Use of Enhanced Biological Phosphorus Removal for Treating Nutrient-Deficient Wastewater

Author:   W. F. Harper ,  David Jenkins
Publisher:   IWA Publishing
Edition:   illustrated edition
ISBN:  

9781843396857


Pages:   129
Publication Date:   01 January 2004
Format:   Paperback
Availability:   Manufactured on demand   Availability explained
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Use of Enhanced Biological Phosphorus Removal for Treating Nutrient-Deficient Wastewater


Overview

Anaerobic/aerobic (AnA) and completely aerobic (CA) laboratory-scale sequencing batch reactors operating on an acetate- and casamino acids-based synthetic wastewater were used to investigate the suitability of the AnA process for treating nutrient-deficient wastewaters in plants that have stringent effluent nutrient requirements. Of particular interest is the case where phosphorus (P)-deficient wastewaters with highly variable influent COD loading are being treated to meet both effluent TSS and P limits. At a 4 d mean cell residence time, AnA activated sludge had an approx. 20 per cent lower P requirement than CA activated sludge. The difference between the end-of-aerobic cycle polyhydroxyalkanoate and carbohydrate contents of the sludges indicated that the AnAsludge used more influent carbon than the CA sludge for synthesis of non-P-containing storage products. The nitrogen requirements of AnA sludge were similar to those of the CA sludge. The AnA and CA SBRs were subjected to three different transient influent COD loading patterns that simulated (No.1) daily COD Loading fluctuations, (No.2) low weekend COD loading, and (No.3) extended low COD loading periods. During the Loading Pattern No.1 experiment, the average effluent soluble P concentrations for the AnA and CA SBRs were 0.4 and 1.0 mgP/L respectively, and complete removal of influent acetate was observed. During the Loading Pattern No.2 experiment, the average effluent soluble P concentrations for the AnA and CA SBRs were 0.3 and 0.9 mgP/L respectively, but effluent acetate was detected during the first high COD loading cycle following the low weekend COD loading period. During the Loading Pattern No.3 experiment, the VSS content of both reactors dropped sharply, effluent acetate breakthrough occurred, and effluent P concentrations exceeding 1 mgP/L were detected in both the AnA and CA SBRs.

Full Product Details

Author:   W. F. Harper ,  David Jenkins
Publisher:   IWA Publishing
Imprint:   IWA Publishing
Edition:   illustrated edition
Dimensions:   Width: 15.60cm , Height: 1.80cm , Length: 23.40cm
Weight:   0.316kg
ISBN:  

9781843396857


ISBN 10:   1843396858
Pages:   129
Publication Date:   01 January 2004
Audience:   Professional and scholarly ,  Professional & Vocational
Format:   Paperback
Publisher's Status:   Active
Availability:   Manufactured on demand   Availability explained
We will order this item for you from a manufactured on demand supplier.

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