课题基金基金详情
具有多孔光热蒸发层的微通道内热质传输特性研究
结题报告
批准号:
51906023
项目类别:
青年科学基金项目
资助金额:
25.0 万元
负责人:
何雪丰
依托单位:
学科分类:
E0603.传热传质学
结题年份:
2022
批准年份:
2019
项目状态:
已结题
项目参与者:
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中文摘要
基于光热效应的蒸发浓缩具有非接触式操控、结构简单等优点,在微流控分析检测领域极具应用潜力。针对现有光热蒸发浓缩技术所面临的蒸汽传输受限、界面不可控、蒸发效率低等问题,本项目提出一种具有多孔光热蒸发层的微通道内蒸发浓缩技术,用于样品高效连续浓缩。该技术涉及多孔层与微通道内光热转换、两相流动传热、蒸汽传输、物质输运等多物理过程,其中多孔层与微通道内两相流动与热质传递对蒸发浓缩性能至关重要。本项目围绕这一关键热物理问题开展系统研究工作,首先研究多孔蒸发层光热转换及蒸发特性,随后对微通道及多孔蒸发层内两相流动传热特性进行研究,最后对微通道及多孔蒸发层内两相流动与多组分热质传递耦合进行研究,获得多孔层孔隙结构、微通道几何结构、入射光功率、气液相流量等结构与运行参数对蒸发浓缩性能的影响规律,构建具有多孔光热蒸发层及微通道内两相流动热质输运模型,为微流控芯片中光热蒸发浓缩技术开发与应用奠定理论基础。
英文摘要
The evaporation driven concentration by photothermal effect holds promising features including non-contact manipulation and simple structure of the devices, which exhibits great potential in microfluidic analysis and detection. Aiming at the present problems in the evaporation driven concentration by photothermal effect such as poor vapor transport, incontrollable interface and low evaporation efficiency, this project proposes an in-channel microfludic concentration technology with photothermal porous evaporation layer for efficient continuous-flow sample concentration. This technology involves multi-physical processes including photothermal conversion, two-phase flow, vapor transport, heat and mass transfer. Among which the two-phase flow and heat mass transfer in the microchannels and porous evaporation layer dominate the efficiency of the evaporation driven concentration. To address this critical thermophysical issue, systematical researches are directed. Firstly, the photothermal conversion property and the evaporation characters of the porous photothermal evaporation layer will be investigated. Then the two-phase flow and heat transfer characters in the porous layer and microchannels will be studied. Finally, investigation of the two-phase flow and heat-mass transfer of multi-components in the porous layer and microchannels will be carried out. Effects of the pore structure of the porous layer, geometric structure of the microchannels, light intensity, flow rate of the liquid and gas phase on the performance of the concentration will be investigated. Theoretical model considering the two-phase flow and heat mass transfer in the porous layer and microchannels will also be developed. The implementation of the project will lay theoretical foundation to the development of microfluidic concentration technologies by photothermally induced evaporation.
基于光热效应的蒸发浓缩具有非接触式操控、结构简单等优点,在微流控分析检测领域极具应用潜力。针对现有光热蒸发浓缩技术所面临的蒸汽传输受限、界面不可控、蒸发效率低等问题,本项目提出一种具有多孔光热蒸发层的微通道内蒸发浓缩技术,用于样品高效连续浓缩。该技术涉及多孔层与微通道内光热转换、两相流动传热、蒸汽传输、物质输运等多物理过程,其中多孔层与微通道内两相流动与热质传递对蒸发浓缩性能至关重要。本项目围绕这一关键热物理问题开展系统研究工作,首先制备了易加工、可兼容微流控装置的光热多孔材料,并探究了其光热转换及蒸发特性。随后构建了具有光热多孔网络流道结构的微流控芯片,对多孔网络流道内光热效应驱动的两相流动传热特性进行研究,最后设计加工了具有光热多孔蒸发层的微流控芯片,实现了样品溶液的在线连续浓缩,获得了蒸发模式、工质种类、运行工况等参数对蒸发浓缩性能的影响规律。本项目结合实验研究与数值模拟,构建了孔隙-多孔网络流道-微流控装置内两相流动热质输运模型,为微流控芯片中光热蒸发浓缩技术开发与应用奠定理论基础。
期刊论文列表
专著列表
科研奖励列表
会议论文列表
专利列表
Laser assisted microfluidic membrane evaporator for sample crystallization separation
用于样品结晶分离的激光辅助微流控膜蒸发器
DOI:10.1016/j.seppur.2020.116817
发表时间:2020-07
期刊:SEPARATION AND PURIFICATION TECHNOLOGY
影响因子:8.6
作者:He Xuefeng;Chen Rong;Zhu Xun;Liao Qiang;Li Shuzhe
通讯作者:Li Shuzhe
Gradient electro-processing strategy for efficient conversion of harmful algal blooms to biohythane with mechanisms insight
梯度电处理策略可有效地将有害藻华转化为生物乙烷,并具有机制洞察力
DOI:10.1016/j.watres.2022.118929
发表时间:2022
期刊:Water Research
影响因子:12.8
作者:Haixing Chang;Haihua Wu;Lei Zhang;Wenbo Wu;Chaofan Zhang;Nianbing Zhong;Dengjie Zhong;Yunlan Xu;Xuefeng He;Jing Yang;Yue Zhang;Ting Zhang;Qiang Liao;Shih-Hsin Ho
通讯作者:Shih-Hsin Ho
Infrared laser-induced photothermal phase change for liquid actuation in microchannels
用于微通道中液体驱动的红外激光诱导光热相变
DOI:10.1007/s10404-021-02460-9
发表时间:2021-06
期刊:MICROFLUIDICS AND NANOFLUIDICS
影响因子:2.8
作者:He Xuefeng;Chen Rong;Zhu Xun;Liao Qiang;Li Shuzhe
通讯作者:Li Shuzhe
A 3D oriented CuS/Cu2O/Cu nanowire photocathode
3D 定向 CuS/Cu2O/Cu 纳米线光电阴极
DOI:10.1039/d0ta11020e
发表时间:2021-03
期刊:JOURNAL OF MATERIALS CHEMISTRY A
影响因子:11.9
作者:He Xuefeng;Chen Xin;Chen Rong;Zhu Xun;Liao Qiang;Ye Dingding;Yu Youxu;Zhang Wei;Li Jinwang
通讯作者:Li Jinwang
A 3D porous PDMS sponge embedded with carbon nanoparticles for solar driven interfacial evaporation
嵌入碳纳米粒子的 3D 多孔 PDMS 海绵,用于太阳能驱动的界面蒸发
DOI:10.1016/j.seppur.2022.120985
发表时间:2022-04-13
期刊:SEPARATION AND PURIFICATION TECHNOLOGY
影响因子:8.6
作者:Li, Xiangshuai;Tanyan, Siyang;He, Xuefeng
通讯作者:He, Xuefeng
超声悬浮液滴式反应器内结晶动态特性研究
  • 批准号:
    CSTB2023NSCQ-MSX0776
  • 项目类别:
    省市级项目
  • 资助金额:
    10.0万元
  • 批准年份:
    2023
  • 负责人:
    何雪丰
  • 依托单位:
国内基金
海外基金