
許蕭 博士,副教授,博士生導(dǎo)師
郵箱: xxu@ecust.edu.cn
地址: 徐匯校區(qū)實(shí)驗(yàn)17樓512室
從事綠色化工裝備研究。
承擔(dān)自然科學(xué)青年基金、重點(diǎn)研發(fā)計(jì)劃子課題、博后基金以及中石化、重燃集團(tuán)等企業(yè)科技攻關(guān)課題。獲上海市東方英才計(jì)劃青年項(xiàng)目、晨光計(jì)劃、揚(yáng)帆人才計(jì)劃支持。
全國微氣泡技術(shù)標(biāo)準(zhǔn)化技術(shù)委員會(huì)委員、全國化工機(jī)械與設(shè)備標(biāo)準(zhǔn)化技術(shù)委員會(huì)委員、中國顆粒學(xué)會(huì)第四屆青年理事。
在AIChE Journal、Chemical Engineering Journal、Separation and Purification Technology、Chinese Journal of Chemical Engineering、Reviews in Chemical Engineering、Chemical Engineering Research and Design、Chemical Engineering Technology等期刊上發(fā)表論文15篇,授權(quán)美國專利、中國發(fā)明專利29件,起草行業(yè)標(biāo)準(zhǔn)2件。
歡迎對(duì)先進(jìn)能源和化工裝備感興趣的同學(xué)加入!
招生專業(yè):[080700]動(dòng)力工程及工程熱物理 [085800]能源動(dòng)力
研究方向
1、多相界面流動(dòng)與物質(zhì)傳遞基礎(chǔ)研究

2、低耗綠色的物理分離應(yīng)用研究

3、環(huán)境化工裝備放大研究

科研項(xiàng)目
1. 國家自然科學(xué)基金委青年基金(21908057),“旋流氣提強(qiáng)化溶解性氣體分離機(jī)理研究”,2020-01至2022-12,主持;
2. 國家重點(diǎn)研發(fā)計(jì)劃子課題(2018YFC1801904),“石油污染土壤微納氣泡強(qiáng)化洗脫工藝技術(shù)”,2019.01-2022.12,主持;
3. 上海市晨光計(jì)劃(20CG39),“基于氣泡旋流強(qiáng)化傳質(zhì)的地?zé)崴摎狻保?020.12-2023.12,主持;
4. 上海市青年科技英才揚(yáng)帆計(jì)劃(19YF1411800),“氣泡旋流強(qiáng)化傳質(zhì)的性能和機(jī)理研究”,2019.5.1-2022.4.30,主持;
5. 企業(yè)委托,“分形氣泡強(qiáng)化反應(yīng)成套技術(shù)的開發(fā)”,2020.11-2030.11,主持;
6. 企業(yè)委托,“渣油加氫裝置超長周期成套技術(shù)開發(fā)與應(yīng)用”,2020.07-2030.07,主持;
7. 企業(yè)委托,“適用加氫裝置的緊湊氣提脫除硫化氫技術(shù)”,2020.08-2030.08,主持;
獲獎(jiǎng)成果
1. 2023年,中國石油和化學(xué)工業(yè)聯(lián)合會(huì),科技進(jìn)步一等獎(jiǎng)(第2,華東理工大學(xué))
2. 2018年,上海市人民政府,技術(shù)發(fā)明二等獎(jiǎng)(第2,華東理工大學(xué))
3. 2019年,中國石油和化學(xué)工業(yè)聯(lián)合會(huì),科技進(jìn)步二等獎(jiǎng)(第5,華東理工大學(xué))
代表性論文
方向一、旋流強(qiáng)化氣泡分離機(jī)制及裝備
1. Xiao Xu, Xiaoling Ge, Bohan Zhang, Hualin Wang, Qiang Yang*. Bubble-separation dynamics in a planar cyclone: Experiments and CFD simulations.AIChE Journal, 2018, 64(7): 2689-2701.
2. Xiao Xu, Qiang Yang*, Chaoyang Wang, Hualin Wang. Impact of bubble coalescence onseparation performance of a degassing hydrocyclone. Separation and Purification Technology, 2015, 152:80-86.
3. Xiao Xu, Shuo Wang, Q Yang*. Performance of a degassing cyclone with main and subsidiary chambers. Chemical Engineering & Technology, 2021.
4. Xiao Xu, Shuo Wang, Chunkai Gong, Qiang Yang*. Improvement of the bubble separation through eccentric planar cyclones: Experiments and CFD simulations. Chemical Engineering Research and Design, 2023.
方向二、旋流強(qiáng)化氣泡解吸機(jī)制及裝備
1. Xiao Xu, Xiaoling Ge, Bohan Zhang, Hualin Wang, Qiang Yang*. Gas–liquid mass transfer and bubble size distribution in a multi-cyclone separator.AIChE Journal, 2019, 65(1): 215-223.
2. Xiao Xu, Qiang Yang*, Chaoyang Wang, Xiaolin Ge, Hualin Wang. Dissolved gas separation using the pressure drop and centrifugal characteristics of an inner cone hydrocyclone. Separation and Purification Technology, 2016, 161:121-128.
3. Xiao Xu, Hao Lu, Qiang Yang*, Fengqin He, Honglai Liu, Hualin Wang. Bubbly flow in degassing cyclones and potential applications. Reviews in Chemical Engineering, 2021,37(7): 813-825.
4. Xiao Xu, Chunkai Gong, Shuo Wang, Qiang Yang*, Zhenhao Xi. Bubble interfacial area in a swirling contactor: Experiments and CFD simulations. Chemical Engineering & Technology, 2023.
5. Zhengjun Chen, Chunxiao Meng, Haoran Ruan, Renjie Li, Xiao Xu* , Bo Liu, Qiang Yang. Removal of bubbles from electrodes in a planar cyclonic electrolyzer. Chemical Engineering and Processing - Process Intensification, 2022.
方向三、微尺度氣泡強(qiáng)化吸收反應(yīng)機(jī)制及裝備
1. Xiao Xu, L Wang, H Wang, H Liu, Q Yang*. Circulating jet for enhancing the mass transfer in a gas–liquid stirred tank reactor. AIChE Journal, 2021, e17392.
2. C Gong, Xiao Xu*, Q Yang. Gas holdup at dynamic equilibrium region of a bubble column: Effect of bubble generator performance. Chemical Engineering Journal, 2022, 443(1), 136382.
3. Xiao Xu, Junjie Wang, Qiang Yang*.Bubble size fractal dimension, gas holdup, and mass transfer in a bubble column with dual internals.Chinese Journal of Chemical Engineering, 2020, 28(12): 2968-2976.
4. Xiao Xu, Xiaoling Ge, Bohan Zhang, Hualin Wang,Qiang Yang*. Effect of nozzle diameter on bubble generation with gas self-suctionthrough swirling flow. Chemical Engineering Research and Design, 2018, 138:13-20.
5. Yingchun Zhang, Wei Wang, Xiao Xu *, Qiang Yang. Effect of bubble size on bubble rising velocity and stagnation in a granular bed. Chemical Engineering Journal Advances 12 (2022) 100425.
6. Junjie Wang, Xiao Xu*, Wei Wang, Y Li, S Wu, H Yang, Qiang Yang. Hydrodynamics of an Airlift Column for Aeration in Molten Sulfur. Applied Sciences, 2021.
代表性專利:
1. Device for liquid degassing. US 9844742B2. 美國授權(quán)專利
2. 一種調(diào)控大小氣泡分形結(jié)構(gòu)強(qiáng)化傳質(zhì)的方法及裝置
3. 利用旋流或離心場與壓力梯度場耦合進(jìn)行液體脫氣的裝置
4. 一種利用旋流場強(qiáng)化電解效率的方法和裝置
5. 兩相流體強(qiáng)傳質(zhì)逆流接觸的方法和裝置
6. 一種加氫產(chǎn)物脫除微細(xì)氣泡的裝置和方法
7. 一種主副腔耦合式自適應(yīng)旋流離心脫氣方法和裝置
8. 提前進(jìn)入反應(yīng)準(zhǔn)備狀態(tài)的氣液反應(yīng)方法和氣液反應(yīng)裝置
9. 廢水中重金屬離子的旋流吸附去除方法及裝置
10. 一種降低加氫裝置汽提塔頂回流系統(tǒng)結(jié)鹽和腐蝕的方法