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利用供氢剂抑制重油加氢过程结焦 被引量:7
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作者 赵晓青 王月霞 《天然气与石油》 2003年第4期31-33,共3页
介绍了重油加氢处理过程结焦反应机理和抑制结焦技术的开发和应用。供氢剂在无催化剂和氢气存在条件下 ,可提供活性氢原子推迟或阻止第二液相的形成 ,有效抑制生焦 ;高芳烃重质石油馏分含有大量的环烷基芳烃和多环芳烃可替代纯的环烷基... 介绍了重油加氢处理过程结焦反应机理和抑制结焦技术的开发和应用。供氢剂在无催化剂和氢气存在条件下 ,可提供活性氢原子推迟或阻止第二液相的形成 ,有效抑制生焦 ;高芳烃重质石油馏分含有大量的环烷基芳烃和多环芳烃可替代纯的环烷基芳烃作为供氢剂 ,捕捉生焦基团、抑制生焦 ,且廉价易得 。 展开更多
关键词 抑制结焦 活性氢原子
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Highly efficient overall urea electrolysis via single-atomically active centers on layered double hydroxide 被引量:5
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作者 Huachuan Sun Linfeng Li +10 位作者 Hsiao-Chien Chen Delong Duan Muhammad Humayun Yang Qiu Xia Zhang Xiang Ao Ying Wu Yuanjie Pang Kaifu Huo Chundong Wang Yujie Xiong 《Science Bulletin》 SCIE EI CAS CSCD 2022年第17期1763-1775,共13页
Anodic urea oxidation reaction(UOR)is an intriguing half reaction that can replace oxygen evolution reaction(OER)and work together with hydrogen evolution reaction(HER)toward simultaneous hydrogen fuel generation and ... Anodic urea oxidation reaction(UOR)is an intriguing half reaction that can replace oxygen evolution reaction(OER)and work together with hydrogen evolution reaction(HER)toward simultaneous hydrogen fuel generation and urea-rich wastewater purification;however,it remains a challenge to achieve overall urea electrolysis with high efficiency.Herein,we report a multifunctional electrocatalyst termed as Rh/Ni V-LDH,through integration of nickel-vanadium layered double hydroxide(LDH)with rhodium single-atom catalyst(SAC),to achieve this goal.The electrocatalyst delivers high HER mass activity of0.262 A mg^(-1) and exceptionally high turnover frequency(TOF)of 2.125 s^(-1) at an overpotential of100 m V.Moreover,exceptional activity toward urea oxidation is addressed,which requires a potential of 1.33 V to yield 10 mA cm^(-2),endorsing the potential to surmount the sluggish OER.The splendid catalytic activity is enabled by the synergy of the Ni V-LDH support and the atomically dispersed Rh sites(located on the Ni-V hollow sites)as evidenced both experimentally and theoretically.The selfsupported Rh/Ni V-LDH catalyst serving as the anode and cathode for overall urea electrolysis(1 mol L^(-1) KOH with 0.33 mol L^(-1) urea as electrolyte)only requires a small voltage of 1.47 V to deliver 100 mA cm^(-2) with excellent stability.This work provides important insights into multifunctional SAC design from the perspective of support sites toward overall electrolysis applications. 展开更多
关键词 Single-atomically active centers Layer double hydroxide Hydrogen evolution reaction Overall urea electrolysis High turnover frequency
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