Showing posts with label Chemical Reactions Engineering. Show all posts
Showing posts with label Chemical Reactions Engineering. Show all posts

Monday, February 1, 2016

Buy essential books to learn HYSYS Simulation


In this post I shall show you many essential books to learn and master one of the most famous chemical processing simulation software Aspen HYSYS:

 

1-      Aspen HYSYS: An Introduction to Chemical Engineering Simulation: For Chemical Engineering Undergraduate Students Paperback – March 20, 2013
         By Mohd. Kamaruddin Abd. Hamid (Author)


 

Aspen HYSYS: An Introduction to Chemical Engineering Simulations is intended for students who are using Aspen HYSYS for the first time and have little or no experience in computer simulation. It can be used as a textbook in freshmen chemical engineering courses, or workshops where Aspen HYSYS is being taught. The book can also serve as a reference in more advanced chemical engineering courses when Aspen HYSYS is used as a tool for simulation and solving problems. It also can be used for self study of Aspen HYSYS by students and practicing engineers. In addition, the book can be a supplement or a secondary book in courses where Aspen HYSYS is used, but the instructor does not have time to cover it extensively.
 
Buy the hardcopy from:
  
                                                                 


2-      Hysys Software For Chemical and Petroleum Engineering Paperback – March 5, 2014
        By Ahmmed Saadi Ibrahem  (Author), Aref Wazwaz (Author)

 

This work is provided a lot of examples in different fields of chemical engineering to design accurate solutions by using HYSYS soft ware. Chapter 1 includes basic rules of HYSYS soft ware to inputs data and conditions of the processes. Chapter 2 gives deep explain about distillation column to install it in chemical plant. This book shows in the other chapters’ scientific steps to install for different separation process using different examples and also, provides different examples in heat transfer, mass transfer, modeling and chemical reaction for CSTR reactor to solve these problems depends on HYSYS soft ware.
 
 
 
Buy it from:
 
                                                                



3-      HYSYS and Aspen Plus in Process Design Paperback – February 17, 2015
        By Rao K. Naga Malleswara  (Author)

 

 
The three stages of Process Design procedure are 1)Conceptual design stage 2)Preliminary Design stage and 3)Detailed Design stage. These three stages are well explained in this book. Process Design Procedure developed in this book using Preliminary process calculations (Hand calculations), HYSYS and ASPEN PLUS V8.0 can be applied to various other Chemical Process Designs. This book also can serve as a class room text for senior and graduate level chemical Process design courses at the University level. It is especially useful for Chemical Engineers.

 

Request hardcopy from:
 
                                                                           

4-      Chemical Process Simulation and the Aspen HYSYS v8.3 Software Paperback – November 28, 2013  By Michael E. Hanyak Jr  (Author)
 
 
The document Chemical Process Simulation and the Aspen HYSYS v8.3 Software is a self-paced instructional manual that aids students in learning how to use a chemical process simulator and how a process simulator models material balances, phase equilibria, and energy balances for chemical process units. The student learning is driven by the development of the material and energy requirements for a specific chemical process flowsheet. This semester-long, problem-based learning activity is intended to be a student-based independent study, with about two-hour support provided once a week by a student teaching assistant to answer any questions. Chapter 1 of this HYSYS manual provides an overview of the problem assignment to make styrene monomer from toluene and methanol. Chapter 2 presents ten tutorials to introduce the student to the HYSYS simulation software. The first six of these tutorials can be completed in a two-week period for the introductory chemical engineering course. The other four are intended for the senior-level design course. Chapter 3 provides five assignments to develop the student’s abilities and confidence to simulate individual process units using HYSYS. These five assignments can be completed over a three-week period. Chapter 4 contains seven assignments to develop the styrene monomer flowsheet. These seven assignments can be completed over a seven-week period. In Chapter 4, each member of a four-, five-, or six-member team begins with the process reactor unit for a specifically-assigned temperature, molar conversion, and yield. Subsequent assignments increase the complexity of the flowsheet by adding process units, one by one, until the complete flowsheet with recycle is simulated in HYSYS. The team’s objective is to determine the operating temperature for the reactor, such that the net profit is maximized before considering federal taxes. Finally, eleven appendices provide mathematical explanations of how HYSYS does its calculations for various process units—process stream, stream tee, stream mixer, pump, valve, heater/cooler, chemical reactor, two-phase separator, three-phase separator, component splitter, and simple distillation. This HYSYS manual can be used with most textbooks for the introductory course on chemical engineering, like Elementary Principles of Chemical Processes (Felder and Rousseau, 2005), Basic Principles and Calculations in Chemical Engineering (Himmelblau and Riggs, 2004), or Introduction to Chemical Processes: Principles, Analysis, Synthesis (Murphy, 2007). It can also be used as a refresher for chemical engineering seniors in their process engineering design course. Because the HYSYS manuscript was compiled using Adobe Acrobat®, it contains many web links. Using a supplied web address and Acrobat Reader®, students can electronically access the web links that appear in many of the chapters. These web links access Aspen HYSYS®, Acrobat PDF®, Microsoft Word®, and Microsoft Excel® files that appear in many of chapters. Students can view but not copy or print the electronic version of the HYSYS manual.
 
Request it from: 

 
                                                                       



5-      Design & Cost Estimation of Ethylene Production Unit From Naphta: Naphtha cracking process is simulated with ASPEN HYSYS then design and cost estimation is done with ASPEN ICARUS Paperback – October 15, 2015
       By:  Aref Shahi (Author), Maziar Heidari (Author), Hamed Aghaee (Author)


Ethylene is widely used in chemical industry, and its worldwide production(over 109 million tonnes in 2006) exceeds that of any other organic compound. Commercially ethylene is obtained by(1)thermal cracking of hydrocarbons such as ethane, propane, butane, naphtha, kerosene, gasoil, crude oil,etc,(2) auto thermic cracking (partial oxidation) of the above hydrocarbons,(3)recovery from refinery off-gas,(4) recovery from coke-oven gas, and(5) catalytic dehydration of ethyl alcohol or ethyl ether. The thermal cracking process is the most interesting process to produce ethylene commercially .At this project production of ethylene from naphtha is studied. Naphtha, an important feedstock for ethylene production, is a collective of liquid hydrocarbon intermediate oil refining products. It is a mixture of hydrocarbons in the boiling point range of 30-200ÂșC. it is fed to the naphtha cracking furnace. Then, the cracked gas is fed to gasoline fractionator, where it separates the quench oil as a bottom and the cracked gasoline and lighter components as the overhead products. Then, the overhead products are separated in different column.
 
Request it from: 
                                                           

Wednesday, April 11, 2012

Chemical Reaction Engineering, 3rd Edition by Octave Levenspiel


Chemical Reaction Engineering, 3rd Edition by Octave Levenspiel
Publisher: Wiley | 3rd edition (August 13, 1998) | ISBN: 047125424X | Pages: 688 | PDF | 13.67 MB

Chemical reaction engineering is concerned with the exploitation of chemical reactions on a commercial scale. Its goal is the successful design and operation of chemical reactors. This text emphasizes qualitative arguments, simple design methods, graphical procedures, and frequent comparison of capabilities of the major reactor types. Simple ideas are treated first, and are then extended to the more complex.

An improved and simplified edition of this classic introduction to the principles of reactor design for chemical reactions of all types--homogeneous, catalytic, biochemical, gas, solid, extractive, etc. Adds new material on systems of deactivating catalysts, flow modeling and diagnosis of the ills of operating equipment, and new simple design procedures for packed bed and fluidized bed reactors.

Download Link:
                             4Shared (14.1 MB) or Uploading (13.7 MB) or 4Shared (14.1 MB)



Monday, April 2, 2012

Modeling of Chemical Kinetics and Reactor Design, A. Kayode Coker



A. Kayode Coker Ph.D.,"Modeling of Chemical Kinetics and Reactor Design"
Gulf Professional Publishing | 2001 | ISBN-10:
 0884154815| PDF | 1136 pages | 12 MB


Selecting the best type of reactor for any particular chemical reaction, taking into consideration safety, hazard analysis, scale-up, and many other factors is essential to any industrial problem. An understanding of chemical reaction kinetics and the design of chemical reactors is key to the success of the of the chemist and the chemical engineer in such an endeavor. This valuable reference volume conveys a basic understanding of chemical reactor design methodologies, incorporating control, hazard analysis, and other topics not covered in similar texts. In addition to covering fluid mixing, the treatment of wastewater, and chemical reactor modeling, the author includes sections on safety in chemical reaction and scale-up, two topics that are often neglected or overlooked.
As a real-world introduction to the modeling of chemical kinetics and reactor design, the author includes a case study on ammonia synthesis that is integrated throughout the text. The text also features an accompanying CD, which contains computer programs developed to solve modeling problems using numerical methods. Students, chemists, technologists, and chemical engineers will all benefit from this comprehensive volume.
Shows readers how to select the best reactor design, hazard analysis, and safety in design methodology, Features computer programs developed to solve modeling problems using numerical methods.

Download link:
                             Depositfiles  (12MB)

Wednesday, March 28, 2012

Perry's Chemical Engineers' Handbook 8th edition, Robert H. Perry



Perry's Chemical Engineers' Handbook 8th edition, Robert H. Perry
ISBN-10: 0071422943 | ISBN-13: 978-0071422949 | Publication Date: October 23, 2007 

Get Cutting-Edge Coverage of All Chemical Engineering Topics from Fundamentals to the Latest Computer Applications.

First published in 1934, Perry's Chemical Engineers' Handbook has equipped generations of engineers and chemists with an expert source of chemical engineering information and data. Now updated to reflect the latest technology and processes of the new millennium, the Eighth Edition of this classic guide provides unsurpassed coverage of every aspect of chemical engineering-from fundamental principles to chemical processes and equipment to new computer applications.
Filled with over 700 detailed illustrations, the Eighth Edition of Perry's Chemcial Engineering Handbook features:

Comprehensive tables and charts for unit conversion.
A greatly expanded section on physical and chemical data.
New to this edition: the latest advances in distillation, liquid-liquid extraction, reactor modeling, biological processes, biochemical and membrane separation processes, and chemical plant safety practices with accident case histories.

Inside This Updated Chemical Engineering Guide
Conversion Factors and Mathematical Symbols, Physical and Chemical Data, Mathematics, Thermodynamics, Heat and Mass Transfer, Fluid and Particle Dynamics Reaction Kinetics, Process Control, Process Economics, Transport and Storage of Fluids • Heat Transfer Equipment, Psychrometry, Evaporative, Cooling, and Solids Drying, Distillation, Gas Absorption and Gas-Liquid System Design,  Liquid-Liquid Extraction Operations and Equipment, Adsorption and Ion Exchange • Gas-Solid Operations and Equipment, Liquid-Solid Operations and Equipment, Solid-Solid Operation.

Download Links:
                                        Dropbox (81.8 MB)