首页> 外文会议>14th International Conference on Nuclear Engineering 2006(ICONE14) vol.3 >PUT A COALATOM IN YOUR TANK: THE COMPELLING CASE FOR A MARRIAGE OF COAL AND NUCLEAR ENERGY
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PUT A COALATOM IN YOUR TANK: THE COMPELLING CASE FOR A MARRIAGE OF COAL AND NUCLEAR ENERGY

机译:在您的储罐中放置一个煤层:将煤和核能结合起来的令人信服的案例

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摘要

Increasing costs and security concerns with present fossil energy sources, plus environmental concerns related to CO_2 emissions and the emergence of new technologies in the energy and transportation sectors set the stage for a marriage of convenience between coal and nuclear energy. As the price of oil continues to increase and supply becomes increasingly constrained, coal offers a secure domestic alternative to foreign oil as a source of liquid fuels. However, conventional technologies for converting coal to liquid fuels produce large quantities of CO_2 that must be released or sequestered. Advanced nuclear technologies, particularly the High-Temperature Gas-Cooled Reactor (HTGR), have the potential to produce hydrogen via water splitting; however, the transportation and storage of hydrogen are significant barriers to the "Holy Grail", the Hydrogen Economy. In a coaluclear marriage, the hydrogen and oxygen provided by nuclear energy are joined with coal as a source of carbon to provide liquid fuels with negligible CO_2 release from the process. In combination with emerging hybrid vehicles, fuels based on a coaluclear marriage promise stable prices, increased domestic security and a reduction in CO_2 emissions without the need to completely replace our transportation fuels infrastructure. The intent of this paper is to outline the technical basis for the above points and to show that process energy applications of nuclear energy can provide the basis for answering some of the tougher questions related to energy and the environment.
机译:当前化石能源的成本和安全问题日益增加,再加上与CO_2排放有关的环境问题以及能源和交通运输部门新技术的出现,为便利煤与核能的结合奠定了基础。随着石油价格的持续上涨和供应的日益紧张,煤炭提供了一种可靠的国内替代外国石油作为液体燃料来源的国内替代品。但是,用于将煤转化为液体燃料的常规技术会产生大量的CO_2,必须将其释放或隔离。先进的核技术,特别是高温气冷堆(HTGR),具有通过水分解产生氢的潜力;然而,氢的运输和储存是阻碍氢经济的“圣杯”的重要障碍。在煤/核联姻中,由核能提供的氢和氧与作为碳源的煤结合在一起,从而为液态燃料提供了从过程中释放出来的可忽略的CO_2。与新兴的混合动力汽车相结合,基于煤/核联姻的燃料有望实现稳定的价格,提高的国内安全性和减少的CO_2排放,而无需完全取代我们的运输燃料基础设施。本文的目的是概述以上几点的技术基础,并表明核能的过程能源应用可以为回答一些与能源和环境有关的更棘手的问题提供基础。

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