a. Sulphur trioxide (SO3) is produced in an industrial scale from sulphur (S) and oxygen (O2). For simplicity, let's assume this is a one-step reaction. How many m³ of air with (O2) = 21 %, T = 18 °C and 325 kPa are required to produce 58 t of SO3, if you calculate a volume excess for O2 of 23 %? b. Upon reaction of SO3 with water, sulphuric acid is formed. Formulate the reaction equation and calculate which volume of water you would need to convert all SO3 from a. into sulphuric acid?
a. Sulphur trioxide (SO3) is produced in an industrial scale from sulphur (S) and oxygen (O2). For simplicity, let's assume this is a one-step reaction. How many m³ of air with (O2) = 21 %, T = 18 °C and 325 kPa are required to produce 58 t of SO3, if you calculate a volume excess for O2 of 23 %? b. Upon reaction of SO3 with water, sulphuric acid is formed. Formulate the reaction equation and calculate which volume of water you would need to convert all SO3 from a. into sulphuric acid?
Chemistry
10th Edition
ISBN:9781305957404
Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Publisher:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Chapter1: Chemical Foundations
Section: Chapter Questions
Problem 1RQ: Define and explain the differences between the following terms. a. law and theory b. theory and...
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Transcribed Image Text:a. Sulphur trioxide (SO3) is produced in an industrial scale from sulphur (S) and
oxygen (O2). For simplicity, let's assume this is a one-step reaction.
How many m³ of air with (O2) = 21 %, T = 18 °C and 325 kPa are required to
produce 58 t of SO3, if you calculate a volume excess for O2 of 23 %?
b. Upon reaction of SO3 with water, sulphuric acid is formed. Formulate the
reaction equation and calculate which volume of water you would need to
convert all SO3 from a. into sulphuric acid?
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