A dilute aqueous solution of calcium hydroxide at 25 °C reacts with gaseous hydrogen chloride via the given reaction. 2 HCI(g) + Ca(ОН)2(аq, r %3D оо) — CaCl2(aq, r = ∞) + 2 H2O(1) If the hydrogen chloride enters the reactor at 69.0 °C and the solution exits at 25 °C, how much heat must be removed for every mole of CaCl, produced? The heat of solution of Ca(OH)2 is –1008.2 kJ/mol, the heat of formation of Ca(OH)2 is -985.65 kJ/mol, the heat of solution of CaCl, is –875.07 kJ/mol, and the heat of formation of CaCl, is –797.46 kJ/mol. 133.13 Q = kJ/mol Incorrect

Introduction to Chemical Engineering Thermodynamics
8th Edition
ISBN:9781259696527
Author:J.M. Smith Termodinamica en ingenieria quimica, Hendrick C Van Ness, Michael Abbott, Mark Swihart
Publisher:J.M. Smith Termodinamica en ingenieria quimica, Hendrick C Van Ness, Michael Abbott, Mark Swihart
Chapter1: Introduction
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A dilute aqueous solution of calcium hydroxide at 25 °C reacts with gaseous hydrogen chloride via the given reaction.
2 HCI(g) + Ca(ОН)2(аq, r %3D o) —— СаCl2(аq, r %3 о) + 2 H20(1)
If the hydrogen chloride enters the reactor at 69.0 °C and the solution exits at 25 °C, how much heat must be removed for every
mole of CaCl2 produced? The heat of solution of Ca(OH)2 is –1008.2 kJ/mol, the heat of formation of Ca(OH)2 is
-985.65 kJ/mol, the heat of solution of CaCl, is -875.07 kJ/mol, and the heat of formation of CaCl, is –797.46 kJ/mol.
133.13
Q =
kJ/mol
Incorrect
Transcribed Image Text:A dilute aqueous solution of calcium hydroxide at 25 °C reacts with gaseous hydrogen chloride via the given reaction. 2 HCI(g) + Ca(ОН)2(аq, r %3D o) —— СаCl2(аq, r %3 о) + 2 H20(1) If the hydrogen chloride enters the reactor at 69.0 °C and the solution exits at 25 °C, how much heat must be removed for every mole of CaCl2 produced? The heat of solution of Ca(OH)2 is –1008.2 kJ/mol, the heat of formation of Ca(OH)2 is -985.65 kJ/mol, the heat of solution of CaCl, is -875.07 kJ/mol, and the heat of formation of CaCl, is –797.46 kJ/mol. 133.13 Q = kJ/mol Incorrect
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