4.7 Article

Nine watt - Level aqueous organic redox flow battery stack using anthraquinone and vanadium as redox couple

期刊

CHEMICAL ENGINEERING JOURNAL
卷 398, 期 -, 页码 -

出版社

ELSEVIER SCIENCE SA
DOI: 10.1016/j.cej.2020.125610

关键词

9 W AORFB stack; Vanadium (IV) oxide sulfate hydrate (VOSO4); Anthraquinone-2,7-disulfonic acid (2,7-AQDS); Ammonium chloride (NH4Cl); Magnesium sulfate (MgSO4)

资金

  1. National Research Foundation of Korea (NRF)
  2. Ministry of the Ministry of Education (MOE) [2019R1A2C1005776]
  3. Korea Institute of Energy Technology Evaluation and Planning (KETEP)
  4. Ministry of Trade, Industry & Energy (MOTIE) of the Republic of Korea [20172420108550]
  5. Korea Evaluation Institute of Industrial Technology (KEIT) [20172420108550] Funding Source: Korea Institute of Science & Technology Information (KISTI), National Science & Technology Information Service (NTIS)

向作者/读者索取更多资源

In this study, nine watt (9 W) aqueous organic redox flow battery (AORFB) stack using vanadium (IV) oxide sulfate hydrate (VOSO4) and anthraquinone-2,7-disulfonic acid (2,7-AQDS) as redox couple is developed for the first time. This redox couple is dissolved in sulfuric acid with cell voltage of 0.9 V and this is higher than that of other acid based AORFBs. Although this couple has precipitation and crossover issues of vanadium ions, they are solved by the adoption of two additives, ammonium chloride (NH4Cl) and magnesium sulfate (MgSO4). NH4Cl plays a role in preventing the precipitation problem by enhancing their dispersion capability, while MgSO4 can reduce the crossover problem by keeping the balance of ionic strength between two electrolytes. With that, the effects of concentration of VOSO4, flow rate, and current density on the performances of AORFB single cells using these two additives are evaluated. When the effects are considered, capacity retention is improved and the precipitation and crossover of vanadium ions are suppressed, and these induce a better cycle stability of AORFB. Eventually, the five AORFB single cells are stacked and this AORFB stack shows the excellent maximum power of 9 W at 120 mA.cm(-2), while its performance is well preserved for 200 cycles. From this study, we substantiate that the 9 W AORFB stack using organic and vanadium active materials is well achieved by using efficient additives and optimizing the operational factors.

作者

我是这篇论文的作者
点击您的名字以认领此论文并将其添加到您的个人资料中。

评论

主要评分

4.7
评分不足

次要评分

新颖性
-
重要性
-
科学严谨性
-
评价这篇论文

推荐

暂无数据
暂无数据