水果机下载-水果机出售南京_百家乐视频画面_新全讯网啊步森 (中国)·官方网站

學術信息

首頁

名師講堂(十六):Development of continuous flow microreactors for fast liquid and liquid-liquid reactions

  報告題目:Development of continuous flow microreactors for fast liquid and liquid-liquid reactions

  報告時間:2019年5月29日(周三)10:30-11:30

  報告地點:紅橋校區化工學院樓202學術報告廳

  報告嘉賓:Arturo Macchi 教授  渥太華大學

 

  內容摘要:

  Continuous operation presents multiple advantages over batch chemistry, yet its usage in the fine chemical and pharmaceutical industry remains limited due to its complexity. A holistic tool-box approach for process development is presented such to facilitate technology transfer. Reaction kinetics and reacting phases are taken into consideration for the selection of the most appropriate reactor and operating conditions. A micro-reactor for fast liquid and liquid--liquid reactions is then more specifically developed. The yield of competitive parallel reactions was used to characterize mixing in the single phase system whereas a reactive liquid-liquid extraction was used to investigate interphase mass transfer and resulting flow regimes in the two phase system. The effects of phase physical properties, mixer geometry, method of energy input and scale were measured and analyzed such to optimize the reactor design. A key finding is that mixing and interphase mass transfer is a scalable function of the average rate of energy dissipation once the flow has reached turbulent flow (single-phase system) and drop flow (two phase system), independent of reactor geometry, indicating that efficient micro-mixers achieve these flow conditions at the lowest possible energy dissipation rate. Moreover, multiphase micro-mixer geometries that are based on contraction-expansion repeating units with alternating asymmetric obstacles to aid the breakup of the dispersed phase, and desynchronize the recombination of split streams are most effective.

  嘉賓簡介

  Professor Macchi did his BEng and MASc at Ecole Polytechnique de Montréal and attended the University of British Columbia for his PhD. Research interests are in fundamental and applied multiphase reaction engineering with emphasis on fluidized beds. Some current projects are: Investigation of the hydrodynamics and transport phenomena in heavy oil hydroprocessors (e.g., LC-FinerSM) for yield improvement, Development of continuous multiphase flow micro-reactors for intensifying the synthesis of fine chemical and pharmaceuticals, Synthesis of gas hydrates in a slurry bubble column for the transportation of natural gas, and power production with CO2 capture via cyclic carbonation/calcination of lime-based sorbents or reduction/oxidation of metal oxides. Collaborations have been established with academic, government and industrial research institutions.

 

连城县| 百家乐咨询网址| 赌百家乐官网的心得体会| 百家乐官网平台开户哪里优惠多 | 太阳城伞| 新时代娱乐城开户| 在线百家乐官网纸牌游戏| 防伪百家乐官网筹码币套装| 百家乐套利| 百家乐官网路子分析| 风水24山| 太阳城网络博彩| 百家乐有秘技吗| 盛京棋牌网| 百家乐路技巧| 宁夏| 网络百家乐的信誉| 开户娱乐城送20彩金| 利高百家乐的玩法技巧和规则 | 百家乐园| 百家乐官网的玩法视频| 筹码百家乐官网500| 百家乐任你博娱乐| 民宅24方位| 24山 分金 水口 论 吉凶| 大发888 充值| 百家乐官网庄家赢钱方法| 百家乐如何骗人| 百家乐官网外套| 德州扑克算牌| 百家乐官网网上投注网站| 赌博百家乐弱点| 张家港市| 网页百家乐官网| 百家乐官网免费破解外挂| 百家乐真人秀| 皇冠现金网网址| 黄金城百家乐官网安卓版| 白金娱乐城| 百家乐和抽水官网| 百家乐官网技术论坛|