首页> 外文会议>ISES (International Solar Energy Society) Solar World Congress;ASES (American Solar Energy Society) Annual Conference;National Passive Solar Conference >CONCEPTUALIZATION OF RENEWABLE ENERGY BALANCING CYCLE (REBC) FOR HYDROGEN PRODUCTION AND MITIGATION OF THE GLOBAL WARMING THROUGH SOLAR THERMAL POWER GENERATION
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CONCEPTUALIZATION OF RENEWABLE ENERGY BALANCING CYCLE (REBC) FOR HYDROGEN PRODUCTION AND MITIGATION OF THE GLOBAL WARMING THROUGH SOLAR THERMAL POWER GENERATION

机译:设想用于制氢的可再生能源平衡循环(REBC)以及通过太阳能发电来缓解全球变暖

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Global warming and environmental degradation due to the accelerated use of fossil fuels, their depletion and cost escalation for electricity generation, transportation and other purposes is forcing us to make use of a cleaner to cleanest fuel may . Such cleanest fuel may be the hydrogen produced through renewable energy routs. So far cost effectiveness of hydrogen produced through the conventional means and its use for the power generation on continuous basis is debatable. It is predicted that the hydrogen produced through renewable energy would be the cost effective in very near future. This paper conceptualizes a renewable energy balancing cycle (REBC) for the production of hydrogen and oxygen on large scale using UT-3 process with value addition as airconditioning, space cooling, chilling, desalination of sea water and salt production under convergence schemes of solar thermal power generation (STPG) through pressurized volumetric air receiver (PVAR) technology. Nonavailability of renewable energy on continuous basis for power generation may be compensated by use of stored hydrogen, produced through renewable energy. This concept of renewable energy balancing cycle (REBC) may be one of the options in the near future for the production of ultimate fuel (hydrogen) of the future which may be helpful to mitigate the global warming, rising of the sea level and forecasted shortage of potable water. Key words: Hydrogen production, Convergence schemes,Pressurized Volumetric Air Receiver Technology, UT-3 process, Renewable Energy Balancing Cycle (REBC)
机译:由于加速使用化石燃料,其消耗以及发电,运输和其他目的的成本上升,导致全球变暖和环境恶化,这迫使我们不得不使用更清洁的燃料。这种最清洁的燃料可能是通过可再生能源路线产生的氢气。迄今为止,通过常规手段生产的氢气及其连续使用发电的成本效益尚待商effectiveness。据预测,通过可再生能源生产的氢气将在不久的将来具有成本效益。本文概念化了一个可再生能源平衡循环(REBC),用于利用UT-3工艺大规模生产氢气和氧气,并在太阳能热能收敛方案下为空调,空间冷却,冷却,海水淡化和盐分生产等附加值增压容积式空气接收器(PVAR)技术来发电(STPG)。可通过使用通过可再生能源产生的储存氢来补偿连续产生的可再生能源在发电方面的不可用性。这种可再生能源平衡循环(REBC)的概念可能是在不久的将来生产未来最终燃料(氢)的一种选择,这可能有助于缓解全球变暖,海平面上升和预计短缺的情况。饮用水。关键词:制氢,收敛方案,加压容积式空气接收器技术,UT-3工艺,可再生能源平衡循环(REBC)

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