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    2. Shandong Huiyin Energy Co., Ltd.

      Huiyin have supplied more than 600 MW of receivers to power plants all over the world, with its high performance contributes decisively to making tomorrow’s energy production possible today.

      In 2008 Huiyin started the production of vacuum receivers for parabolic concentrators. The production of receivers was moved from Beijing to Weihai in 2010.
      Huiyin has produced in its facilities over 600 MW of receivers for commercial power plants around the world, including molten salt project. Huiyin is the only receiver producer that has molten salt tube technology. At the moment Huiyin is supplying to a 1GW project.

      Huiyin has strong government partners including the Chinese Ministry of Finance, The China Development Bank, The State Development and Investment Corporation and the Belgium Ministry of Public Enterprises.

      Huiyin bankable superior receivers with outperforming technology are more durable and offer an extended life time and are the first serviceable receivers in the market.
      Huiyin excellence in production, proven high volume capability and ability to develop new products for its clients make it today the preferred CSP receiver supplier of the industry.

      Leading Technology

      Re-evacuation technology

      · Longer service life
      · Reduced maintenance cost
      · No need to stop the whole loop in order to replace receiver tubes.

      Glass metal seal technology

      · Super mechanical strength
      · High thermal shock resistance
      · long working life

      Highly efficient solar selective surface technology

      Nano-meter composite coating structure can greatly reduce the solar reflection loss and emission loss. By adjusting the chemical composition and preparation process parameters, high optical performance and thermal stability can be obtained.

      Anti-reflection coating technology with self-clean effect

      Hydrophobic and self-clean effect can effectively protect the AR-coated glass envelop from degradation in its transmittance caused by rain and dew.