Optimization of Biological Sulphate Reduction to Treat Inorganic Wastewaters Process Control and Potential Use of Methane as Electron Donor PDF

Optimization of Biological Sulphate Reduction to Treat Inorganic Wastewaters Process Control and Potential Use of Methane as Electron Donor PDF

Name:
Optimization of Biological Sulphate Reduction to Treat Inorganic Wastewaters Process Control and Potential Use of Methane as Electron Donor PDF

Published Date:
09/27/2018

Status:
[ Active ]

Description:

Publisher:
CRC Press Books

Document status:
Active

Format:
Electronic (PDF)

Delivery time:
10 minutes

Delivery time (for Russian version):
200 business days

SKU:

Choose Document Language:
$57.9
Need Help?
ISBN: 9780429611681

This work investigated two different approaches to optimize biological sulphate reduction in order to develop a process control strategy to optimize the input of an electron donor and to study how to increase the feasibility of using a cheap carbon source.

Feast/famine regimes, applied to design the control strategy, were shown to induce the accumulation of storage compounds in the sulphate reducing biomass. This study showed that delays in the response time and a high control gain can be considered as the most critical factors affecting a sulphide control strategy in bioreactors. The delays are caused by the induction of different metabolic pathways in the anaerobic sludge, including the accumulation of storage products. On this basis, a mathematical model was developed and validated. This can be used to develop optimal control strategies.

In order to understand the microbial pathways in the anaerobic oxidation of methane coupled to sulphate reduction (AOM-SR), diverse potential electron donors and acceptors were added to in vitro incubations of an AOM-SR enrichment at high pressure. Acetate was formed in the control group, probably resulting from the reduction of CO2. These results support the hypothesis that acetate may serve as an intermediate in the AOM-SR process.

Author: Joana Cassidy 

 

 


Edition : 1
Number of Pages : 178
Published : 09/27/2018
isbn : 9780429611681

History


Related products


Best-Selling Products

NASA GB-8719.13
Published Date: 03/31/2004
NASA Software Safety Guidebook
$26.1
NASA GPG 5310.4
Published Date: 10/20/1999
IDENTIFICATION AND TRACEABILITY OF PRODUCTS
$3.6
NASA GPG 5900.1
Published Date: 11/02/1999
CONTROL OF CUSTOMER-SUPPLIES PRODUCT
$3.6
NASA GPG 7120.1
Published Date: 02/23/2004
PROGRAM AND PROJECT MANAGEMENT
$5.4
NASA GPG 8070.2
Published Date: 08/09/1999
IDENTIFICATION AND APPLICATION OF STATISTICAL TECHNIQUES
$3.6
NASA GPG 8700.1
Published Date: 08/09/1999
DESIGN PLANNING AND INTERFACE MANAGEMENT
$3.6