature of plasma zone is approx.
10,000C and the surrounding temperature is
600C1200C.
AGRO WASTE TO ENERGY
Speci?cations subject to change without prior
notice due to continuous technical development.
ANIMAL CARCASS DISPOSAL
In plasma pyrolysis the most likely compounds
which are produced include carbonaceous matter,
methane, carbon monoxide, hydrogen, carbon
dioxide and water molecules. These product gases
are combustible. The exhaust gases generated on
combusting the product gases include CO2, N2,
H2O. The product gases recovered has calori?c and
commercial values. These gases can be used as a
heat source or as fuel. The amount of gas
recovered depends solely upon type of waste and
amount of waste. As the system can recover
energy from the waste while safely disposing it,
plasma pyrolysis can be treated as the ultimate
waste management and recycling technology.
BIOMEDICAL WASTE DISPOSAL
RECOVERY FROM FMCG WASTE
ENERGY RECOVERY FROM BAGASSE
Key Points Waste to energy Low opertional
cost Sterilization of residue Low carbon foot
print Minimized ash generation No generation of
dioxin furan Less time to heat waste
Volumetric weight reduction Low foot
print Emission norms as per USEPA MoEF norms
Capacity Range
Type of Waste
ENERGY RECOVERY FROM TAR SAND OIL
5-500 kg/Hr
Solid
5-500 kg/Hr
Biomedical
5-500 kg/Hr
Pharmaceutical
RADIO ACTIVE WASTE
Municipal Solid
50-500 kg/Hr
Waste
25-500 kg/Hr
Industrial Waste
5-500 kg/Hr
Hazardous Waste
SAFE DISPOSAL
OF MSW
R
9 1 9 9 7 4 1 3 7 6 3 6 9 1 7 6 0 0 0 3 3
6 2 2 9 1 7 9 4 0 0 8 3 7 1 3
P l o t N o . 4 5 5 , Phase II, G.I.D.C.
Vatva,
BLU-TEK B L ENGINEERING
Ahmedabad - 382 445.
Gujarat (IN).
info_at_blengineering.net blengineering_at_hotmail.com
www.blengineering.net
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