The guidelines in the policy also cover tissue and cell culture, medical diagnostics, industrial microbiology and biochemical engineering. 该政策中的指导方针也覆盖了组织和细胞培养、医学诊断学、工业微生物学和生化工程学。
Is a biochemical, biological engineering, teaching, microbiological and medical industry research and production of the preferred device. 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。
Basal biochemistry is the main course for the major of biochemical engineering. 生物化学基础是生物化工专业的主干课程。
Reflection and Practice on the Course Building of Biochemical Engineering Equipment 生物工程设备课程建设的思考与实践
Research Progress in Biochemical Reaction Engineering and Technology 生化反应工程与工艺研究进展
A Preliminary Exploration on the Reform in Biochemical Engineering Teaching towards the 21st Century's Chemical Engineering Speciality 面向21世纪生物化学工程教学改革初探
Current development in biochemical reaction engineering 生化反应工程的现况及发展
METHODS: ① The experiment was performed in the Laboratory of Biomedicine Department, Biochemical Engineering College of Beijing Union University from January to April in 2006. The rat paw swelling test of AA rats was used. 方法:①实验于2006-01/2006-04在北京联合大学生物化学工程学院生物医药系实验室完成,采用大鼠佐剂性关节炎足肿胀实验。
Fluidized Bed Product Separations in Biochemical Engineering 生物化工中的流化床分离技术
Feature and Frontier of Biochemical Process Engineering 生化过程工程的特点和前沿
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. 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。
This paper reported the purposes, meaning, method and measurement of construction of internationalization platform of higher education on biochemical engineering subject. The actions of teaching reform, training talented person with higher quality, creating ability were also discussed. 论述了生物化工学科国际化高等教育平台构建的目的及意义、构建方法和手段,并对国际化教育平台在教育教学改革、培养高素质创新人才中的作用等方面作了探讨。
1st Chinese National Chemical and Biochemical Engineering Annual Meeting 第一届全国化学与生物工程年会
The Development of Biochemical Industry and Engineering at 21 Century at Home 对21世纪我国生物化工发展的展望
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. 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。
Application of Modified Starches to Environmental and Biochemical Engineering 改性淀粉在环境和生化工程中的应用
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. 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。
Strive to raise the level of biochemical engineering equipment in China 提高我国的生物化工装备水平
The synthesis methods and production technology of 1,3-propanediol, including carbonylation and hydrogenation of ethylene oxide, hydration and hydrogenation of acrolein, and biochemical engineering, were reviewed. 综述了1,3-丙二醇(简称1,3-PDO)的几种合成方法和工业生产技术,包括环氧乙烷羰基化法、丙烯醛水合氢化法和生物工程法。
Molecular Imprinting Technology and its Applications in Biochemical Engineering 分子印迹技术及其在生物化工领域的应用现状与展望
The Construction of Internationalization Platform of Higher Education on Biochemical Engineering Subject 生物化工学科国际化高等教育平台的构建
Application of Magnetically Fluidized Beds in Biochemical Engineering 磁场流化床在生化工程中的应用
Apply maple and matlab to biochemical engineering modeling 应用Maple和Matlab进行生化工程建模实践
Because biochemical engineering is based on the biosystem, which has a very complex mechanism, it brings about relative high requirements on modeling, solving and optimizing models theoretically. 由于生物化学工程基于机理十分复杂的生物体系,因而在理论建模、模型求解和优化上必然导致对数学的要求较高。
Advance and trends in the development of Biochemical Engineering 生物化学工程研究进展及其发展趋势
The key developing fields of high and new chemical technology are new materials, biochemical engineering, computer applications, new energy saving and new environmental protection technologies. 化工高新技术的重点发展领域为新材料技术、生物化工技术、计算机应用技术、新型节能技术及新型环保技术。
The company uses biological and biochemical engineering technology, engages in biological and biochemical plant protein to the deep-level research projects. 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。
With an increasing demand for various kinds of products, fine chemical and biochemical Engineering develop rapidly, and consequently discontinuous, Small-batch elastic modes of production in chemical industry gain more and more interests. 随着人们对产品种类的日益需求的增加,精细化工和生物化工得到了蓬勃的发展,化学工业中不连续、小批量的弹性生产方式越来越得到重视。
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. 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。