CHINA POWER Pu'an Power Generation Co., Ltd has reached a strategic partnership with Huawei Digital Energy Technology Co., Ltd.
Join hands to expand the green transportation field, build a new zero-carbon freight system in mining areas, and use collaborative research to help companies with green and low-carbon transformation, and support dual-carbon development in the region.
On June 3rd, at the 19th Shanghai SNEC International CECEP Solar Energy Photovoltaic and Smart Energy Exhibition, CHINA POWER Pu'an Power Generation and Huawei Digital Energy Technology Co., Ltd. officially signed a strategic cooperation framework agreement to jointly expand the field of green transportation and build a new zero-carbon freight system in mining areas. This collaboration aims to support enterprise's green and low-carbon transformation through industry research collaboration, and to serve the development of carbon neutrality in the region.
As an important strategic support point for CHINA POWER's (02380) layout in Guizhou, CHINA POWER Pu'an Power Generation leverages the advantages of the southwestern area of Guizhou to expand the regional new energy industry. It has deep collaboration with local large coal mines, metallurgy and other key enterprises, and possesses unique and advantageous green electricity transportation application scenarios. Huawei Digital Energy is a top global digital energy solution service provider, relying on the advantages of power electronics and digital technology to have leading technological strength in the fields of light storage charging, full liquid cooling ultra-fast charging, and source-grid-load storage integration.
This strategic cooperation between the two parties focuses on green transportation innovation. Through the model of "full liquid cooling wind-light storage charging integrated ultra-fast charging station + intelligent microgrid + full green electricity local production and consumption", with the core of creating a "green electricity heavy truck ultra-fast charging network", innovatively implementing a "point-line-surface" hierarchical landing approach to comprehensively solve the high energy consumption and high emission challenges of regional freight transportation, and to build a replicable and scalable zero-carbon transportation development model. At the same time, the two parties will deeply explore innovative cooperative models in algorithm-electricity coordination, by scientifically allocating energy storage systems to supply charging and computing load nearby, activating local wind and solar green electricity resources, significantly improving the utilization rate of clean energy consumption.
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