Development of a Multi-Stage External Loop Airlift Reactor (Paperback)

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A novel multi-stage external loop airlift reactor (MS-ELALR) has been designed to remove phenol and Cr(VI) from wastewater by means of their adsorption onto the surface of activated carbons. The multi-staging has been achieved by hydrodynamically induced continuous bubble generation, breakup and regeneration. The typical values of gas holdup, liquid circulation velocity, interfacial area and volumetric mass transfer coefficient of the MS-ELALR were found to be 0.42-0.66, 0.04-0.13 m/s, 70-300 m2/m3 and 0.01-0.5 s-1 respectively. Powdered activated carbons were prepared from four different biomasses by chemical activation and were used to remove Cr(VI) and phenol from wastewater in this MS-ELALR. The results obtained were encouraging and confirmed that both Cr(VI) and phenol can be effectively removed using the method of liquid-phase adsorption in the MS-ELALR.

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Product Description

A novel multi-stage external loop airlift reactor (MS-ELALR) has been designed to remove phenol and Cr(VI) from wastewater by means of their adsorption onto the surface of activated carbons. The multi-staging has been achieved by hydrodynamically induced continuous bubble generation, breakup and regeneration. The typical values of gas holdup, liquid circulation velocity, interfacial area and volumetric mass transfer coefficient of the MS-ELALR were found to be 0.42-0.66, 0.04-0.13 m/s, 70-300 m2/m3 and 0.01-0.5 s-1 respectively. Powdered activated carbons were prepared from four different biomasses by chemical activation and were used to remove Cr(VI) and phenol from wastewater in this MS-ELALR. The results obtained were encouraging and confirmed that both Cr(VI) and phenol can be effectively removed using the method of liquid-phase adsorption in the MS-ELALR.

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Product Details

General

Imprint

VDM Verlag

Country of origin

Germany

Release date

October 2010

Availability

Expected to ship within 10 - 15 working days

First published

October 2010

Authors

, ,

Dimensions

229 x 152 x 14mm (L x W x T)

Format

Paperback - Trade

Pages

244

ISBN-13

978-3-639-29875-8

Barcode

9783639298758

Categories

LSN

3-639-29875-6



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