Answered step by step
Verified Expert Solution
Link Copied!

Question

1 Approved Answer

Pls step by step solution. Pls clearly! I need it right solution. 500 kg/h containing 10% NaOH by weight at 101.3 kPa atmospheric pressure atmosphere

Pls step by step solution. Pls clearly! I need it right solution.

500 kg/h containing 10% NaOH by weight at 101.3 kPa atmospheric pressure atmosphere Aqueous NaOH solution at flow rate until it contains 50 wt% NaOH in a standard type evaporator. evaporated. The boiling temperature of the solution in the evaporator is 379 K of the evaporator. The heat capacity of the superheated water vapor coming out of the separator is 1.926 kJ/kg.K. Since the temperature difference (T) applied in the evaporation process is 29 K, appropriate assumptions have been made. by doing;

a) The pressure (Psep) in the separator part of the evaporator and the applied vacuum (kPa), b) The boiling point rise of the evaporated solution, c) the pressure of saturated steam used for heating (kPa), and d) Calculate the enthalpy (kJ/kg) of the superheated solvent vapor leaving the evaporator.

Step by Step Solution

There are 3 Steps involved in it

Step: 1

blur-text-image

Get Instant Access to Expert-Tailored Solutions

See step-by-step solutions with expert insights and AI powered tools for academic success

Step: 2

blur-text-image

Step: 3

blur-text-image

Ace Your Homework with AI

Get the answers you need in no time with our AI-driven, step-by-step assistance

Get Started

Recommended Textbook for

Fundamentals Of Momentum Heat And Mass Transfer

Authors: James Welty, Gregory L. Rorrer, David G. Foster

6th Edition

1118947460, 978-1118947463

More Books

Students also viewed these Chemical Engineering questions