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Preliminary study of high energy density Zn/Ni flow batteries

机译:高能量密度Zn / Ni液流电池的初步研究

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The escalation of power system promotes the development of energy storage technologies (ESTs). Among all of ESTs, battery technologies develop quickly and diversely because of its huge application market. Aqueous redox flow batteries (RFBs) are very attractive to customers in the energy grid system, and their noticeable technological innovations in past decades are driving them to gradually replace the conventional ESTs under certain circumstance. Here, the first fully-flow-able zinc-nickel flow battery (ZNFB) is preliminary reported in this paper, and its superior performance is supposed to be suitable for both large-scale storage need and carry-on powertrain in cars. Through using semi-solid fuel cell (SSFC) technology, we incorporates the beneficial features of Zn/Ni chemistry (essentially sustainable, eco-friendly and deposit-abundant) into RFB structure to make a "hybrid" flow battery system, which can take the advantage of both. The relationship between carbon loading and suspension conductivity is determined. Electrochemical properties of ZNFB as static test, cycling test, and fully flowing test are studied to demonstrate our design. (C) 2015 Elsevier B.V. All rights reserved.
机译:电力系统的升级促进了储能技术(ESTs)的发展。在所有EST中,电池技术因其巨大的应用市场而迅速而多样化地发展。水性氧化还原液流电池(RFB)在能源网格系统中对客户非常有吸引力,并且其在过去几十年中的引人注目的技术创新正驱使他们在某些情况下逐渐取代传统的EST。在此,本文首次报道了首个可完全流通的锌镍液流电池(ZNFB),其优越的性能被认为既适合大规模存储需求,又适合于车载随身动力总成。通过使用半固态燃料电池(SSFC)技术,我们将Zn / Ni化学的基本优点(本质上是可持续的,环境友好的和沉积丰富的)整合到RFB结构中,以制造出“混合”液流电池系统,两者的优势。确定碳载量和悬浮液电导率之间的关系。研究了ZNFB的电化学性能,如静态测试,循环测试和全流动测试,以证明我们的设计。 (C)2015 Elsevier B.V.保留所有权利。

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