TUTDoR

Aoyi, Ochieng.

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Date: 2016/02/16
Language: en
Type: Text
Identifier: tut:5046
Description: Anaerobic digestion (AD) is efficient in organic load removal and bioenergy recovery when applied in treating distillery effluent; however, it is ineffective in colour reduction. In contrast, ultravio ... More
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Date: 2014/12/29
Language: en
Type: Text
Identifier: tut:5043
Description: Magnetic natural zeolite-polypyrrole (MZ-PPy) composite was prepared for enhanced removal of hexavalent chromium [Cr(VI)] from aqueous solution. The structure and morphology of the prepared adsorbent ... More
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Date: 2011/12/05
Language: en
Type: Text
Identifier: tut:5044
Description: Novel nanostructured hydrotalcite (HT) adsorption medium was prepared and its ability to remove Pb(II) from aqueous solution was demonstrated. The media was characterized using Fourier transform infra ... More
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Date: 2010/08/16
Language: en
Type: Text
Identifier: tut:5045
Description: Advance wastewater-treatment techniques such as adsorption are essential in the removal of non- biodegradable toxic wastes from water. In this study, the use of South African coal fly ash, an industri ... More
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Date: 2010/04/ 18
Language: en
Type: Text
Identifier: tut:4074
Description: The present work was aimed at developing a cost effective, efficient and user friendly adsorption media for nitrate removal from water, surfactant modified clinoptilolite was evaluated as a potential ... More
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Date: 2010
Subject: Draft tube | CFD
Language: en
Type: Text
Identifier: tut:3708
Description: Hydrodynamics and mixing efficiency in stirred tanks influence power draw and are therefore important for the design of many industrial processes. In the pre-sent study, both experimental and simulati ... More
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Date: 2010
Subject: Adsorption | Isotherms
Language: en
Type: Text
Identifier: tut:3709
Description: Batch adsorption of recalcitrant melanoidin using the abundantly available coal fly ash was carried out. It had low specific surface area (SBET) of 1.7287 m²/g and pore volume of 0.002245 cm³/g while ... More
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