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Water and Wastewater Practitioner Ser.: Membrane Bioreactors for Municipal Waste
US $84.00
大約HK$ 654.37
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所在地:Niagara Falls, New York, 美國
送達日期:
估計於 9月25日, 三至 9月27日, 五之間送達 運送地點 43230
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- Subject Area
- Technology & Engineering, Science
- Custom Bundle
- No
- Personalized
- No
- Features
- Illustrated
- Level
- Advanced
- Subject
- Environmental Science (See Also Chemistry / Environmental), Environmental / Waste Management, Applied Sciences, Environmental / General, General
- ISBN
- 9781843390114
- Publication Name
- Membrane Bioreactors for Municipal Wastewater Treatment
- Publisher
- Iwa Publishing
- Item Length
- 9.2 in
- Publication Year
- 2002
- Series
- Water and Wastewater Practitioner Ser.
- Type
- Textbook
- Format
- Trade Paperback
- Language
- English
- Item Height
- 0.7 in
- Item Width
- 6.1 in
- Number of Pages
- 156 Pages
關於產品
Product Identifiers
Publisher
Iwa Publishing
ISBN-10
1843390116
ISBN-13
9781843390114
eBay Product ID (ePID)
63740236
Product Key Features
Number of Pages
156 Pages
Language
English
Publication Name
Membrane Bioreactors for Municipal Wastewater Treatment
Subject
Environmental Science (See Also Chemistry / Environmental), Environmental / Waste Management, Applied Sciences, Environmental / General, General
Publication Year
2002
Type
Textbook
Subject Area
Technology & Engineering, Science
Series
Water and Wastewater Practitioner Ser.
Format
Trade Paperback
Dimensions
Item Height
0.7 in
Item Length
9.2 in
Item Width
6.1 in
Additional Product Features
Intended Audience
College Audience
Dewey Edition
21
Dewey Decimal
628.3/5
Synopsis
Recent technical innovations and significant cost reductions have sharply increased the potential for using Membrane Bioreactor (MBR) technology in municipal wastewater treatment. MBR technology displays several advantages compared to the traditional activated sludge processes, such as high effluent quality, limited space requirement and with the possibility of a flexible and phased extension of existing waste water treatment plants. Membrane Bioreactors for Municipal Wastewater Treatment describes the results of a comparative research programme involving four leading membrane suppliers: Kubota (Japan), Mitsubishi (Japan), X-Flow (Netherlands) and Zenon (Canada). Each supplier provided a pilot to represent a suitable scale - right up to full scale. These pilots were operated and optimised in the course of the research programme to achieve the best operating window under different operating regimes. The research focussed on the functionality of the membrane, the biological treatment, membrane fouling, achieved effluent quality, and system operability as well as other factors. In a number of side studies the required pre-treatment, membrane fouling/cleaning, energy usage, effluent quality and sludge processing were also addressed. The comparative pilot research was carried out by DHV Water on location at the wastewater treatment plant at Beverwijk in the Netherlands., Recent technical innovations and significant cost reductions have sharply increased the potential for using Membrane Bioreactor (MBR) technology in municipal wastewater treatment. MBR technology displays several advantages compared to the traditional activated sludge processes, such as high effluent quality, limited space requirement and with the possibility of a flexible and phased extension of existing waste water treatment plants. Membrane Bioreactors for Municipal Wastewater Treatment describes the results of a comparative research programme involving four leading membrane suppliers: Kubota (Japan), Mitsubishi (Japan), X-Flow (Netherlands) and Zenon (Canada). Each supplier provided a pilot to represent a suitable scale - right up to full scale. These pilots were operated and optimised in the course of the research programme to achieve the best operating window under different operating regimes. The research focussed on the functionality of the membrane, the biological treatment, membrane fouling, achieved effluent quality, and system operability as well as other factors. In a number of side studies the required pre-treatment, membrane fouling/cleaning, energy usage, effluent quality and sludge processing were also addressed. The comparative pilot research was carried out by DHV Water on location at the wastewater treatment plant at Beverwijk in the Netherlands. STOWA Report
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