Pulp and paper engineering programs focus on the application of mathematical and scientific principles to the design, development, and manufacturing of pulp and paper products.

\n

The curriculum, which is founded upon courses in chemistry, advanced math, and physics, draws heavily from chemical engineering. Its objective is to train the next generation of pulp and paper engineers, whose work involves developing more durable paper, papers that take dyes more completely, and sustainable methods of paper manufacture using techniques like renewable sources of fiber and the addition of recycled materials.

", "display_order": 1, "created_at": "2019-10-01T11:36:04.683675-07:00", "updated_at": "2021-11-18T13:55:39.923608-08:00"}, {"degree_id": 531, "page": 1, "title": "Program Options", "summary_markdown": "**It is important to choose educational programs accredited by the Accreditation Board for Engineering and Technology (ABET).** \r\n\r\n**Certificate in Pulp and Paper Engineering \u2013 Nine Month to One Year Duration** \r\nThe certificate in pulp and paper engineering is suitable for people graduating in other branches of engineering or chemistry. \r\n\r\nIn the pulp and paper engineering certificate program, lectures, laboratories, and field trips address topics like these: \r\n\r\n- Introduction to Pulp and Paper Manufacture \u2013 the fundamentals of paper manufacture and equipment; introduction to coating, printing, and other uses of paper; the nature and scope of the paper industry \r\n- Stock Preparation and Papermaking \u2013 the processes involved in the formation, consolidation, and drying of a web of paper; topics covered include refining, fourdrinier (a device for producing paper, paperboard, and other fiberboards), and multi-ply operation, pressing, and drying; internal and surface treatments of paper; the effects of additives and fibre types; analysis using chemical, physical, and engineering principles \r\n- Coating \u2013 the fundamentals of pigmented and functional coating of paper and board; coating chemistry, evaluation of coated paper, and the performance of paper in the graphic arts \r\n- Paper Physics Fundamentals \u2013 overview of wood fibers and their properties; fiber and sheet strength and the effect of papermaking operations; fracture and optical properties of paper; basics of paper testing and reclaimed fibers; fiber identification and a paper machine trial \r\n- Pulping and Bleaching \u2013 the processes involved in the production of papermaking fibers; wood anatomy, structure, and chemistry, wood yard operations, chemical and high-yield pulping, bleaching, alternate fiber sources, and pulping and bleaching chemistry; mass and energy balances, process design and control; wood characterization, pulping, and bleaching \r\n- Surface and Wet End Science \u2013 the concepts of surface science, colloid chemistry, and polymers; applications of these concepts to operations in the paper industry; topics include surface tension, absorption and wetting, colloids, foams and emulsions, and wet end additives such as retention aids, strength resins, defoamers, and drainage aids \r\n- Work Experience \u2013 hands-on experience in a job capacity in a pulp, paper, printing, or related industry", "content_markdown": "**Bachelor\u2019s Degree in Pulp and Paper Engineering \u2013 Four Year Duration** \r\nThe pulp and paper engineering bachelor\u2019s program is a chemical engineering-based curriculum. Coursework spans the basic sciences \u2013 chemistry, physics, mathematics, and computer science \u2013 as well as engineering topics like mechanics, thermodynamics, electricity, and design. \r\n\r\nPrograms at this level generally include a capstone design experience in which students work on problems in the design and implementation of new technologies, often with a local paper mill. A summer internship is another common component. Some schools offer an exchange program with a pulp and paper engineering program abroad. \r\n\r\nHere is a snapshot of the layout of a typical bachelor\u2019s program in pulp and paper engineering: \r\n\r\n- Calculus for Science and Engineering \r\n- Multivariable Calculus \r\n- Differential Equations for Engineers and Scientists \r\n- Research Writing \r\n- General Chemistry with Laboratory \r\n- Organic Chemistry with Laboratory \r\n- Computing Methods for Engineers and Scientists \r\n- Professional Engineering Skills \r\n- General Physics with Laboratory \r\n- Introduction to Process Engineering \r\n- Introduction to Papermaking \r\n- The Art and Early History of Papermaking \r\n- Pulp and Paper Laboratory Skills \r\n- Engineering Thermodynamics \r\n- Principles of Mass and Energy Balance \r\n- Probability and Statistics for Engineers \r\n- Unit Operations Laboratory \r\n- Transport Phenomena \r\n- Unit Process Operations \r\n- Information Literacy \r\n- Professional Writing in Paper and Bioprocess Engineering \r\n- Introduction to Economics \r\n- Professional Internship \r\n- Fiber Processing \r\n- Fluid Mechanics \r\n- Papermaking Processes \r\n- Fiber and Paper Properties \r\n- Papermaking Wet End Chemistry \r\n- Process Control \r\n- Engineering Design Economics \r\n- Engineering Design \r\n\r\n**Master\u2019s Degree in Pulp and Paper Engineering \u2013 Two Year Duration** \r\nAt the master\u2019s level, students of pulp and paper engineering select an area of focus. These are some common concentrations: \r\n\r\n**Colloidal Chemistry and Fiber Flocculation** \r\n- Paper sheet formation mechanisms \r\n- Wet-end chemistry and physics \r\n- Effect of additives in fiber networks \r\n\r\n**Fiber and Paper Physics** \r\n- Fiber orientations and sheet properties \r\n- Absorption and transport of moisture in paper materials \r\n- Mechano-sorptive phenomena (the phenomena observed when wood is subjected simultaneously to mechanical loading and sorption resulting from changing hypothermal conditions) \r\n\r\n**Process and Environmental Systems Engineering** \r\n- Energy from biomass and other renewable sources \r\n- Bioseparations of lignocellulosic materials into useful components \r\n- Bioprocessing of renewable materials \r\n- Creation of new bioproducts using ecologically sustainable processes \r\n\r\n**Pulp and Paper Technology** \r\n- Pulping conditions and fiber properties \r\n- Fungal and enzymatic treatments \r\n- Chemicals and energy as by-products \r\n- Statistical analysis of paper structure \r\n- Recycling of papermaking fibers \r\n\r\n**Pulping and Bleaching Processes** \r\n- Reaction mechanisms and kinetics \r\n- Applications of biotechnology \r\n- Lignin and carbohydrate chemistry \r\n- Chemicals from wood and pulping residues \r\n- Energy from wood and pulping residues \r\n- Chemical modification in mechanical pulping \r\n- Catalytic and activation effects", "content_html": "

Bachelor\u2019s Degree in Pulp and Paper Engineering \u2013 Four Year Duration
\nThe pulp and paper engineering bachelor\u2019s program is a chemical engineering-based curriculum. Coursework spans the basic sciences \u2013 chemistry, physics, mathematics, and computer science \u2013 as well as engineering topics like mechanics, thermodynamics, electricity, and design.

\n

Programs at this level generally include a capstone design experience in which students work on problems in the design and implementation of new technologies, often with a local paper mill. A summer internship is another common component. Some schools offer an exchange program with a pulp and paper engineering program abroad.

\n

Here is a snapshot of the layout of a typical bachelor\u2019s program in pulp and paper engineering:

\n\n

Master\u2019s Degree in Pulp and Paper Engineering \u2013 Two Year Duration
\nAt the master\u2019s level, students of pulp and paper engineering select an area of focus. These are some common concentrations:

\n

Colloidal Chemistry and Fiber Flocculation
\n- Paper sheet formation mechanisms
\n- Wet-end chemistry and physics
\n- Effect of additives in fiber networks

\n

Fiber and Paper Physics
\n- Fiber orientations and sheet properties
\n- Absorption and transport of moisture in paper materials
\n- Mechano-sorptive phenomena (the phenomena observed when wood is subjected simultaneously to mechanical loading and sorption resulting from changing hypothermal conditions)

\n

Process and Environmental Systems Engineering
\n- Energy from biomass and other renewable sources
\n- Bioseparations of lignocellulosic materials into useful components
\n- Bioprocessing of renewable materials
\n- Creation of new bioproducts using ecologically sustainable processes

\n

Pulp and Paper Technology
\n- Pulping conditions and fiber properties
\n- Fungal and enzymatic treatments
\n- Chemicals and energy as by-products
\n- Statistical analysis of paper structure
\n- Recycling of papermaking fibers

\n

Pulping and Bleaching Processes
\n- Reaction mechanisms and kinetics
\n- Applications of biotechnology
\n- Lignin and carbohydrate chemistry
\n- Chemicals from wood and pulping residues
\n- Energy from wood and pulping residues
\n- Chemical modification in mechanical pulping
\n- Catalytic and activation effects

", "display_order": 2, "created_at": "2019-10-01T11:36:04.684754-07:00", "updated_at": "2021-12-01T13:20:26.420163-08:00"}, {"degree_id": 531, "page": 1, "title": "Degrees Similar to Pulp and Paper Engineering", "summary_markdown": "**[Biochemical Engineering](/degrees/biochemical-engineering-degree/)** \r\nBiochemical 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. 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. \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. \r\n\r\n**[Chemistry](/degrees/chemistry-degree/)** \r\nChemistry is the science that 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**Engineering Technology** \r\nEngineering technology programs teach the engineering skills required to assist engineers in their work. Common classes are computers for engineering technology, construction methodologies, structural systems, strength of materials, and technical drawing. Some of the subfields of engineering technology are civil engineering technology, construction engineering technology, aerospace engineering technology, and automotive engineering technology.", "content_markdown": "**[Forestry](/degrees/forestry-degree/)** \r\nForestry degree programs teach students how to conserve and manage forests through sustainable practices. This means the curriculum covers both preserving biodiversity, as well as producing wood products in ecologically responsible ways. Classes also address contemporary issues like climate change, carbon management, and how to plan and manage urban forests or green spaces in metropolitan areas. \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. \r\n\r\n**[Nuclear Engineering](/degrees/nuclear-engineering-degree/)** \r\nStudents of nuclear engineering learn how energy released from nuclear reactions can be used in power plants, medical diagnostic equipment, and other industries. Nuclear engineering courses cover nuclear reactor theory, design, safety, and risks.", "content_html": "

Forestry
\nForestry degree programs teach students how to conserve and manage forests through sustainable practices. This means the curriculum covers both preserving biodiversity, as well as producing wood products in ecologically responsible ways. Classes also address contemporary issues like climate change, carbon management, and how to plan and manage urban forests or green spaces in metropolitan areas.

\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.

\n

Nuclear Engineering
\nStudents of nuclear engineering learn how energy released from nuclear reactions can be used in power plants, medical diagnostic equipment, and other industries. Nuclear engineering courses cover nuclear reactor theory, design, safety, and risks.

", "display_order": 3, "created_at": "2019-10-01T11:36:04.685811-07:00", "updated_at": "2021-12-01T13:21:27.077704-08:00"}, {"degree_id": 531, "page": 1, "title": "Skills You’ll Learn", "summary_markdown": "Individuals who study and work in the field of pulp and paper 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, ingenuity, and inquisitiveness \r\n- Critical thinking and problem solving \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- Mathematics \r\n- Persistence \r\n- Training and teaching \r\n- Troubleshooting", "content_markdown": "", "content_html": "", "display_order": 4, "created_at": "2019-10-01T11:36:04.686889-07:00", "updated_at": "2021-11-29T11:59:04.307378-08:00"}, {"degree_id": 531, "page": 1, "title": "What Can You Do with a Pulp and Paper Engineering Degree?", "summary_markdown": "Pulp and paper engineering graduates are employed in manufacturing, process and design engineering, research and product development, technical sales and marketing, and administration. Here is how they apply their knowledge and skills in each of these sectors: \r\n\r\n**Manufacturing** \r\n- Production Planning \r\n- Process Control \r\n- Quality Control \r\n- Plant Engineering \r\n- Production Supervision \r\n- Technical Production Support \r\n- Environmental Management \r\n\r\n**Process and Design Engineering** \r\n- Equipment Design \r\n- Plant Design \r\n- Energy Management", "content_markdown": "**Research and Product Development** \r\n- Product Development \r\n- Process Development \r\n- Operations Research \r\n- Environmental Protection \r\n- Forestry Research \r\n\r\n**Technical Sales and Marketing** \r\n- Direct Selling \r\n- Market Research \r\n- Market Development \r\n- Customer Technical Service \r\n\r\n**Administration** \r\n- Purchasing \r\n- Planning \r\n- Corporate Administration \r\n\r\nJob titles held by professionals in the field include: \r\n- Applications Engineer \u2013 Paper \r\n- [Engineer](//www.chevelle-parts.com/careers/engineer/) \r\n- Mill Superintendent \r\n- Paper Applications Specialist \r\n- Paper Engineer \r\n- Paper Mill Supervisor \r\n- Plant Engineering Team Leader \r\n- Process Engineer \r\n- Project Director \r\n- Researcher \r\n- Technical [Sales Representative](//www.chevelle-parts.com/careers/sales-representative/)", "content_html": "

Research and Product Development
\n- Product Development
\n- Process Development
\n- Operations Research
\n- Environmental Protection
\n- Forestry Research

\n

Technical Sales and Marketing
\n- Direct Selling
\n- Market Research
\n- Market Development
\n- Customer Technical Service

\n

Administration
\n- Purchasing
\n- Planning
\n- Corporate Administration

\n

Job titles held by professionals in the field include:
\n- Applications Engineer \u2013 Paper
\n- Engineer
\n- Mill Superintendent
\n- Paper Applications Specialist
\n- Paper Engineer
\n- Paper Mill Supervisor
\n- Plant Engineering Team Leader
\n- Process Engineer
\n- Project Director
\n- Researcher
\n- Technical Sales Representative

", "display_order": 5, "created_at": "2019-10-01T11:36:04.688134-07:00", "updated_at": "2021-12-01T13:22:56.450099-08:00"}], "degree_specializations": []}">

什么是纸浆和造纸工程学位?

纸浆和造纸工程专业的重点是将数学和科学原理应用于纸浆和造纸产品的设计、开发和制造。

该课程以化学、高等数学和物理课程为基础,大量借鉴了化学工程。它的目标是培养下一代纸浆和造纸工程师,他们的工作包括开发更耐用的纸张,更完全吸收染料的纸张,以及使用可再生纤维和添加回收材料等技术的可持续造纸方法。

程序选项

选择由工程技术认证委员会(ABET)认可的教育项目是很重要的。

纸浆和造纸工程证书-九个月到一年的期限
制浆造纸工程证书适用于从其他工程或化学分支毕业的人。

在纸浆和造纸工程证书课程中,讲座、实验室和实地考察涉及以下主题:

  • 制浆造纸概论——造纸生产和设备的基本原理;涂料、印刷和纸张其他用途的介绍;造纸工业的性质和范围
  • 原纸制备和造纸——纸张形成、固化和干燥的过程;涵盖的主题包括精炼,绞网(一种生产纸张,纸板和其他纤维板的设备),多层操作,压制和干燥;纸张的内部和表面处理;添加剂和纤维种类的影响;运用化学、物理和工程原理进行分析
  • 涂料——纸和纸板的着色和功能性涂料的基本原理;涂布化学,涂布纸的评价,以及纸张在图形艺术中的性能
  • 纸张物理基础——木材纤维及其特性概述;纤维和薄板的强度和造纸操作的影响;纸张的断裂和光学特性;纸张测试和再生纤维基础知识;纤维鉴定和纸机试验
  • 制浆和漂白——造纸纤维生产过程;木材解剖,结构和化学,木材堆场操作,化学和高产制浆,漂白,替代纤维来源,制浆和漂白化学;质量和能量平衡,工艺设计和控制;木材特性,制浆和漂白
  • 表面和湿端科学-表面科学,胶体化学和聚合物的概念;这些概念在造纸工业中的应用;主题包括表面张力,吸收和润湿,胶体,泡沫和乳剂,湿端添加剂,如助留剂,强度树脂,消泡剂,和排水辅助剂
  • 工作经验-在纸浆,造纸,印刷或相关行业的实际工作经验

制浆和造纸工程学士学位-四年
纸浆和造纸工程学士课程是以化学工程为基础的课程。课程涵盖基础科学——化学、物理、数学和计算机科学——以及工程主题,如力学、热力学、电学和设计。

这个级别的课程通常包括一个顶点设计经验,学生在设计和实施新技术的问题上工作,通常与当地的造纸厂合作。暑期实习是另一个常见的组成部分。一些学校提供与国外纸浆和造纸工程项目的交换项目。

以下是一个典型的纸浆和造纸工程学士课程布局的快照:

  • 科学与工程微积分
  • 多变量微积分
  • 《工程师与科学家的微分方程
  • 研究写作
  • 普通化学及实验室
  • 有机化学与实验室
  • 工程师和科学家的计算方法
  • 专业工程技能
  • 普通物理及实验室
  • 过程工程概论
  • 造纸概论
  • 造纸艺术与早期历史“,
  • 制浆造纸实验室技能
  • 工程热力学
  • 质量与能量平衡原理
  • 《工程师概率论与统计
  • 单元操作实验室
  • 迁移现象
  • 单元流程操作
  • 信息素养
  • 论文与生物过程工程专业写作“,
  • 经济学概论
  • 专业实习
  • 纤维加工
  • 流体力学
  • 造纸过程
  • 纤维和纸张性能
  • 造纸湿端化学
  • 过程控制
  • 工程设计经济学
  • 工程设计

纸浆和造纸工程硕士学位-两年制
在硕士阶段,制浆和造纸工程的学生选择一个重点领域。这些是一些常见的浓度:

胶体化学与纤维絮凝“,

  • 纸张形成机理
  • 化学和物理
  • 添加剂在光纤网络中的作用

纤维与纸张物理

  • 纤维取向和片材性能
  • 纸张材料对水分的吸收和输送
  • 机械吸附现象(由于低温条件的变化,木材同时受到机械载荷和吸附时所观察到的现象)

过程与环境系统工程,“,

  • 生物质能和其他可再生能源
  • 木质纤维素材料的生物分离成有用的成分
  • 可再生材料的生物加工
  • 利用生态可持续过程创造新的生物产品

纸浆和造纸技术

  • 制浆条件和纤维性能
  • 真菌和酶处理
  • 化学品和能源作为副产品
  • 论文结构的统计分析
  • 造纸纤维的回收利用

制浆和漂白过程

  • 反应机理及动力学
  • 生物技术的应用
  • 木质素和碳水化合物化学
  • 来自木材和制浆残留物的化学物质
  • 来自木材和制浆残留物的能量
  • 机械制浆中的化学改性
  • 催化和活化效应

类似于制浆和造纸工程的学位

生化工程
生化工程师将工程原理与数学、化学、生物科学和物理学的知识结合起来,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。

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
化学是研究确定构成物质的物质的科学。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。

工程技术
工程技术专业教授协助工程师工作所需的工程技能。常见的课程有工程技术计算机、施工方法、结构系统、材料强度和技术绘图。工程技术的一些子领域是土木工程技术、建筑工程技术、航空航天工程技术和汽车工程技术。

林业
林业学位课程教授学生如何通过可持续的实践来保护和管理森林。这意味着课程既包括保护生物多样性,也包括以生态负责任的方式生产木材产品。课程还涉及当代问题,如气候变化,碳管理,以及如何规划和管理城市森林或都市绿地。

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。

核工程
核工程专业的学生学习如何将核反应释放的能量用于发电厂、医疗诊断设备和其他行业。核工程课程包括核反应堆理论、设计、安全和风险。

你将学会的技能

在纸浆和造纸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、独创性和好奇心
  • 批判性思维和解决问题的能力
  • 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
  • 数学
  • 持久性
  • 培训与教学
  • 故障排除

拥有纸浆和造纸工程学位你能做什么?

制浆和造纸工程专业毕业生从事制造、工艺和设计工程、研究和产品开发、技术销售和市场营销以及管理。以下是他们如何在这些领域运用他们的知识和技能:

制造业

  • 生产计划
  • 过程控制
  • 质量控制
  • 设备工程
  • 生产监督
  • 技术生产支持
  • 环境管理

工艺与设计工程

  • 设备设计
  • 工厂设计
  • 能源管理

研究及产品开发

  • 产品开发
  • 过程开发
  • 运筹学
  • 环境保护
  • 林业研究

技术销售和市场营销

  • 直销
  • 市场研究
  • 市场开发
  • 客户技术服务

政府

  • 采购
  • 规划
  • 企业管理

该领域专业人士的职位包括:

  • 应用工程师-纸张
  • 工程师
  • 工厂负责人
  • 纸张应用专家
  • 纸的工程师
  • 造纸厂主管
  • 设备工程组长
  • 工艺工程师
  • 项目总监
  • 研究员
  • 技术销售代表

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