Power
HNTPC1 Wins EPC Contract for Qinghai Wanxiang Aluminum & Magnesium's Cogeneration Power Project
Henan No.1 Thermal Power Construction Company signed the engineering, procurement and construction general contract for the 700-megawatt cogeneration power project on March 1
Released Thursday, March 06, 2014
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Researched by Industrial Info Resources China (Beijing, China)--Henan No.1 Thermal Power Construction Company (HNTPC1) (Zhengzhou, Henan) signed the engineering, procurement and construction (EPC) general contract for Tianrui Group Qinghai Wanxiang Aluminum & Magnesium Company Limited's (Xining, Qinghai) 700-megawatt (MW) cogeneration power project on March 1.
HNTPC1 is a subsidiary of Power Construction Corporation of China (Power China) (Beijing). Zhou Zhiqiang, general manager of HNTPC1, and Liu Guosuo, vice president of Tianrui Group Company Limited (Pingdingshan, Henan) and chairman of Qinghai Wanxiang, signed the $390 million contract on behalf of both parties, according to Power China.
HNTPC1 will be responsible for the engineering, procurement, construction (including civil works and erection), testing and commissioning of the entire project.
The Qinghai Wanxiang Aluminum & Magnesium's Cogeneration Power Project, which is located in the Ganhe Industrial Park of Xining Economic and Technology Development Zone, is an investment by Tianrui Group. As a key step for Tianrui Group's cyclic economic development in Qinghai, the project will be furnished with two supercritical, circulated fluidized bed (CFB) boilers, with two 350-MW, indirect air-cooling, coal-fired, extraction-condensing steam turbine generating units, plus the balance of the plant to supply base load power and heat to Tianrui Group's proposed aluminum and magnesium industrial park in Xining.
The project will use coal shipped via a special railway. It will give priority to the use of urban intermediate water, and all production and wastewater will be recycled after processing. The project will include limestone-plaster, wet-type flue gas desulfurization devices, high-efficiency electrostatic precipitators, and selective catalyst reduction-based NOx control devices, as well as and a continuous emission monitoring system. The project will be connected to the grid via two 330-kilovolt transmission lines.
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