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Cost-Effective, High-Efficiency 70 MW Energy Storage Plant Based on Patented Pressurized Liquid Air Energy Storage (LAES) Technology Has Lower Cost of Energy Compared to Battery Energy Storage Systems

机译:与电池储能系统相比,基于专利加压液空气储能(Laes)技术的基于专利加压液空气储能(Laes)技术的高效高效70 MW储能设备

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Expansion Energy LLC's patented "VPS Cycle" technology converts surplus grid power into moderate-pressure liquefied air stored in above-ground cryogenic tanks, which is later converted back into power during peak demand periods through an innovative, highly efficient discharge process. In addition to being a liquid air energy storage (LAES) system, the VPS Cycle is a new type of advanced combined cycle power generation plant which does not use water or steam for its bottoming cycle and which has significantly higher thermal efficiency (72%+) versus standard combined cycle power plants (55-60%). The VPS Cycle effectively utilizes waste cold and waste heat from within the power cycle to generate significantly more power by incorporating a patented Organic Rankine Cycle (ORC) process. This ability to convert more of the potential energy stored in the moderately pressurized cryogenic liquid air into electricity results in a substantially higher “round-trip efficiency” (RTE) than other LAES cycles and other bulk power storage systems, as high as 90%+. Discharge times can be 2-10 hours per day. Scales range from 10 MW to 500+ MW. Using industry-standard economic methodologies, it has been determined that the VPS Cycle has the lowest Levelized Cost of Energy (LCOE) of any power storage system available today. VPS’s LCOE is typically $125-$135/MWh versus $200-$400/MWh for compressed air energy storage (CAES); $185-$275/MWh for pumped hydro; and $350- $750/MWh for lithium ion batteries (in each case assuming a power “charging” price of $50/MWh). VPS’s LCOE is also lower than simple-cycle peaker plants ($220- $300/MWh). The VPS Cycle technology is presently being considered for commercial deployments by several large North American utilities. One 70 MW VPS project is expected to reduce CO2 emissions by > 10 million metric tons over its lifetime and to stimulate > 200 MW of new wind power as the VPS plant's "charging" (liquefaction) electricity source. In addition to stand-alone VPS plants deployed on the grid, the integration of the VPS technology “behind-the-meter” at industrial facilities that have some amount of waste heat and/or surplus cryogenic fluid (especially liquid nitrogen or liquid oxygen from air separation plants) which can be utilized by the Cycle are particularly attractive, both for technical/efficiency reasons and for optimal economics. VPS integrations can also convert gas-fired peaker plants into daily, long-duration energy storage plants with approximately 2X the efficiency of the peaker itself and with no additional greenhouse gas emissions (GHGs).
机译:扩展能源LLC的专利“VPS循环”技术将剩余电网功率转换为存储在地上低温罐中的中等压力液化空气,后来通过创新的高效放电过程在峰值需求期间转换回电力。除了液体空气储能(LAES)系统之外,VPS循环还是一种新型的高级联合循环发电厂,不使用水或蒸汽的底部循环,其热效率显着更高(72%+ )与标准组合循环发电厂(55-60%)。 VPS周期有效地利用来自电源循环内的废冷和废热,通过掺入专利的有机朗肯循环(ORC)工艺来产生显着更大的功率。这种能够将存储在中等加压的低温液体空气中的更多潜在能量转换为电力导致电力基本上更高的“往返效率”(RTE),而不是其他Laes循环和其他散装储存系统,高达90%+ 。放电时间每天可以为2-10小时。鳞片范围为10 MW至500+ MW。使用行业标准的经济方法,已经确定VPS周期具有今天可用的任何蓄电系统的最低级别的能量(LCoE)。 VPS的LCoe通常为125-135美元/兆瓦,而压缩空气储能(CAES)为$ 200- $ 400 / MWH;泵浦水电185-275美元/毫克/毫秒;锂离子电池350-750美元/兆瓦(在每种情况下,假设为50美元/兆瓦的电源“充电”)。 VPS的LCoE也低于简单循环峰值植物(220-300美元/兆瓦)。目前,VPS循环技术正在考虑由几个大型北美公用事业的商业部署。预计一项70兆瓦的VPS项目将在其寿命上减少110万公吨的二氧化碳排放,并刺激> 200兆瓦的新风电作为VPS植物的“充电”(液化)电源。除了部署在网格上的独立VPS工厂外,VPS技术的整合在工业设施中的工业设施中有一定量的废热和/或剩余低温流体(特别是液氮或液体氧气可通过循环使用的空气分离厂特别吸引力,用于技术/效率原因和最佳经济学。 VPS集成还可以将燃气峰值植物转化为每日,长期储能设备,大约2倍的峰值本身的效率,没有额外的温室气体排放(GHG)。

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