Biochemical engineers combine engineering principles with knowledge of mathematics, chemistry, the biological sciences, and physics to convert raw materials into products that benefit society. They develop new ways to use cells, enzymes, antibodies, and other biochemical agents in medicine, environmental services, and industry.

\n

Students of biochemical engineering study the chemical reactions and physicochemical transformations that are the foundations of the field. As graduates, their objective is to address the world\u2019s complex needs while preserving resources and opportunities for future generations.

", "display_order": 1, "created_at": "2019-10-01T11:36:07.086706-07:00", "updated_at": "2021-11-18T13:55:41.229196-08:00"}, {"degree_id": 722, "page": 1, "title": "Program Options", "summary_markdown": "**It is important to select a program that is accredited by the Accreditation Board for Engineering and Technology (ABET).**\r\n\r\n**Some schools offer combined degrees in chemical and biochemical engineering or biochemical and biomedical engineering.** \r\n\r\n**Bachelor\u2019s Degree in Biochemical Engineering \u2013 Four Year Duration** \r\nUndergraduate students of biochemical engineering begin their studies with an extensive series of foundation courses in biology, chemistry, physics, and mathematics. They then take fundamental engineering courses that cover topics such as thermodynamics, kinetics, process control, bioreactors, biotechnology facility design, and regulatory compliance. \r\n\r\nThe biochemical engineering laboratory is a major component of the program. With a Bachelor\u2019s Degree in Biochemical Engineering, graduates qualify for entry-level jobs in the field. \r\n\r\nHere is a snapshot of a typical biochemical engineering bachelor\u2019s curriculum: \r\n\r\n**Core Courses** \r\n- Calculus \r\n- Vector Analysis \r\n- Linear Algebra \r\n- Differential Equations \r\n- Classical Physics \r\n- General Chemistry \r\n- Introduction to Biology: Essentials of Life on Earth \r\n- Introduction to Analysis and Design in Chemical Engineering \r\n- Material Balances \r\n- Engineering Problem Solving Laboratory \r\n- Chemical Engineering Profession \r\n- Introduction to Academic Literacies \r\n- Mathematical Methods in Biochemical and Chemical Engineering \r\n- Fluid Mechanics for Biochemical and Chemical Engineers \r\n- Heat Transfer for Biochemical and Chemical Engineers \r\n- Mass Transfer for Biochemical and Chemical Engineers \r\n- Chemical Engineering Thermodynamics with Laboratory \r\n- Chemical Engineering Transport Laboratory \r\n- Chemical Kinetics and Reaction Engineering \r\n- Process Dynamic and Control \r\n- Process Economics and Green Design \r\n- Plant Design Project \r\n- Biochemical Engineering Fundamentals \r\n- Bioseparations \r\n- Biotechnology Facility Design and Regulatory Compliance \r\n- Bioprocess Engineering Laboratory \r\n- Structure and Function of Biomolecules \r\n- Introductory Microbiology with Laboratory \r\n- Physical Chemistry: Introduction to Quantum Mechanics \r\n- Organic Chemistry with Laboratory", "content_markdown": "**Possible Electives** \r\n- Biomolecular Engineering Laboratory \r\n- Cell Biology \r\n- Manufacturing Processes for Biomedical Engineering \r\n- Modeling Strategies for Biomedical Engineering \r\n- Pharmaceutical Chemistry \r\n- Food Microbiology \r\n- Bacterial Physiology \r\n- Plant Genetics \r\n- Writing in the Engineering Discipline \r\n\r\n**Master\u2019s Degree in Biochemical Engineering \u2013 Two to Three Year Duration** \r\nMaster\u2019s programs in biochemical engineering often offer students more than one pathway to their degree. Typical options include a thesis pathway, a research project pathway, and a course-only pathway. Regardless of the choice that individual students make, they are generally required to complete a limited core curriculum, such as the following: \r\n\r\n- Chemical Engineering Thermodynamics \r\n- Methods of Engineering Analysis \r\n- Transport Phenomena \r\n- Advanced Chemical Reaction Kinetics \r\n\r\n**Doctoral Degree in Biochemical Engineering \u2013 Four to Six Year Duration** \r\nThe Doctoral Degree in Biochemical Engineering is very research intensive and prepares students for a career as an independent scholar in the areas of research, teaching, or advanced technical work. As in the master\u2019s program, it is common for schools to require that doctoral students complete some core courses before advancing to Ph.D. candidacy. The four courses listed above, in the master\u2019s section, are examples. Other requirements are passing a qualifying exam; preparation, research, and presentation of a dissertation proposal; and public defense of the doctoral dissertation. \r\n\r\nThese are examples of areas in which master\u2019s and doctoral students may focus their studies and research: \r\n\r\n- Cellular engineering \r\n- Enzyme/ Protein Engineering \r\n- Tissue Engineering \r\n- Development of blood substitutes \r\n- T-cell activation and production \r\n- Design and delivery of gene therapy vehicles \r\n- Nano/Micro particle design for drug delivery \r\n- Wastewater and hazardous waste treatment \r\n- Alternative energies \r\n- Use of nanomaterials to engineer improved inorganic materials for energy storage and transformation", "content_html": "

Possible Electives
\n- Biomolecular Engineering Laboratory
\n- Cell Biology
\n- Manufacturing Processes for Biomedical Engineering
\n- Modeling Strategies for Biomedical Engineering
\n- Pharmaceutical Chemistry
\n- Food Microbiology
\n- Bacterial Physiology
\n- Plant Genetics
\n- Writing in the Engineering Discipline

\n

Master\u2019s Degree in Biochemical Engineering \u2013 Two to Three Year Duration
\nMaster\u2019s programs in biochemical engineering often offer students more than one pathway to their degree. Typical options include a thesis pathway, a research project pathway, and a course-only pathway. Regardless of the choice that individual students make, they are generally required to complete a limited core curriculum, such as the following:

\n\n

Doctoral Degree in Biochemical Engineering \u2013 Four to Six Year Duration
\nThe Doctoral Degree in Biochemical Engineering is very research intensive and prepares students for a career as an independent scholar in the areas of research, teaching, or advanced technical work. As in the master\u2019s program, it is common for schools to require that doctoral students complete some core courses before advancing to Ph.D. candidacy. The four courses listed above, in the master\u2019s section, are examples. Other requirements are passing a qualifying exam; preparation, research, and presentation of a dissertation proposal; and public defense of the doctoral dissertation.

\n

These are examples of areas in which master\u2019s and doctoral students may focus their studies and research:

\n", "display_order": 2, "created_at": "2019-10-01T11:36:07.087833-07:00", "updated_at": "2021-12-14T12:43:45.341952-08:00"}, {"degree_id": 722, "page": 1, "title": "Degrees Similar to Biochemical Engineering", "summary_markdown": "**[Biochemistry](/degrees/biochemistry-degree/)** \r\nThe focus of biochemistry is the chemical processes and reactions that occur in living matter. Biochemists apply principles of both biology and chemistry to issues in many different sectors, including the environment, medicine and health, industry and manufacturing, agriculture, biofuels, and marine science. \r\n\r\n**[Biomedical Engineering](/degrees/biomedical-engineering-degree/)** \r\nSimply stated, biomedical engineering uses engineering to solve health and medical problems. For example, a biomedical engineer might look for chemical signals in the body that warn of a particular disease or condition. \r\n\r\n**[Biophysics](/degrees/biophysics-degree/)** \r\nBiophysics applies the theories and methods of physics to understand how biological systems like the brain, the circulatory system, and the immune system function. Coursework includes math, chemistry, physics, engineering, pharmacology, and materials science. \r\n\r\n**[Chemical Engineering](/degrees/chemical-engineering-degree/)** \r\nThis degree field is focused on how the chemical, biochemical, and physical properties of substances can be changed to turn them into something else. Examples of this work are making plastic from oil, developing synthetic fibers for clothing, identifying ways to mass-produce drugs, and finding ways to solve environmental problems.", "content_markdown": "**[Chemistry](/degrees/chemistry-degree/)** \r\nChemistry deals with identifying the substances that make up matter. Degree programs in chemistry focus on investigating these substances: their properties; how they interact, combine, and change; and how scientists can use chemical processes to form new substances. \r\n\r\n**[Food Science](/degrees/food-science-degree/)** \r\nThe subject matter of food science degree programs spans the areas of biology, biochemistry, and chemical engineering. Students learn how to apply these foundations to examine food properties and develop foods that are sustainable. \r\n\r\n**[Materials Science](/degrees/materials-science-degree/)** \r\nMaterials scientists apply principles of engineering, physics, and chemistry to study existing materials and invent and manufacture new materials. Their work has broad applications to solving real-world problems. It is essential to our everyday lives. Degree programs in materials science cover the structure and composition of materials, how they behave under various conditions, and how they can be manipulated and combined for specific uses in specific industries \u2013 from health and engineering to electronics, construction, and manufacturing.", "content_html": "

Chemistry
\nChemistry deals with identifying the substances that make up matter. Degree programs in chemistry focus on investigating these substances: their properties; how they interact, combine, and change; and how scientists can use chemical processes to form new substances.

\n

Food Science
\nThe subject matter of food science degree programs spans the areas of biology, biochemistry, and chemical engineering. Students learn how to apply these foundations to examine food properties and develop foods that are sustainable.

\n

Materials Science
\nMaterials scientists apply principles of engineering, physics, and chemistry to study existing materials and invent and manufacture new materials. Their work has broad applications to solving real-world problems. It is essential to our everyday lives. Degree programs in materials science cover the structure and composition of materials, how they behave under various conditions, and how they can be manipulated and combined for specific uses in specific industries \u2013 from health and engineering to electronics, construction, and manufacturing.

", "display_order": 3, "created_at": "2019-10-01T11:36:07.088927-07:00", "updated_at": "2021-12-14T12:41:33.964674-08:00"}, {"degree_id": 722, "page": 1, "title": "Skills You’ll Learn", "summary_markdown": "Individuals who study and work in the field of biochemical engineering develop a set of skills that are transferable to a variety of careers. Among these skills are: \r\n\r\n- Ability to formulate and test hypotheses and ideas \r\n- Computer-aided design (CAD) software \r\n- Creativity and inquisitiveness \r\n- Critical thinking \r\n- Data collection, analysis, and information processing \r\n- Detail orientation \r\n- Developing processes \r\n- Documentation and reporting \r\n- Maintaining and updating knowledge \r\n- Managing and leading cross-functional teams \r\n- Persistence \r\n- Training and teaching \r\n- Troubleshooting", "content_markdown": "", "content_html": "", "display_order": 4, "created_at": "2019-10-01T11:36:07.089998-07:00", "updated_at": "2021-12-14T12:34:41.715306-08:00"}, {"degree_id": 722, "page": 1, "title": "What Can You Do with a Biochemical Engineering Degree?", "summary_markdown": "Biochemical engineering graduates work primarily in the areas of chemical manufacturing, scientific research and development, and sustainable production and manufacturing. \r\n\r\nThese are some of the areas in which they make significant contributions: \r\n- Cleaning Products \r\n- Environmental Remediation \u2013 water purification, removal of pollutants or the reversal of other environmental damage \r\n- Food Engineering / Food Production and Processing \r\n- Healthcare / Medicine - making medicines from microbes \r\n- Personal Care Products \r\n- Pesticides \r\n- Petroleum Products \u2013 such as oil, paint, and plastic \r\n- Pharmaceuticals and Biopharmaceuticals \r\n- Pulp and Paper \r\n- Renewable Energy / Biofuels \r\n- Technology Development \u2013 example: agro (agricultural) technology \r\n- Textiles", "content_markdown": "Here are some of the titles commonly held by biochemical engineers: \r\n- Biomedical Engineering Technician \r\n- Bioprocess Engineer \r\n- Food Processing Engineer \r\n- Pharmaceutical Engineer \r\n- Project Engineer \r\n- Quality Control Engineer \r\n- Research and Development Manager \r\n- Research Scientist", "content_html": "

Here are some of the titles commonly held by biochemical engineers:
\n- Biomedical Engineering Technician
\n- Bioprocess Engineer
\n- Food Processing Engineer
\n- Pharmaceutical Engineer
\n- Project Engineer
\n- Quality Control Engineer
\n- Research and Development Manager
\n- Research Scientist

", "display_order": 5, "created_at": "2019-10-01T11:36:07.091081-07:00", "updated_at": "2021-12-14T12:42:38.761292-08:00"}], "degree_specializations": []}">

什么是生化工程学位?

生化工程师将工程原理与数学、化学、生物科学和物理知识相结合,将原材料转化为造福社会的产品。他们开发新的方法来使用细胞、酶、抗体和其他生物化学制剂在医药、环境服务和工业。

生物化学工程专业的学生研究作为该领域基础的化学反应和物理化学转化。作为毕业生,他们的目标是解决世界的复杂需求,同时为子孙后代保留资源和机会。

程序选项

选择一个由工程技术认证委员会(ABET)认可的课程是很重要的。

一些学校提供化学和生物化学工程或生物化学和生物医学工程的联合学位。

生物化学工程学士学位-四年
生物化学工程的本科生开始学习广泛的生物、化学、物理和数学基础课程。然后,他们学习基础工程课程,涵盖热力学、动力学、过程控制、生物反应器、生物技术设施设计和法规遵从性等主题。

生物化学工程实验室是该计划的主要组成部分。在生化工程学士学位,毕业生有资格在该领域的入门级工作。

以下是一个典型的生物化学工程学士课程的快照:

核心课程

  • 微积分
  • 矢量分析
  • 线性代数
  • 微分方程
  • 经典物理学
  • 普通化学
  • 生物学导论:地球生命的基本要素
  • 化学工程分析与设计导论“,
  • 物质平衡
  • 工程问题解决实验室
  • 化学工程专业
  • 《学术素养导论
  • 生物化学工程中的数学方法“,
  • 生物化学和化学工程师流体力学
  • 生物化学和化学工程师的传热
  • 生物化学和化学工程师的传质
  • 化学工程热力学与实验室
  • 化学工程运输实验室
  • 化学动力学与反应工程“,
  • 过程动态与控制
  • 过程经济学与绿色设计
  • 厂房设计项目
  • 生化工程基础
  • Bioseparations
  • 生物技术设施设计与法规遵从
  • 生物过程工程实验室
  • 生物分子的结构与功能
  • 微生物学入门及实验室
  • 物理化学:量子力学导论
  • 有机化学与实验室

可能的选修课

  • 生物分子工程实验室
  • 细胞生物学
  • 生物医学工程制造工艺
  • 生物医学工程建模策略
  • 药物化学
  • 食品微生物学
  • 细菌的生理
  • 植物遗传学
  • 工程学科写作

生物化学工程硕士学位-两到三年的时间
生物化学工程硕士课程通常为学生提供不止一种获得学位的途径。典型的选择包括论文路径、研究项目路径和课程路径。无论个别学生做出何种选择,他们通常都需要完成有限的核心课程,例如:

  • 化学工程热力学
  • 工程分析方法
  • 迁移现象
  • 高级化学反应动力学

生物化学工程博士学位(4 - 6年)
生物化学工程博士学位是非常密集的研究,为学生在研究,教学或高级技术工作领域作为独立学者的职业生涯做好准备。与硕士课程一样,学校通常要求博士生在攻读博士学位之前完成一些核心课程。上面硕士部分列出的四门课程就是例子。其他要求包括通过资格考试;准备,研究,并提出论文提案;博士论文公开答辩。

以下是硕士和博士学生可以集中学习和研究的领域:

  • 细胞工程
  • 酶/蛋白质工程
  • 组织工程
  • 血液替代品的发展
  • t细胞的激活和产生
  • 基因治疗载体的设计和交付
  • 纳米/微粒子给药设计
  • 废水及危险废物处理
  • 替代能源
  • 利用纳米材料来设计用于能量储存和转换的改进无机材料

与生化工程类似的学位

生物化学
生物化学的重点是发生在生物物质中的化学过程和反应。生物化学家将生物学和化学的原理应用于许多不同领域的问题,包括环境、医学和健康、工业和制造业、农业、生物燃料和海洋科学。

生物医学工程
简单地说,生物医学工程利用工程来解决健康和医疗问题。例如,生物医学工程师可能会在体内寻找警告特定疾病或状况的化学信号。

生物物理学
生物物理学应用物理学的理论和方法来理解生物系统,如大脑、循环系统和免疫系统的功能。课程包括数学、化学、物理、工程学、药理学和材料科学。

化学工程
该学位领域主要研究如何改变物质的化学、生物化学和物理性质,从而将其转变为其他物质。这方面的工作包括从石油中制造塑料,开发用于服装的合成纤维,确定大规模生产药物的方法,以及寻找解决环境问题的方法。

化学
化学研究的是识别构成物质的物质。化学学位课程侧重于研究这些物质:它们的性质;它们如何相互作用、结合和变化;以及科学家如何利用化学过程来形成新物质。

食品科学
食品科学学位课程的主题涵盖生物学、生物化学和化学工程等领域。学生将学习如何应用这些基础知识来研究食物特性并开发可持续的食物。

材料科学
材料科学家运用工程学、物理学和化学原理来研究现有材料,发明和制造新材料。他们的工作在解决现实问题方面有着广泛的应用。它是我们日常生活中必不可少的。材料科学的学位课程涵盖了材料的结构和组成,它们在各种条件下的表现,以及它们如何被操纵和组合,用于特定行业的特定用途——从健康和工程到电子,建筑和制造业。

你将学会的技能

在生物化学工程领域学习和工作的个人开发了一套可转移到各种职业的技能。这些技能包括:

  • 能够制定和测试假设和想法
  • 计算机辅助设计(CAD)软件
  • 创造力和好奇心
  • 批判性思维
  • 数据收集、分析和信息处理
  • 详细的方向
  • 开发流程
  • 文件和报告
  • 维护和更新知识
  • 管理和领导跨职能团队
  • 持久性
  • 培训与教学
  • 故障排除

生化工程学位能做什么?

生物化学工程专业的毕业生主要从事化学制造、科学研究和开发以及可持续生产和制造领域的工作。

以下是他们作出重大贡献的一些领域:

  • 清洁产品
  • 环境补救-水的净化,污染物的去除或扭转其他环境损害
  • 食品工程/食品生产与加工
  • 医疗保健/医药——从微生物中制造药物
  • 个人护理产品
  • 农药
  • 石油产品——如石油、油漆和塑料
  • 制药和生物制药
  • 纸浆及造纸
  • 可再生能源/生物燃料
  • 技术发展-例如:农业技术
  • 纺织品

以下是生化工程师通常拥有的一些头衔:

  • 生物医学工程技术员
  • 生物工艺工程师
  • 食品加工工程师
  • 制药工程师
  • 项目工程师
  • 质量控制工程师
  • 研发经理
  • 研究科学家

学费

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