| Automobile Components Industry | Consumer Discretionary Sector | Matthew Beale CEO | OTC PINK Exchange | 12514V204 CUSIP |
| US Country | 31 Employees | - Last Dividend | 18 Oct 2010 Last Split | - IPO Date |
CDTi Advanced Materials, Inc. is a prominent entity that specializes in delivering technology and solutions aimed at the automotive emissions control markets across the United States, Canada, and Europe. With a foundation laid in 1996 and having its headquarters in Oxnard, California, the company plays a pivotal role in advancing the development and distribution of catalyst products. These products are integral in reducing emissions and enhancing the performance of automotive exhaust systems. The company's clientele spans exhaust systems manufacturers, automakers, heavy-duty truck manufacturers, as well as catalyst manufacturers, distributors, integrators, and retrofitters, catering to a broad spectrum of needs within the automotive industry.
These catalysts utilize a unique formulation that combines platinum group metals to efficiently catalyze the oxidation of hydrocarbons and carbon monoxide in diesel exhaust, thereby reducing harmful emissions. They are particularly designed for diesel engines, offering an effective solution to meet stringent emission control regulations.
Offering an innovative approach to emission control, these catalysts are developed without the use of precious platinum group metals, presenting a cost-effective and environmentally friendly alternative. They are suitable for various applications, including automotive exhaust systems, where they help in reducing pollutants without the reliance on scarce PGM resources.
These catalysts play a crucial role in reducing nitrogen oxides (NOx) emissions from diesel engines. Through a chemical reaction with ammonia, they convert NOx into harmless nitrogen and water, effectively addressing one of the most significant challenges in diesel emission control. They are essential for applications requiring compliance with strict NOx emission standards.
Enhancing the traditional use of rhodium in catalysts, these products incorporate base metals to improve the performance and durability of rhodium-supported catalysts. They are used in exhaust systems to catalyze the reduction of nitric oxide and the oxidation of hydrocarbons and carbon monoxide, optimizing the purification process of automotive emissions.