[Inner Mongolia's first new generation coal-fired power pilot starts construction] In August 2026, Inner Mongolia Energy Group Baotou Xiguitu Power Generation Phase II 1 × 600000 kW new generation coal-fired power pilot demonstration project officially started construction. The total investment of this project is 2.544 billion yuan, and it is the first unit in the autonomous region to receive national approval for thermal power energy conservation. It is planned to be put into operation in 2028. As the core regulating support power source of Mengxi Power Grid, the project will solve the problem of large-scale wind and solar power consumption and promote the integration of wind, solar, thermal and storage. Editor/Cheng Liting
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  • 2026.08.13 15:23
  • [Guangzhou MiC Intelligent Construction Demonstration Base starts construction]
  • Recently, China Construction Hailong Guangzhou Intelligent Construction Industry Base officially started construction in Baiyun Lake High tech Industrial Park. The project has a net land area of 130 acres and a total construction area of 225300 square meters. After gradually being put into operation in 2027, the annual output value is about 1.4 billion yuan. Editor/Cheng Liting
  • 2026.08.13 15:22
  • [The first ISO international standard for fusion feeding in China has been released]
  • On August 11, 2026, it was learned from China National Nuclear Corporation that the international standard ISO 19991:2026 "Fusion Technology - Experimental Magnetic Constrained Fusion Facilities - Ultrasonic Molecular Beam Injection Feeding Technology for Fusion Devices", led by China, was officially released. This is the first ISO international standard in the field of fusion feeding. Ultrasonic molecular beam injection feeding technology is a key fuel supply technology for controllable nuclear fusion devices. This technology is an advanced fusion feeding technology originally developed in China, which has the characteristics of fast speed, strong directionality, high feeding efficiency, and low particle recycling. It can significantly improve the fuel control capability of fusion devices and has been applied in more than ten magnetic confinement fusion experimental devices at home and abroad. Editor/Cheng Liting
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