Hydrogen chloride (HCI) and oxygen gas (O2) to produce chlorine gas (Cl,) and water vapor (H,O). This reaction, called the Deacon process, typically uses air (79 mole% N, and 21 mole% 02) instead of...


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Hydrogen chloride (HCI) and oxygen gas (O2) to produce chlorine gas (Cl,) and water vapor<br>(H,O). This reaction, called the Deacon process, typically uses air (79 mole% N, and 21 mole%<br>02) instead of pure oxygen gas as a feed.<br>In a chemical plant, sufficient air is provided to reach 35% excess of O, for the process. The<br>fractional conversion of the process is found to be 85%. Use 100 mole/hr of HCl fed to the<br>process.<br>(a) Plot a diagram illustrating the process.<br>(b) Write down the balanced chemical reaction.<br>(c)Calculate the number of moles of each species in the feed stream.<br>(d)Based on the conversion provided, what is the extent of reaction? Please be specific on the units<br>and molecule chosen as the basis.<br>(e)Calculate the mole fractions of the product stream components.<br>

Extracted text: Hydrogen chloride (HCI) and oxygen gas (O2) to produce chlorine gas (Cl,) and water vapor (H,O). This reaction, called the Deacon process, typically uses air (79 mole% N, and 21 mole% 02) instead of pure oxygen gas as a feed. In a chemical plant, sufficient air is provided to reach 35% excess of O, for the process. The fractional conversion of the process is found to be 85%. Use 100 mole/hr of HCl fed to the process. (a) Plot a diagram illustrating the process. (b) Write down the balanced chemical reaction. (c)Calculate the number of moles of each species in the feed stream. (d)Based on the conversion provided, what is the extent of reaction? Please be specific on the units and molecule chosen as the basis. (e)Calculate the mole fractions of the product stream components.

Jun 07, 2022
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