Easy Learning with Principles of Chemical Processes - Mass & Energy Balance
Teaching & Academics > Science
8h 19m
Free
4

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Language: English

Master Chemical Process Principles: Mass & Energy Balance for Engineers

What you will learn:

  • Understand the principles of mass and energy balance in chemical engineering processes.
  • Master the conversion between mass and moles, calculate mass and mole fractions, and understand concentration concepts.
  • Explore different pressure scales, conversion factors, and techniques for measuring fluid pressure.
  • Gain a comprehensive understanding of ideal gases, gas mixtures, and key gas laws like Henry's Law, Raoult's Law, and Dalton's Law.
  • Apply the law of conservation of mass to different systems, including steady and unsteady states, batch processes, and flow chart analysis.
  • Learn how to perform material balances on reactive systems, including limiting and excess reactants, the extent of reaction, and multiple reactions.
  • Master the principles of energy balance, including different energy forms, the First Law of Thermodynamics, and how to perform energy balances on closed and open systems.
  • Develop the ability to solve real-world problems using practical exercises and detailed numerical problems.

Description

Ready to elevate your chemical engineering expertise? This comprehensive course dives deep into the core principles of mass and energy balance, equipping you with the practical knowledge and tools needed to tackle real-world challenges.

From understanding molecular weights and mole conversions to mastering complex material balances and energy calculations, you'll gain a firm grasp of fundamental concepts that are essential for success in the chemical engineering industry.

Our structured curriculum guides you through a series of practical exercises and detailed numerical problems, ensuring you can apply your knowledge to real-world scenarios. With interactive lectures and clear explanations, this course provides the perfect foundation for both new and experienced engineers looking to solidify their understanding of chemical process principles.

Dive into these key topics:

  • Composition of Mixtures: Delve into molecular weights, mole conversions, mass and mole fractions, and concentration calculations.
  • Pressure and its Measurement: Explore pressure scales, conversion factors, and learn how to effectively measure fluid pressure using monometers.
  • Ideal Gases and Gas Laws: Master the concepts of ideal gases, gas mixtures, and key laws like Henry's Law, Raoult's Law, and Dalton's Law.
  • Fundamentals of Material Balances: Learn the principles of mass conservation and how to apply it to different systems, including steady and unsteady states, batch processes, and flow chart analysis.
  • Balances on Reactive Systems: Understand how to perform material balances on reactive processes, including limiting and excess reactants, the extent of reaction, and multiple reactions.
  • Energy Balance: Gain a strong understanding of energy forms, the First Law of Thermodynamics, and how to perform energy balances on both open and closed systems.

Enroll today and take your chemical engineering skills to the next level!

Curriculum

Composition of Mixtures

This section delves into the fundamentals of mixture composition, starting with a thorough understanding of molecular weight and mole conversions. You'll learn how to convert between mass and moles, calculate mass and mole fractions, and understand the concept of average molecular weight. The section concludes with a comprehensive exploration of concentration, providing you with the tools to analyze and quantify mixtures effectively.

Pressure, Scales of Pressure and Measurement of Pressure

This section provides a comprehensive overview of pressure, covering its various scales, including atmospheric, gauge, vacuum, and absolute pressure. You'll learn how to convert between these scales and apply conversion factors to solve real-world problems. The section also delves into the methods used for fluid pressure measurement, particularly focusing on the use of monometers. Through practical examples and exercises, you'll gain hands-on experience in accurately measuring fluid pressure.

Ideal Gas and Laws of Gases

This section explores the behavior of ideal gases and the fundamental gas laws that govern their behavior. You'll learn about the ideal gas equation of state, standard temperature and pressure conditions, and how to solve problems involving ideal gases. The section then delves into the concept of ideal gas mixtures and the equilibrium between vapor and liquid phases in multi-component systems. You'll also gain an in-depth understanding of important laws like Henry's Law, Raoult's Law, and the Antoine Equation, which are crucial for analyzing gas mixtures and vapor-liquid equilibria.

Fundamentals of Material Balances

This section lays the foundation for understanding material balances, a crucial concept in chemical engineering. You'll learn about the classification of chemical processes, the difference between steady and unsteady states, and the fundamental balance equation. The section then explores differential and integral balances, providing you with the tools to analyze material balances in various scenarios. You'll also learn how to perform material balance calculations on batch processes, semi-batch processes, and continuous processes. The section concludes with an introduction to flow chart streams and flow chart scaling, equipping you with the necessary tools to analyze and understand complex chemical processes.

Balances on Reactive Systems

This section builds upon the principles of material balances by focusing specifically on reactive systems. You'll learn how to perform material balances on systems involving chemical reactions, including the concepts of limiting and excess reactants, the extent of reaction, and the calculation of the extent of reaction for multiple reactions. You'll also gain an understanding of yield and selectivity in multi-reaction systems. The section concludes with an exploration of balances on molecular and atomic species and a detailed explanation of degree of freedom analysis for reactive balances.

Energy Balance

This section introduces the concept of energy balance, a fundamental principle in chemical engineering. You'll learn about different forms of energy, including kinetic, molecular, and internal energy, and the First Law of Thermodynamics. The section then explores how to perform energy balances on both closed and open systems, including the concepts of specific properties and enthalpy. You'll gain hands-on experience in applying energy balance calculations to real-world scenarios.

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