On July 18,2026, the 30,000 Nm³/h nitrogen production facility built by Yingde Gases for a Fortune Global 500 chemical company successfully completed commissioning and began supplying high-quality nitrogen gas, fully ensuring the company's production needs while further strengthening their strategic cooperation in the new energy industry chain.
This nitrogen generation system was designed, manufactured, and constructed by Yingde Engineering, a subsidiary of Yingde Gases, demonstrating outstanding advantages in environmental sustainability, energy efficiency, and flexible adaptability. The system fully utilizes the gas resources of the existing air separation unit, significantly reducing operational costs.
Yingde Gases’ Hyper series nitrogen generators offer a comprehensive product range spanning from 10,000 Nm³/h to 65,000 Nm³/h, tailored for diverse application scenarios. Their front-end purification employs a high-temperature intake process, eliminating the need for pre-cooling equipment throughout most of the year and significantly enhancing energy efficiency. This low-energy-consumption, highly reliable solution represents Yingde Gases’ commitment to delivering exceptional value to customers.
Upon commissioning, the project will fully unleash the enterprise's production capacity, enabling customers to transition toward higher-end, environmentally sustainable, and large-scale operations. It will foster a highly competitive new energy industry cluster and set a benchmark for the high-quality development of the regional new materials sector.
The commissioning of this large-scale nitrogen production facility with a capacity of 30,000 Nm³/h marks a pivotal strategic milestone for Yingde Gases in its expansion into the new energy materials sector. Leveraging this project, Yingde Gases will continue to enhance its high-end gas product portfolio, establish a standardized and integrated nitrogen supply system, deliver cost-competitive one-stop gas solutions to customers, and further amplify the company's economies of scale in the new energy field.