Why Choose Our SCR Ceramic Substrate?
Maximum NOx Conversion Efficiency: The precisely engineered honeycomb structure provides a vast surface area for coating the SCR catalyst, ensuring optimal contact between exhaust gases and DEF for superior NOx reduction.
Excellent Thermal Durability: Manufactured from high-grade Cordierite or Silicon Carbide (SiC), our substrates withstand extreme temperatures and rapid thermal cycling, preventing cracking and ensuring long service life.
Low Thermal Expansion & High Porosity: This combination ensures minimal stress under heat and allows for deep, uniform catalyst wash-coating, leading to consistent performance and durability.
High Geometric Surface Area (GSA): A higher GSA means more active sites for the chemical reaction, directly translating to higher conversion efficiency in a compact package.
Customizable Cell Density: We offer a range of cell densities (e.g., 200 CPSI, 300 CPSI, 400 CPSI) to perfectly balance backpressure and catalytic performance for your specific application.
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SCR
HOONPAI
5801651187
Working Principle of DOC+CDPF
Doc: Oxidation of No to No2 and removal of CO and HC.
CDPF: the captured carbon particles react with NO2 at low temperature to produce CO2 emissions.
Reactions in CDPF
