生化工程

shēnɡ huà ɡōnɡ chénɡ
  • biochemical engineering
生化工程生化工程
  1. 应用Maple和Matlab进行生化工程建模实践

    Apply maple and matlab to biochemical engineering modeling

  2. 海洋生物技术,养殖工程,生化工程。

    Marine Biotechnology , Aquacultural Engineering , Biochemical Engineering .

  3. 改性淀粉在环境和生化工程中的应用

    Application of Modified Starches to Environmental and Biochemical Engineering

  4. 生化工程专业有机化学实验教学改革研究与实践

    Study and Practice on the Organic Chemistry Experiment Teaching Reform of Biochemistry Engineering

  5. 磁场流化床在生化工程中的应用

    Application of Magnetically Fluidized Beds in Biochemical Engineering

  6. 我是一个生化工程的战斗机器。

    I 'm a bioengineered combat unit .

  7. 网站描述:这是国家生化工程技术研究中心的网站。

    Description : This is the website of National Engineering Research Center for Biotechnology in Shanghai .

  8. 1996年在美国麻省理工学院获生化工程博士学位。

    Xie Liangzhi received a doctor degree in Bio-chemistry from Massachusetts Institute of Technology , the US , in1996 .

  9. 根据生化工程专业的特点,对有机化学实验教学内容和教学方法进行了改革和实践研究。

    This paper reformed teaching content and methods of organic chemistry experiment , on the basic of peculiarity of biochemistry engineering .

  10. 公司主要采用生物生化工程技术、生产大豆蛋白为原料的小分子多肽系列功能食品,致力于植物蛋白生物生化工程的深层次研究。

    The company uses biological and biochemical engineering technology , engages in biological and biochemical plant protein to the deep-level research projects .

  11. 合成膜在生化工程中最新应用是作为生物催化剂固定化的新载体。

    One of the most advanced applications of membrane processes in biotechnology is their use in the immobilization of biocatalysts ( enzymes and whole cells ) .

  12. 有必要在对木糖代谢调控机制深入系统研究的基础上,进一步改造现有菌株,并结合生化工程技术对重组菌株发酵条件进行优化,以实现高效生物转化木质纤维素原料制取乙醇。

    It also requires that the fermentation of recombinant strains be maximally optimized through biochemical engineering to achieve the bioconversion of lignocellulosic biomass into ethanol with high efficiency .

  13. 系统包含在线微量取样、级联稀释、微型生物传感器、生化工程数据处理和分析软件与计算机。

    The on line analysis system consisted of a micro flow sampler , a cascade dilution unit , a micro biosensor , a software for bioprocess data processing , and a computer .

  14. 根据生物技术所包含的基因工程、细胞工程、酶工程、发酵工程和生化工程等五大范畴来简要论述了现代生物技术在食品添加剂及配料产业中的应用现状与展望。

    The article deals with the status and prospect of biotechnology , which includes gene engineering , cell engineering , fermentation engineering , biochemical engineering enzyme engineering , etc. , in food additive and ingredient industry .

  15. 磁场流化床在生化工程领域已经应用于固定化生物反应器,发酵液固液分离,连续亲合色谱,细胞分离,以及植物细胞和酵母细胞培养等过程。

    MFB has now been used in immobilized bioreactors , solid-liquid separation of fermentation , continuous affinity chromatography , cell separation in immunology and culture of plant cells and yeast . In this paper , the theory and characteristics of MFB are introduced .

  16. 二十一世纪将是生化工程迅速发展的时代,随着生物发酵工程的发展,人们在结合改进发酵工艺和设备的同时,越来越注意发酵过程的监测和控制。

    It 's predicted that biochemical project will develop rapidly in the 21 century . With the development of the biochemical fermentation , people pay more and more attention on the monitor and the control of the process , while improving the technics and the equipments .

  17. 为了研究超临界CO2作为非水相介质在生化反应工程中的作用,有必要考察超临界CO2处理对微生物活性的影响。

    In order to study the role of supercritical CO2 as a nonaqueous medium in the engineering of biochemical reactions , it is necessary to probe the effects of supercritical CO2 treatment on microbial activity .

  18. 生化反应工程与工艺研究进展

    Research Progress in Biochemical Reaction Engineering and Technology

  19. 生化过程工程的特点和前沿

    Feature and Frontier of Biochemical Process Engineering

  20. 生化反应工程的现况及发展

    Current development in biochemical reaction engineering

  21. 稠油废水生化处理工程

    Biochemical treatment of dense oil wastewater

  22. 最后,简要介绍了化学振荡反应研究的重要意义以及它在化学、生化、工程等领域的应用前景。

    The mechanisms of chemical oscillating reactions and their applications in analytical determination were also discussed in brief .

  23. 本文对河南油田含稠油废水用隔油-水解酸化-三级好氧接触氧化的生化处理工程实践效果及问题进行了讨论。

    In this paper is reviewed the disposal methods of oily-bearing wastewater by oil isolating-hydrolysis acidification-three stage aerobic contact oxidation processes , and their engineering practical effect is discussed .

  24. 本文阐明了生化反应工程的目的、范围和重要性。并对微生物生长、产物形成和基质消耗的本征动力学以及对生物催化剂颗粒或膜的内外扩散影响的宏观动力学作了较系统的介绍。

    The aim , scope and importance of biochemical reaction engineering are expounded , and the intrinsic kinetics of microbial growth , product formation arts substrate consumption as well as the macro-kinetics of external and internal diffusion effects of biocatalyst particle or film are systematically introduced .

  25. 经过十多年的研制开发,攻克了大豆蛋白生物生化系统工程技术这一世界性课题,成功地开发出新一代营养功能型食品,技术水平国际领先,产品市场潜力巨大。

    After more than 10 years of research and development , efforts to tackle soy protein biological and biochemical systems engineering technology this global issue , succeeded in developing a new generation of nutrition functional foods , a leading international technology and product market has great potential .

  26. 是生化、生物工程、教学、微生物及医学行业研究和生产中的优选设备。

    Is a biochemical , biological engineering , teaching , microbiological and medical industry research and production of the preferred device .

  27. 基因组学和植物生理生化是通过基因工程改良作物的基础。

    Genomics , phytophysiology and biochemistry are important bases for crop improvement through genetic engineering .

  28. 汞盐和单质纳米材料具有优良的光电性能,在电磁元器件、电-光设备、电化学、催化材料、生化分析、仿生工程等多方面有着广泛的应用前景。

    Elementary substance and mercury salt nano-materials have excellent performances and can be used in electromagnetic components , electro-optical equipment , electrochemical , catalytic materials , biochemical analysis , bionic engineering .

  29. 微电铸技术在制作具有微细结构的金属模具或器件方面具有突出优势,广泛应用于电子信息、生化检测、光学工程和国防工业等领域。

    Micro electroforming has many advantages in fabricating metal mold with micro-structure or micro-device , which is widely applied in electronic information , biological detection , optical engineering , national defense industry and other fields .

  30. 生化与分子生物学研究所的主要研究方向有:分子免疫学、分子酶学、生化和蛋白质工程、药物生化与分子生物学。

    At the present , the institute majors in4 research fields : molecular immunology , molecular Enzymology , biochemistry and protein engineering , pharmaceutical biochemistry and molecular biology .