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首页> 外文期刊>Journal of CO2 Utilization >Exploration of alkali cation variation on the synthesis of carbon nanotubes by electrolysis of CO2 in molten carbonates
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Exploration of alkali cation variation on the synthesis of carbon nanotubes by electrolysis of CO2 in molten carbonates

机译:碱阳离子变异对碳酸氢水中CO2电解碳纳米管合成的探讨

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摘要

The electrochemical splitting of CO2 in molten carbonate salt electrolytes can form a valuable product, carbon nanotubes, and with this product a value-incentivized pathway of climate change mitigation by transforming CO2 from a greenhouse gas pollutant into a useful resource. Instability of the anode can provide a challenge for a commercialization of this electrochemical technology. A nickel superalloy (Inconel 718) anode is shown to be highly stable for the scalable controllable, electrosynthesis of nano-carbons from CO2 in molten carbonates salts. Unlike pure nickel anodes that degrade (corrode) in the presence of potassium carbonate containing molten electrolytes, Inconel is stable as an anode even in these electrolytes. This opens up more cost-effective electrolytes (less expensive than lithium carbonate), and the systematic variation of alkali cation carbonates is explored. Coupled with a brass cathode, uniform carbon nanotubes (CNT) are efficiently synthesized by electrolysis of CO2 in either pure Li2CO3 or in ternary electrolytes, Li2CO3-Na2CO3-LiBO2 or Li2CO3-K2CO3-LiBO2. These results increase the foundation of understanding of the electrolytic splitting of carbon dioxide and provide the data for developing a high-efficiency CO2 electroreduction for the production of carbon nanotubes.
机译:CO 2在熔融碳酸盐盐电解质中的电化学分离可以形成有价值的产品,碳纳米管,以及该产品,通过将CO 2从温室气体污染物转化为有用的资源,通过将CO 2转化为有用的资源来形成有价值的产品,碳纳米管和该产品。阳极的不稳定性可以为该电化学技术的商业化提供挑战。镍高温合金(Inconel 718)阳极显示为可扩展可控的可扩展可控,电气合成的高度稳定,从CO 2中纳米碳酸盐盐盐。与含有熔融电解质的碳酸钾的存在下降解(腐蚀)的纯镍阳极不同,即使在这些电解质中,Inconel也可以作为阳极稳定。这开辟了更具成本效益的电解质(比碳酸锂较便宜),探索碱阳离子碳酸盐的系统变化。通过在纯Li 2 CO 3或三元电解质中电解,Li 2 CO 3-Na 2 CO 3-K 2 CO 3-LibO2,通过电解二氧化碳(CNT)与黄铜阴极(CNT)均匀地合成均匀的碳纳米管(CNT)。这些结果增加了了解二氧化碳电解分裂的理解基础,并提供用于开发高效二氧化碳电荷的数据,用于生产碳纳米管。

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