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Pyrolysis Technology Empowers Waste Tire Recycling: A Core Driver for Green Transformation

The recycling and disposal of waste tires represent a shared global environmental challenge. Traditional landfilling and stockpiling methods not only consume vast land resources but also pose significant risks of soil contamination and fire hazards. In contrast, pyrolysis technology efficiently converts waste tires into high-value energy products, achieving comprehensive resource circularity and serving as a critical enabler for green, low-carbon, and circular development. As an industry leader, Niutech has overcome multiple technical barriers to successfully implement waste tire pyrolysis technology in numerous industrial projects worldwide, injecting robust momentum into the circular economy.

01 Pyrolysis Technology: Enabling Resource Regeneration from Waste Tires

Tire pyrolysis technology transforms waste tires into high-value products such as fuel oil, carbon black, and steel wires, truly realizing “waste-to-wealth” and reshaping the tire recycling industry. As the ultimate treatment method for waste tires, this technology achieves three key objectives: harmless treatment, waste reduction, and resource recovery, representing a viable pathway for rubber chemical recycling. Through pyrolysis, waste tires are converted from “discarded materials” into “green resources” and from “tires to fuel.” Advanced processes and equipment ensure efficiency, safety, and environmental sustainability throughout the treatment process, achieving a 100% comprehensive utilization rate for waste tires.

Niutech’s industrial continuous waste tire pyrolysis production line not only stably produces fuel oil, carbon black, and steel wires but also enables large-scale, continuous, and green production under fully enclosed and environmentally safe conditions.

02 Significant Environmental Advantages: Pioneering Green and Low-Carbon Transformation

Pyrolysis technology offers multiple advantages over traditional treatment methods:

– Resource Circularity: Near 100% resource conversion rate, significantly reducing reliance on virgin raw materials and conserving natural resources.

– Complete Pollution Control: Fully enclosed production processes eliminate secondary pollution, achieving truly harmless treatment.

– Economic and Environmental Synergy: “Waste-to-wealth” transformation creates jobs and tax revenue while reducing pollution and carbon emissions, driving sustainable development.

– Enhanced Global Competitiveness and CBAM Compliance: Niutech’s projects have obtained dual ISCC EU/PLUS certifications for international sustainability and carbon standards, ensuring pyrolysis products meet the requirements of global high-end green energy markets. Against the backdrop of the EU Carbon Border Adjustment Mechanism (CBAM), this technology provides a practical pathway for enterprises to enhance international competitiveness, access high-value markets, achieve ESG goals, and participate in carbon trading.

03 Global Industrialization and Demonstrative Impact

Niutech’s tire pyrolysis equipment has been deployed across multiple Chinese provinces, including Xinjiang, Shandong, Hunan, and Hubei, and successfully promoted to countries such as Germany, Denmark, Brazil, Hungary, Turkey, India, and Thailand.

– The German project complies with stringent EU and German environmental and technical standards.

– The Hungary project, funded by the EU, passed EU testing and certification in a single review.

– In 2024, Niutech partnered with Hesheng GreenTech to advance a 200,000-ton/year waste tire pyrolysis project, poised to become the world’s largest comprehensive tire utilization project.

Representing a new generation of treatment methods, pyrolysis technology aligns with the environmental principles of “resource recovery, harmless treatment, and waste reduction” and the strategy of green and low-carbon development. Through technological innovation and global promotion, Niutech continues to provide industry benchmarks for the circular economy, waste tires a new green lifecycle.

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