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Emphasis on improved quality and performance of distilled products
and the demand for reduced operating costs place a heavy burden on
both the personnel responsible for profitability and the
manufacturing department charged with operating the processing
equipment. There have been dramatic improvements in the computer
software and hardware used to simulate and model the distillation
process and potential response to experimentation, but mastering
the art of distillation process and control still requires solid
understanding of a large body of information. With a focus on
achieving product purity at low cost, Distillation Control,
Optimization, and Tuning: Fundamentals and Strategies highlights
core concepts. These include process variables for continuous
binary distillation columns and the four basic control strategies,
the distillate and bottoms product quality performance objectives,
and the tuning of process control loops. Without dwelling on
complex mathematical descriptions, the book presents the
fundamentals of process control of a distillation column as a
separation and purification unit operation. It covers the concepts
and functional criteria that are critical to successful
implementation of process control, as well as measurement and
improvement of product quality performance. It describes how
process control loops for distillation columns can be tuned for
stable operation, with a balance between minimum variability from
setpoint changes and excellent response to load disturbances.
Designed for students, engineers, technicians, and plant operators
alike, this book emphasizes the prevailing need to strike a balance
between the details of hypotheses and good engineering judgment.
The author outlines learning objectives at the beginning of each
chapter and includes chapter-end summaries, exercises, and
references to help readers acquire essential knowledge and
understanding. The result is a resource that will inform future
decisions for the design, operation, and troubleshooting of
distillation process control systems.
Emphasis on improved quality and performance of distilled products
and the demand for reduced operating costs place a heavy burden on
both the personnel responsible for profitability and the
manufacturing department charged with operating the processing
equipment. There have been dramatic improvements in the computer
software and hardware used to simulate and model the distillation
process and potential response to experimentation, but mastering
the art of distillation process and control still requires solid
understanding of a large body of information. With a focus on
achieving product purity at low cost, Distillation Control,
Optimization, and Tuning: Fundamentals and Strategies highlights
core concepts. These include process variables for continuous
binary distillation columns and the four basic control strategies,
the distillate and bottoms product quality performance objectives,
and the tuning of process control loops. Without dwelling on
complex mathematical descriptions, the book presents the
fundamentals of process control of a distillation column as a
separation and purification unit operation. It covers the concepts
and functional criteria that are critical to successful
implementation of process control, as well as measurement and
improvement of product quality performance. It describes how
process control loops for distillation columns can be tuned for
stable operation, with a balance between minimum variability from
setpoint changes and excellent response to load disturbances.
Designed for students, engineers, technicians, and plant operators
alike, this book emphasizes the prevailing need to strike a balance
between the details of hypotheses and good engineering judgment.
The author outlines learning objectives at the beginning of each
chapter and includes chapter-end summaries, exercises, and
references to help readers acquire essential knowledge and
understanding. The result is a resource that will inform future
decisions for the design, operation, and troubleshooting of
distillation process control systems.
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