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化工原理教学中传质对传热教学的启发及运用 被引量:3
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作者 杜治平 殷霞 +2 位作者 丁一刚 刘生鹏 肖艳华 《大学化学》 CAS 2020年第12期261-267,共7页
通过对比吸收与传热的假设和模型,寻找出它们的共同点,进而借鉴吸收的处理方法,推导出逆流传热中传热单元数和传热单元长度的计算公式,绘制了传热单元数的图形,并提出了定性分析传热操作型问题的基本思路。通过对比建立了传质和传热之... 通过对比吸收与传热的假设和模型,寻找出它们的共同点,进而借鉴吸收的处理方法,推导出逆流传热中传热单元数和传热单元长度的计算公式,绘制了传热单元数的图形,并提出了定性分析传热操作型问题的基本思路。通过对比建立了传质和传热之间的联系,使它们不再是分散的知识点,这有利于学生对化工原理知识的理解和掌握。 展开更多
关键词 传热 传质 传热单元数法 定性分析
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RETRACTED:A Numerical Study on the Charging Voltage of the Lunar Surface
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作者 Zhihao Wang Dongbo Tian +3 位作者 Yuming Liu Yenan Liu yigang ding Zicai Shen 《Journal of Applied Mathematics and Physics》 2019年第12期3177-3185,共9页
Short Retraction Notice? This article has been retracted to straighten the academic record. In making this decision the Editorial Board follows COPE's?Retraction Guidelines. The aim is to promote the circulation o... Short Retraction Notice? This article has been retracted to straighten the academic record. In making this decision the Editorial Board follows COPE's?Retraction Guidelines. The aim is to promote the circulation of scientific research by offering an ideal research publication platform with due consideration of internationally accepted standards on publication ethics. The Editorial Board would like to extend its sincere apologies for any inconvenience this retraction may have caused. Please see the?article page?for more details. The full retraction notice in PDF is preceding the original paper which is marked "RETRACTED". 展开更多
关键词 LUNAR Surface CHARGING PLASMA Current BALANCE EQUATION
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Fe-Ni-F electrocatalyst for enhancing reaction kinetics of water oxidation
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作者 Yi Zhang Biao Wang +6 位作者 Chao Hu Muhammad Humayun Yaping Huang Yulin Cao Mosaad Negem yigang ding Chundong Wang 《Chinese Journal of Structural Chemistry》 SCIE CAS CSCD 2024年第2期60-65,共6页
Highly active and low-cost oxygen evolution reaction(OER)catalytic electrodes are extremely essential for exploration of green hydrogen via water splitting.Herein,an advanced Fe-Ni-F electrocatalyst is fabricated by a... Highly active and low-cost oxygen evolution reaction(OER)catalytic electrodes are extremely essential for exploration of green hydrogen via water splitting.Herein,an advanced Fe-Ni-F electrocatalyst is fabricated by a facile annealing strategy using ammonium fluoride,of which the structure feature is unveiled by XRD,FESEM,TEM,EDS,BET,and XPS measurements.The as-prepared Fe-Ni-F addresses a low overpotential of 277 mV and a small Tafel slope of 49 mV dec^(-1)at a current density of 10 mA cm^(-2),significantly outperforming other control samples as well as the state-of-the-art RuO_(2).The advanced nature of our Fe-Ni-F catalyst could also be further evidenced from the robust stability in KOH alkaline solution,showing as 5.41%degradation after 24 h continuous working.Upon analysis,it suggests that the decent catalytic activity should be attributed to the formed bimetallic(oxy)hydroxides because of the introduction of fluoride and the synergistic effect of iron and nickel towards oxygen generation.This work represents the potential of Fe-and/or Ni-based fluoride as efficient catalyst for low-energy consumption oxygen generation. 展开更多
关键词 FLUORIDE Oxygen evolution reaction Fe-Ni-F Reaction kinetics
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