Official Bidding Begins for Heat Recovery Power Generation in Anhui Guangde South Cement’s 7,500 t/d Clinker Line Optimization and Upgrade Project
Release time:
2025-02-19
Recently, the bidding for the heat recovery power generation project for Anhui Guangde South Cement’s 7,500 t/d clinker line optimization and upgrade initiative, undertaken by Nanjing Kesen Kenen, has been officially launched. This bidding process aims to identify equipment suppliers offering advanced technology, reliable quality, and excellent service, ensuring the smooth progression of the project. Representatives from the project owner, relevant company leadership, and department technical heads attended the meeting.
This endeavor marks another collaboration with China National Building Material Group and Tianshan Cement, following successful partnerships on the Hunan Shaofeng South Cement, Jinlei South Cement, and Bijie Southwest Cement projects. It adopts the high-efficiency waste heat reheating technology developed by Nanjing Kesen Kenen and features an intelligent control system. This breakthrough transforms traditional heat recovery power generation processes, significantly improving waste heat recovery and intelligence level. Actual calculations indicate that, compared to conventional units, the power output can increase by around 10%, with the additional investment recovered in approximately 1.5 years. This achievement not only recognizes the results of previous joint efforts but also underscores both parties’ commitment to continued exploration in green energy.
Launching the bidding for this project not only signifies the further application of reheat technology in heat recovery power generation projects but also exerts far-reaching influence on the entire cement industry’s heat recovery power generation supply chain. Whether installing new systems or retrofitting existing ones, the spread of this technology is set to open new opportunities for development and bring fresh momentum to the cement industry’s pursuit of sustainable growth.