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Shenmu¡¯s Green Power Generation Project Kicked off by Efficient Utilization of Calcium Carbide Residual Energy

2025-3-12

On March 8th, Shenmu Calcium Carbide held a feasibility study report preparation and survey meeting for the "Green Power Generation Project with Efficient Utilization of Calcium Carbide Surplus Energy". The meeting was attended by the relevant person in charge of Shenmu Calcium Carbide and personnel from Shaanxi Northwest Thermal Power Engineering Design Consulting Co., Ltd.

At the meeting, Shenmu Calcium Carbide provided a detailed introduction to the overall planning and technical requirements of the project. Shaanxi Northwest Thermal Power listened carefully to the analysis and put forward professional opinions. The company stated that it would fully leverage its professional advantages and scientifically and rigorously lay out project feasibility plans to ensure that the technical path and environmental standards reach the top level in China. After the meeting, both parties conducted on-site inspections and surveys, clarifying the path for the subsequent construction work of the project.

Under the guidance of the national strategic goal of "peak carbon emissions and carbon neutrality", Shenmu Calcium Carbide actively responds to policy calls and drives industrial upgrading through technological innovation. It plans to build a green power generation project with 150MW self use and surplus grid connected generators. This project mainly achieves surplus energy recovery and power generation by efficiently utilizing tail gas generated during the production process of calcium carbide. After the completion, the project can further release the production capacity of Shenmu calcium carbide, while reducing the cost of purchasing electricity for enterprises, forming a green development loop of "resource recycling-cost reduction and efficiency improvement-pollution reduction and carbon reduction", and helping enterprises break through energy consumption bottlenecks and unleash production capacity potential.