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You searched for subject:(Breakthrough experiment). Showing records 1 – 4 of 4 total matches.

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University of Alberta

1. Kim, Ji hong. Adsorptive separations on titanosilicate by breakthrough analysis.

Degree: MS, Department of Chemical and Materials Engineering, 2013, University of Alberta

 Titanosilicate has unique properties in adsorptive separations such as air separations. In this study, Ag-ETS-10 was investigated for argon free oxygen production. During laboratory scale… (more)

Subjects/Keywords: Mass transfer coefficient; Nitrogen; Breakthrough experiment; Titanosilicate; Pure Oxygen; Breakthrough simulation; Argon Free; Ag-ETS-10; Adsorptive separations

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APA (6th Edition):

Kim, J. h. (2013). Adsorptive separations on titanosilicate by breakthrough analysis. (Masters Thesis). University of Alberta. Retrieved from https://era.library.ualberta.ca/files/9g54xj02v

Chicago Manual of Style (16th Edition):

Kim, Ji hong. “Adsorptive separations on titanosilicate by breakthrough analysis.” 2013. Masters Thesis, University of Alberta. Accessed July 17, 2019. https://era.library.ualberta.ca/files/9g54xj02v.

MLA Handbook (7th Edition):

Kim, Ji hong. “Adsorptive separations on titanosilicate by breakthrough analysis.” 2013. Web. 17 Jul 2019.

Vancouver:

Kim Jh. Adsorptive separations on titanosilicate by breakthrough analysis. [Internet] [Masters thesis]. University of Alberta; 2013. [cited 2019 Jul 17]. Available from: https://era.library.ualberta.ca/files/9g54xj02v.

Council of Science Editors:

Kim Jh. Adsorptive separations on titanosilicate by breakthrough analysis. [Masters Thesis]. University of Alberta; 2013. Available from: https://era.library.ualberta.ca/files/9g54xj02v

2. Sobotková Martina. Vliv uzavřeného vzduchu na transport látek v půdě .

Degree: 2013, Czech University of Technology

 Hlavním cílem disertační práce bylo vyhodnotit vliv uzavřeného vzduchu na transport rozpuštěných látek v proměnlivě nasyceném pórovitém prostředí. Infiltračně-výtokové a průnikové experimenty byly provedeny na… (more)

Subjects/Keywords: uzavřený vzduch; vadózní zóna; hydraulické a transportní charakteristiky; průnikové čáry; konzervativní transport; online elektrochemická analýza; iontově selektivní elektroda; infiltračně-výtokový experiment entrapped air; vadose zone; hydraulic and transport characteristics; breakthrough curve; conservative transport; online electrochemical analysis; ion selective electrode; infiltration-outflow experiment

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APA (6th Edition):

Martina, S. (2013). Vliv uzavřeného vzduchu na transport látek v půdě . (Thesis). Czech University of Technology. Retrieved from http://hdl.handle.net/10467/19981

Note: this citation may be lacking information needed for this citation format:
Not specified: Masters Thesis or Doctoral Dissertation

Chicago Manual of Style (16th Edition):

Martina, Sobotková. “Vliv uzavřeného vzduchu na transport látek v půdě .” 2013. Thesis, Czech University of Technology. Accessed July 17, 2019. http://hdl.handle.net/10467/19981.

Note: this citation may be lacking information needed for this citation format:
Not specified: Masters Thesis or Doctoral Dissertation

MLA Handbook (7th Edition):

Martina, Sobotková. “Vliv uzavřeného vzduchu na transport látek v půdě .” 2013. Web. 17 Jul 2019.

Vancouver:

Martina S. Vliv uzavřeného vzduchu na transport látek v půdě . [Internet] [Thesis]. Czech University of Technology; 2013. [cited 2019 Jul 17]. Available from: http://hdl.handle.net/10467/19981.

Note: this citation may be lacking information needed for this citation format:
Not specified: Masters Thesis or Doctoral Dissertation

Council of Science Editors:

Martina S. Vliv uzavřeného vzduchu na transport látek v půdě . [Thesis]. Czech University of Technology; 2013. Available from: http://hdl.handle.net/10467/19981

Note: this citation may be lacking information needed for this citation format:
Not specified: Masters Thesis or Doctoral Dissertation


Colorado School of Mines

3. Stumb, Morgan Elizabeth. Examination of solute transport in highly heterogeneous media at the Macrodispersion Experiment (MADE) Site, Columbus, MS.

Degree: MS(M.S.), Geology and Geological Engineering, 2007, Colorado School of Mines

 The Macrodispersion Experiment (MADE) Site in Columbus, MS was developed to examine the reliability and predictive power of macrodispersion transport theories, used to describe the… (more)

Subjects/Keywords: solute; modeling; breakthrough curve; Macrodispersion Experiment Site; heterogeneous; Groundwater flow; Transport theory; Zone of aeration; Groundwater tracers

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APA (6th Edition):

Stumb, M. E. (2007). Examination of solute transport in highly heterogeneous media at the Macrodispersion Experiment (MADE) Site, Columbus, MS. (Masters Thesis). Colorado School of Mines. Retrieved from http://hdl.handle.net/11124/79464

Chicago Manual of Style (16th Edition):

Stumb, Morgan Elizabeth. “Examination of solute transport in highly heterogeneous media at the Macrodispersion Experiment (MADE) Site, Columbus, MS.” 2007. Masters Thesis, Colorado School of Mines. Accessed July 17, 2019. http://hdl.handle.net/11124/79464.

MLA Handbook (7th Edition):

Stumb, Morgan Elizabeth. “Examination of solute transport in highly heterogeneous media at the Macrodispersion Experiment (MADE) Site, Columbus, MS.” 2007. Web. 17 Jul 2019.

Vancouver:

Stumb ME. Examination of solute transport in highly heterogeneous media at the Macrodispersion Experiment (MADE) Site, Columbus, MS. [Internet] [Masters thesis]. Colorado School of Mines; 2007. [cited 2019 Jul 17]. Available from: http://hdl.handle.net/11124/79464.

Council of Science Editors:

Stumb ME. Examination of solute transport in highly heterogeneous media at the Macrodispersion Experiment (MADE) Site, Columbus, MS. [Masters Thesis]. Colorado School of Mines; 2007. Available from: http://hdl.handle.net/11124/79464

4. Van Osnabrugge, B. Silica Particles with Encapsulated DNA and Magnetite as Hydrological Tracer: Magnetic Concentration and Proof-of-Concept:.

Degree: 2015, Delft University of Technology

 DNA has a number of characteristics which make it very promising as a hydrological tracer. It is detectable in extremely low quantities and can provide… (more)

Subjects/Keywords: Hydrology; DNA; Tracer; Tracers; Breakthrough Curve; Ground column; injection experiment; novel; qPCR; magnetic concentration; magnetic separation; Frantz L1-CN

…23 3.3.1 3.3.2 Sewer injection experiment… …24 3.3.3 4 Ground column experiment… …29 4.2.1 Results ground column experiment… …29 4.2.2 Results sewer injection experiment… …31 4.2.3 Results of brook injection experiment… 

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APA · Chicago · MLA · Vancouver · CSE | Export to Zotero / EndNote / Reference Manager

APA (6th Edition):

Van Osnabrugge, B. (2015). Silica Particles with Encapsulated DNA and Magnetite as Hydrological Tracer: Magnetic Concentration and Proof-of-Concept:. (Masters Thesis). Delft University of Technology. Retrieved from http://resolver.tudelft.nl/uuid:e63fc4af-c4ce-4c49-aa58-2531c55357d8

Chicago Manual of Style (16th Edition):

Van Osnabrugge, B. “Silica Particles with Encapsulated DNA and Magnetite as Hydrological Tracer: Magnetic Concentration and Proof-of-Concept:.” 2015. Masters Thesis, Delft University of Technology. Accessed July 17, 2019. http://resolver.tudelft.nl/uuid:e63fc4af-c4ce-4c49-aa58-2531c55357d8.

MLA Handbook (7th Edition):

Van Osnabrugge, B. “Silica Particles with Encapsulated DNA and Magnetite as Hydrological Tracer: Magnetic Concentration and Proof-of-Concept:.” 2015. Web. 17 Jul 2019.

Vancouver:

Van Osnabrugge B. Silica Particles with Encapsulated DNA and Magnetite as Hydrological Tracer: Magnetic Concentration and Proof-of-Concept:. [Internet] [Masters thesis]. Delft University of Technology; 2015. [cited 2019 Jul 17]. Available from: http://resolver.tudelft.nl/uuid:e63fc4af-c4ce-4c49-aa58-2531c55357d8.

Council of Science Editors:

Van Osnabrugge B. Silica Particles with Encapsulated DNA and Magnetite as Hydrological Tracer: Magnetic Concentration and Proof-of-Concept:. [Masters Thesis]. Delft University of Technology; 2015. Available from: http://resolver.tudelft.nl/uuid:e63fc4af-c4ce-4c49-aa58-2531c55357d8

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