欢迎您!
东篱公司
退出
申报数据库
申报指南
立项数据库
成果数据库
期刊论文
会议论文
著 作
专 利
项目获奖数据库
位置:
成果数据库
>
期刊
> 期刊详情页
Numerical study on catalytic combustion of methane with ozone using Pd-exchanged zeolite X
ISSN号:1674-7291
期刊名称:Science China Chemistry
时间:2015.5
页码:899-904
相关项目:光微流体多相流传热传质
作者:
Zhu, Xun|Liao, Qiang|Hui, Kwansan|Hui, Kwunnam|
同期刊论文项目
光微流体多相流传热传质
期刊论文 37
会议论文 8
获奖 1
同项目期刊论文
Optofluidic microreactor with TiO2-coated fiberglass
高分子链构象和动态特性的分子动力学模拟
Performance characteristics of a membraneless solar responsive photocatalytic fuel cell with an air-
Respective electrode potential characteristics of photocatalytic fuel cell with visible-light respon
IR laser assisted photothermal condensation in a microchannel
Pore network study of slow evaporation in hydrophobic porous media
Optofluidic Microreactors with TiO2-Coated Fiberglass
Optofluidics based micro-photocatalytic fuel cell for efficient wastewater treatment and electricity
A novel photobioreactor generating the light/dark cycle to improve microalgae cultivation
Simulation on the coalescence of the moving liquid column and droplet in a hydrophilic microchannel
Dynamic bubbling behaviors on a micro-orifice submerged in stagnant liquid
Dynamic Behavior of the Liquid Flow Coalescing with a Droplet in Hydrophobic Microchannels
IR laser caused droplet evaporation on the hydrophobic surface
Numerical investigation of the moving liquid column coalescing with a droplet in triangular microcha
Optofluidic membrane microreactor for photocatalytic reduction of CO2
IR laser induced meniscus evaporation from a microchannel
Highly-durable optofluidic microreactor for photocatalytic water splitting
Coalescence with Droplets Caused Acceleration of the Liquid Movement in Microchannels
High surface area optofluidic microreactor for redox mediated photocatalytic water splitting
三维顺排阳极自呼吸微流体燃料电池性能特性
纳米通道内高分子稀溶液的分子动力学模拟
憎水表面光控液滴蒸发及冷凝液滴的演化特性
微通道内光热相变驱动流体运动特性研究
扰流柱结构微反应器内两相流动及性能强化
液体通流矩形槽道可渗透壁面处气泡生长及液相侵渗传输特性研究
A micro photocatalytic fuel cell with an air-breathing, membraneless and monolithic design
Numerical investigation of the moving liquid column coalescing with a droplet in triangular microchannels using CLSVOF method