Absorption /Technical Report/ Turning date: 01 family 2011 skirt of Contents 1. Introduction3 2. observational frame-up and influence3 2.1. experimental Setup3 2.2. Procedure3 3. Results3 3.1. Experimental data3 3.2. Calculation equations3 3.3. Results and discussion3 4. windup9 5. Literature references9 6. Appendix9 1. Introduction 2. Experimental Setup and procedure 2.1. Experimental Setup 2.2. Procedure 3. Results 3.1. Experimental data collar different beats are taken by ever-changing the volume flow of wash agent. Here body of water is the slipstream agent fed from top in to the absorption column. MA is the value of the concentration of the acetone vapour at the outlet. It is deliberate with the help of a Flame Ionisation Detector (FDI). plug-in 1  | 1st step| 2nd measurement| 3rd measurement| Units| MA| 1100| 320| 140|  ppm| pinit| 0.2| 0.2| 0.2| mbar| vair| 8| 8| 8| m/s| Dpipe| 7| 7| 7| cm| Vwater| 0.0498| 0.4644| 0. 717| m³/h| Twater,out| 18| 16| 15| °C| Tair,out| 21| 18| 16| °C| ?p| 0.61| 0.79| -| mbar| Maceton| 3.1759| 2.5602| 2.0664| kg/h| global measurement for the experiment Table 2 General data| | airwave velocity at the inletTemperature of acetoneTemperature of airDiameter of air inletAmbient pressureDiameter of the columnColumn areaMolar bundle up acetoneMolar weight airMolar weight water| 8 m/s57 °C20 °C0,07 m101325 Pa0,2 m0,157 m²0,058 kg/mol0,029 kg/mol0,018 kg/mol| 3.2. Calculation equations It is false that the molar push-down stack of the pure air and water clay the same in the inlet and in outlet.
NG, airin=NG, airout ! (Equation 1) NL,waterin=NL,waterout (Equation 2) The molar flows of acetone, water and air...If you want to call for a full essay, order it on our website: OrderEssay.net
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