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Extraction of Acidic Gases in Industries

Sandeep Jadhav

Abstract


We are going to introduce a very crucial idea that is still under-development, in a very innovative. Extraction of harmful gases in manufacturing industries. Having a manufacturing industry's background, we always thoughts about how we can reduce the pollution from industry. As lots of harmful gases are produced in manufacturing industries. We found that we can reduce the pollution in industries. Hydrogen sulphide (H2S), carbonyl sulphide (COS), and carbon dioxide are the most common acid gases produced during gasification (CO2). To meet environmental emissions laws or to preserve downstream catalysts for chemical processing applications, syngas departing particle removal and gas conditioning systems must be cleaned of sulfur-bearing acid gases, which are typically near ambient temperature at 100°F. From that day we started thinking about how we can execute the same, how effective gas extraction & vacuum creation is possible in our project. This lead to the development of this project, which we can apply even practically. Now we can control the emission of harmful gases with help of vacuum creation setup, hence our project is very useful to reduce the atmospheric pollution

Keywords


Acidic gas extraction, Bernoulli principle, Nozzle suction, Vaccum suction, Atmospheric pollution.

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References


Ben. D. Holt *, Neil C. Sturchio, Greg B. Arehart, Allen J. Bakel (1995) Ultrasonic vacuum

extraction of gases from water for chemical and isotopic analysis, Chemical Geology (Isotope

Geoscience Section). 1995. 122. Pp 275–284.

Jocelyn Jalbert and Roland Gilbert (1994) Comparison between headspace and vacuum gas

extraction techniques for the gas chromatographic determination of dissolved gases from

transformer insulating oils. IEEE International Symposium on Electrical Insulation, Pittsburgh,

PA USA, 1994. June 5–8.

Bernoulli’s Principle–"Physics for Scientists and Engineers, Fourth Edition, Vol. 1, Raymond A.

Serway, Saunders College Publishing. 1996. 422, Pp.434.

Elisa Barea, Carmen Montoro and Jorge A.R. Navarro (2014) Toxic gas removal–metal–organic

frameworks for the capture and degradation of toxic gases and vapours: Chem. Soc. Rev., 2014,

, 5419.

Yuriy Ivanov, Oleksandr Pyatnichko, Hennadiy Zhuk*, Liliya Onopa, Mekhrzad Soltanibereshne

(2017). Extraction of carbon dioxide from gas mixtures with amines absorbing process. Energy

Procedia 128 (2017). Pp 240–247.

Colonno, M.R., Van der Weide, Alonso J.J. (2008) The Optimum Vacuum Nozzle: an MDO

Approach, AIAA 2008. Pp 911.

P.M. Stevenson, “Hydrodynamics of the Vacuum”. 2012. International Journal of Modern Physics

A 21 (13n14).

Mikhailov, G.K. “Daniel Bernoulli, Hydrodynamica (1738)”. 2005. Pp. 131–142.

Fang Liu. "Review on Ejector Efficiencies in Various Ejector Systems". International

Refrigeration and Air Conditioning Conference. 2014. Paper 1533

Bate JG, “The cleaning of ward floors and the bacteriological study of floor-cleaning machines

Journal of Clinical Pathology” 1961; 14. Pp 32–37.


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