From August 7 to 10, 2026, a major global event in the biochar field—the 3rd International Conference on Biochar Research and Application and the 2026 IBI Biochar World Congress—will be grandly held in Zhengzhou, China. The conference will bring together scientific experts, industry representatives, and green technology enterprises from around the world to explore cutting-edge topics such as biochar production technology, carbon sequestration, the development of high-value carbon materials, and the industrial application of biochar.

As a professional manufacturer of biomass carbonization equipment, Zhengzhou Dingli Group extends its warm congratulations on the convening of this international event. For years, Zhengzhou Dingli has been dedicated to the R&D of biomass resource recycling technologies, providing global clients with efficient and eco-friendly biomass carbonization solutions. The company actively promotes the transformation of agricultural and forestry waste into high-value biochar products, contributing to global green and low-carbon development.

Keeping pace with industry trends and through continuous technological innovation, Zhengzhou Dingli has developed a series of carbonization equipment suitable for processing various biomass raw materials. These include continuous biomass carbonization equipment, batch carbonization furnaces, biomass pyrolysis equipment, activated carbon production equipment, and integrated biomass drying and carbonization production lines. Utilizing advanced pyrolysis and carbonization technologies, these systems precisely control temperature, residence time, and atmospheric conditions to ensure the thorough decomposition of biomass raw materials, ultimately yielding high-quality biochar products with high fixed-carbon content.

Zhengzhou Dingli’s carbonization equipment boasts broad feedstock adaptability, capable of processing diverse biomass waste from agricultural, forestry, and industrial sectors. Through carbonization, previously difficult-to-utilize agricultural waste is transformed into economically valuable biochar products—such as barbecue charcoal and hookah charcoal—thereby realizing resource recycling. Notably, coconut shells and palm shells, due to their high fixed-carbon content, serve as key raw materials for producing premium biochar and activated carbon. Forestry biomass waste, once carbonized, yields high-quality wood-based biochar suitable for widespread application in agriculture, horticulture, environmental filtration, and carbon emission reduction.

In recent years, Zhengzhou Dingli’s carbonization equipment has served clients across numerous countries and regions, delivering comprehensive solutions for local biomass resource utilization tailored to specific client requirements and local geographical conditions. This series of integrated biomass carbonization equipment has been successfully deployed in numerous projects worldwide. Featuring high-efficiency pyrolysis technology, a modular design adaptable to various scales, and automated controls ensuring stable operation, the equipment transforms agricultural waste into high-quality biochar—suitable for soil remediation, clean fuel, and adsorption materials—thereby delivering a win-win of environmental and economic benefits for clients.
Looking ahead, Zhengzhou Dingli remains committed to the field of biomass resource utilization. We will continue to increase investment in R&D and enhance the automation of our carbonization equipment to provide global clients with increasingly efficient, energy-saving, and eco-friendly biochar production solutions. Through the platform provided by the 3rd International Conference on Biochar Research and Application and the 2026 IBI Biochar World Congress, Zhengzhou Dingli looks forward to exploring the limitless possibilities of the biochar industry alongside global research institutions and corporate partners. Our goal is to transform more biomass waste into "green wealth" and contribute the strength of Chinese manufacturing to global carbon reduction targets and sustainable development.