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[Hot Item] Doc Catalytic Converter, Ceramic Catalytic Converter

[Hot Item] Doc Catalytic Converter, Ceramic Catalytic Converter

Product Description Company Info. Basic Info. Model NO. DOC Discharge Standard Euro IV Certification ISO9001 Component Catalytic Converter Material Cordierite Application as Catalyst Used in

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Product Details

Basic Info.

Model NO.
DOC
Discharge Standard
Euro IV
Certification
ISO9001
Component
Catalytic Converter
Material
Cordierite
Application
as Catalyst Used in Automobile/Motorcycle
Transport Package
Wooden Box and Pallet/Packed as Customers' Need
Trademark
DXY
Origin
China
HS Code
6909190000
Production Capacity
100, 000pieces/Month

Product Description

DOC Catalytic Converter, Honeycomb Ceramic Catalytic Converter:
Doc Catalytic Converter, Ceramic Catalytic Converter
The diesel oxidation catalyst (DOC) has become a leading retrofit control strategy in both the onroad and nonroad sectors throughout the world, reducing not only PM emissions but also CO and HC emissions. Using oxidation catalysts on diesel-powered vehicles is not a new concept. Oxidation catalysts have been installed on over 250,000 off-road vehicles around the world for over 30 years. Over 1.5 million oxidation catalysts have been installed on new heavy-duty highway trucks since 1994 in the U.S. These systems have operated trouble free for hundreds of thousands of miles. Oxidation catalysts have been retrofitted on over 750,000 on-road and off-road vehicles worldwide. Oxidation catalysts can be used not only with conventional diesel fuel, but have also been shown effective with biodiesel and emulsified diesel fuels, ethanol/diesel blends and other alternative diesel fuels.

In most applications, a diesel oxidation catalyst consists of a stainless steel canister that contains a honeycomb structure called a substrate or catalyst support. There are no moving parts, just large amounts of interior surface area. The interior surfaces are coated with catalytic metals such as platinum or palladium. It is called an oxidation catalyst because the device converts exhaust gas pollutants into harmless gases by means of chemical oxidation. In the case of diesel exhaust, the catalyst oxidizes CO, HCs, and the liquid hydrocarbons adsorbed on carbon particles. In the field of mobile source emission control, liquid hydrocarbons adsorbed on the carbon particles in engine exhaust are referred to as the soluble organic fraction (SOF)- the soluble part of the particulate matter in the exhaust. Diesel oxidation catalysts are efficient at converting the soluble organic fraction of diesel particulate matter into carbon dioxide and water. A conceptual diagram of a diesel oxidation catalyst is shown in Figure 1.

Doc Catalytic Converter, Ceramic Catalytic Converter

Physical Properties:
Property (uncatalyzed) 100/17 200/12
Cell density cpsi 100 200
cpscm 15.5 31.0
Wall thickness inch 0.017 0.012
mm 0.432 0.305
Open frontal area (OFA), % 34.5 34.5
Geometric surface area (GSA) Inch2 33.3 47.0
m2/l 1.31 1.85
Hydraulic diameter Inch 0.083 0.059
mm 2.11 1.49
Modulus of rupture (psi/cpscm) 350 300
Porosity (%) 48 48
Coefficient of thermal expansion
102cm/cm/ (20-800) --maximum average
5 5
Mean pore size (micron) 13 13
Melting temperature () 1460 1460

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