Ultrasonicated Membrane Anaerobic System (Umas) for Pome Treatment (Paperback)

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The direct discharge of palm oil mill effluent (POME) wastewater causes serious environmental pollution due to its high chemical oxygen demand (COD) and biochemical oxygen demand (BOD). Traditional ways for POME treatment have both economical and environmental disadvantages.In this book, ultrasonic assisted-membrane anaerobic system(UMAS)was used as an alternative, cost effective method for treating POME. Six steady states were attained as a part of a kinetic study that considered concentration ranges of 8,220 to 15,400 mg/l for mixed liquor suspended solids (MLSS) and 6,329 to 13,244 mg/l for mixed liquor volatile suspended solids (MLVSS). Kinetic equations from Monod, Contois and Chen & Hashimoto were employed to describe the kinetics of POME treatment at organic loading rates ranging from 2 to 13 kg COD/m3/d.throughout the experiment, the removal efficiency of COD was from 94.8 to 96.5% with hydraulic retention time, HRT from 400.6 to 5.7 days.The growth yield coefficient, Y was found to be 0.62gVSS/g COD the specific microorganism decay rate was 0.21d-1 and the methane gas yield production rate was between 0.25 l/g COD/d and 0.58 l/g C

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Product Description

The direct discharge of palm oil mill effluent (POME) wastewater causes serious environmental pollution due to its high chemical oxygen demand (COD) and biochemical oxygen demand (BOD). Traditional ways for POME treatment have both economical and environmental disadvantages.In this book, ultrasonic assisted-membrane anaerobic system(UMAS)was used as an alternative, cost effective method for treating POME. Six steady states were attained as a part of a kinetic study that considered concentration ranges of 8,220 to 15,400 mg/l for mixed liquor suspended solids (MLSS) and 6,329 to 13,244 mg/l for mixed liquor volatile suspended solids (MLVSS). Kinetic equations from Monod, Contois and Chen & Hashimoto were employed to describe the kinetics of POME treatment at organic loading rates ranging from 2 to 13 kg COD/m3/d.throughout the experiment, the removal efficiency of COD was from 94.8 to 96.5% with hydraulic retention time, HRT from 400.6 to 5.7 days.The growth yield coefficient, Y was found to be 0.62gVSS/g COD the specific microorganism decay rate was 0.21d-1 and the methane gas yield production rate was between 0.25 l/g COD/d and 0.58 l/g C

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Product Details

General

Imprint

Lap Lambert Academic Publishing

Country of origin

Germany

Release date

September 2011

Availability

Supplier out of stock. If you add this item to your wish list we will let you know when it becomes available.

First published

September 2011

Authors

, ,

Dimensions

229 x 152 x 8mm (L x W x T)

Format

Paperback - Trade

Pages

136

ISBN-13

978-3-8465-1562-4

Barcode

9783846515624

Categories

LSN

3-8465-1562-0



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