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粒子线径对液-固相界面反应活化能的影响
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作者 姜波 《宝鸡文理学院学报(自然科学版)》 CAS 2003年第4期273-275,共3页
提出了液-固相界面反应的活化能应包含表面吉布斯自由能γ,得到:E0=Eα+βSmγ     (I)    k=k0exp(3MβγρRT.1r)         (II)t0=ρr3-2α0(3-2α)(4π)α-1k0(III)t1=∫t00ρ(4π)α-1k0r2(α-1)exp(-3MβγρRT.... 提出了液-固相界面反应的活化能应包含表面吉布斯自由能γ,得到:E0=Eα+βSmγ     (I)    k=k0exp(3MβγρRT.1r)         (II)t0=ρr3-2α0(3-2α)(4π)α-1k0(III)t1=∫t00ρ(4π)α-1k0r2(α-1)exp(-3MβγρRT.1r)( )采用粒径为147μm锡粒与甲基磺酸反应,其t0为t1的几十倍之多,用实验证明了该假定的正确性。 展开更多
关键词 活化能 界面自由能 -界面反应 纳米效应
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精炼工操作中各相界面的动力学行为研究
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作者 陈福荣 《冶金与材料》 2024年第3期16-18,共3页
文章旨在深入探讨精炼工操作中液-气、液-固和固-气等不同相界面的动力学行为。通过对这些界面动力学特性的综述和分析,着重关注这些行为在操作过程中的表现,及其对操作效率和产品质量的影响。在液-气相界面,探讨了界面张力和表面扩散... 文章旨在深入探讨精炼工操作中液-气、液-固和固-气等不同相界面的动力学行为。通过对这些界面动力学特性的综述和分析,着重关注这些行为在操作过程中的表现,及其对操作效率和产品质量的影响。在液-气相界面,探讨了界面张力和表面扩散等动态特性,并阐述了其在操作中的关联。液-固相界面的粘附和浸润行为同样被深入研究,以及固-气相界面的吸附和腐蚀等特性。最后,总结了这些动力学行为对操作的实际影响,并提出操作优化策略。本研究拓展了对精炼工操作中界面动力学行为的认识,为未来相关领域的研究提供了有价值的参考。 展开更多
关键词 -气界面 -界面 -气界面 精炼工操作 动力学行为
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铝电磁铸轧液固区中流体行为 被引量:1
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作者 赵啸林 毛大恒 +1 位作者 李晓谦 易幼平 《上海有色金属》 CAS 2001年第2期49-53,共5页
介绍了铝电磁连续铸轧液固相区中电磁场的基本特性 ,描述了流体的运动轨迹与液固相界面的耦合形式 ,探讨了它们对液固相边界层的作用效果 。
关键词 电磁铸轧 液固相界面 正弦波扰动 稳定性 电磁场
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铝电磁铸轧液固区中流体行为
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作者 赵啸林 易幼平 李晓谦 《轻金属》 CSCD 北大核心 2000年第8期55-58,共4页
介绍了铝电磁连续铸轧液固相区中电磁场的基本特性 ,分析了流体的运动轨迹与两种不同液固相界面的耦合形式 ,探讨了它们对液固相边界层的作用效果 ,描述了正弦波振动对液固相界面稳定性的影响。
关键词 液固相界面 正弦波扰动 铝电磁铸轧 流体行为
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"Environmental phosphorylation"boosting photocatalytic CO_(2)reduction over polymeric carbon nitride grown on carbon paper at air-liquid-solid joint interfaces 被引量:5
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作者 Qinghe Zhang Yang Xia Shaowen Cao 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 2021年第10期1667-1676,共10页
The limited CO_(2)content in aqueous solution and low adsorption amount of CO_(2)on catalyst surface lead to poor photocatalytic CO_(2)reduction activity and selectivity.Herein,the design and fabrication of a novel ph... The limited CO_(2)content in aqueous solution and low adsorption amount of CO_(2)on catalyst surface lead to poor photocatalytic CO_(2)reduction activity and selectivity.Herein,the design and fabrication of a novel photocatalytic architecture is reported,accomplished via chemical vapor deposition of polymeric carbon nitride on carbon paper.The as-obtained samples with a hydrophobic surface exhibit excellent CO_(2)transport and adsorption ability,as well as the building of triphase air-liquid-solid(CO_(2)-H_(2)O-catalyst)joint interfaces,eventually resulting in the inhibition of H2 evolution and great promotion of CO_(2)reduction with a selectivity of 78.6%.The addition of phosphate to reaction environment makes further improvement of CO_(2)photoreduction into carbon fuels with a selectivity of 93.8%and an apparent quantum yield of 0.4%.This work provides new insight for constructing efficient photocatalytic architecture of CO_(2)photoreduction in aqueous solution and demonstrates that phosphate could play a key role in this process. 展开更多
关键词 Photocatalytic CO_(2)reduction Hydrophobic surface Air-liquid-solid triphase interfaces Mass transport PHOSPHORYLATION
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A critical assessment of the roles of water molecules and solvated ions in acid-base-catalyzed reactions at solid-water interfaces
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作者 Xugang Yang Zonghui Liu +2 位作者 Guoliang Wei Yu Gu Hui Shi 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 2022年第8期1964-1990,共27页
Solid-aqueous interfaces and phenomena occurring at those interfaces are ubiquitously found in a plethora of chemical systems.When it comes to heterogeneous catalysis,however,our understanding of chemical transformati... Solid-aqueous interfaces and phenomena occurring at those interfaces are ubiquitously found in a plethora of chemical systems.When it comes to heterogeneous catalysis,however,our understanding of chemical transformations at solid-aqueous interfaces is relatively limited and primitive.This review phenomenologically describes a selection of water-engendered effects on the catalytic behavior for several prototypical acid-base-catalyzed reactions over solid catalysts,and critically assesses the general and special roles of water molecules,structural moieties derived from water,and ionic species that are dissolved in it,with an aim to extract novel concepts and principles that underpin heterogeneous acid-base catalysis in the aqueous phase.For alcohol dehydration catalyzed by solid Bronsted acids,rate inhibition by water is most typically related to the decrease in the acid strength and/or the preferential solvation of adsorbed species over the transition state as water molecules progressively solvate the acid site and form extended networks wherein protons are mobilized.Water also inhibits dehydration kinetics over most Lewis acid-base catalysts by competitive adsorption,but a few scattered reports reveal substantial rate enhancements due to the conversion of Lewis acid sites to Brønsted acid sites with higher catalytic activities upon the introduction of water.For aldol condensation on catalysts exposing Lewis acid-base pairs,the addition of water is generally observed to enhance the rate when C–C coupling is rate-limiting,but may result in rate inhibition by site-blocking when the initial unimolecular deprotonation is rate-limiting.Water can also promote aldol condensation on Brønsted acidic catalysts by facilitating inter-site communication between acid sites through hydrogen-bonding interactions.For metallozeolite-catalyzed sugar isomerization in aqueous media,the nucleation and networking of intrapore waters regulated by hydrophilic entities causes characteristic enthalpy-entropy tradeoffs as these water moieties interact with kinetically relevant hydride transfer transition states.The discussed examples collectively highlight the utmost importance of hydrogen-bonding interactions and ionization of covalently bonded surface moieties as the main factors underlying the uniqueness of water-mediated interfacial acid-base chemistries and the associated solvation effects in the aqueous phase or in the presence of water.A perspective is also provided for future research in this vibrant field. 展开更多
关键词 Acid-base catalysis Solid-aqueous interfaces Water Aqueous-phase reaction Hydronium ion Hydrogen-bonding interaction Local ionic strength effect
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