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  • Language: English

    Published by Iwa Pub, 2004

    1843397145 / 9781843397144

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  • Language: English

    Published by IWA Publishing, London, 2004

    1843397145 / 9781843397144

    • Softcover

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    Paperback. Condition: new. Paperback. Biological wastewater treatment plants can be adversely affected by influent toxicity. The effects can range from poor clarifier biomass settling and elevated effluent BOD and ammonia levels to total plant kills. These problems could be minimized or eliminated if an effective method existed for continuously monitoring biological wastewater treatment plant influent for toxicity to the treatment plant microorganisms. Current influent screening methods have not been proven to be adequate for adaptation to continuous screening in the field. The primary reasons include the batch-wise nature of the assays and an inadequate correlation between the assays and plant performance. The goal of the research team was to create new bioluminescent biosensors from different types of bacteria found in biological wastewater treatment plants for the development of a multi-channel continuous monitoring system. A system built from multiple biosensors would make it possible to differentiate between potential influent toxicity effects to different classes of bacteria (such as nitrifying and heterotrophic bacteria). Biological wastewater treatment plants can be adversely affected by influent toxicity. The effects can range from poor clarifier biomass settling and elevated effluent BOD and ammonia levels to total plant kills. The goal of a research team was to create bioluminescent biosensors from the bacteria, found in biological wastewater treatment plants. Shipping may be from multiple locations in the US or from the UK, depending on stock availability.

  • Language: English

    Published by IWA Publishing, 2004

    1843397145 / 9781843397144

    • Softcover

    Seller: PBShop.store US, Wood Dale, IL, U.S.A.PBShop.store US

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    PAP. Condition: New. New Book. Shipped from UK. Established seller since 2000.

  • Language: English

    Published by IWA Publishing, 2004

    1843397145 / 9781843397144

    • Softcover

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  • Language: English

    Published by WERF, 2004

    1843397145 / 9781843397144

    • Softcover

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  • Language: English

    Published by Iwa Pub, 2004

    1843397145 / 9781843397144

    • Softcover

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  • Language: English

    Published by Iwa Pub, 2004

    1843397145 / 9781843397144

    • Softcover

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  • Language: English

    Published by IWA Publishing, 2004

    1843397145 / 9781843397144

    • Softcover

    Seller: Majestic Books, Hounslow, United KingdomMajestic Books

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    Condition: New. pp. 80 Illus.

  • Language: English

    Published by IWA Publishing, 2004

    1843397145 / 9781843397144

    • Softcover

    Seller: Books Puddle, New York, NY, U.S.A.Books Puddle

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    Condition: New. pp. 80.

  • Language: English

    Published by Iwa Pub, 2004

    1843397145 / 9781843397144

    • Softcover

    Seller: Ria Christie Collections, Uxbridge, United KingdomRia Christie Collections

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  • Language: English

    Published by Iwa Pub, 2004

    1843397145 / 9781843397144

    • Softcover

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  • Language: English

    Published by Iwa Pub, 2004

    1843397145 / 9781843397144

    • Softcover

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  • Language: English

    Published by IWA Publishing, GB, 2004

    1843397145 / 9781843397144

    • Softcover

    Seller: Rarewaves USA, HEBRON, KY, U.S.A.Rarewaves USA

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    Paperback. Condition: New. Biological wastewater treatment plants can be adversely affected by influent toxicity.  The effects can range from poor clarifier biomass settling and elevated effluent BOD and ammonia levels to total plant kills.  These problems could be minimized or eliminated if an effective method existed for continuously monitoring biological wastewater treatment plant influent for toxicity to the treatment plant microorganisms.    Current influent screening methods have not been proven to be adequate for adaptation to continuous screening in the field.  The primary reasons include the batch-wise nature of the assays and an inadequate correlation between the assays and plant performance.  The goal of the research team was to create new bioluminescent biosensors from different types of bacteria found in biological wastewater treatment plants for the development of a multi-channel continuous monitoring system.  A system built from multiple biosensors would make it possible to differentiate between potential influent toxicity effects to different classes of bacteria (such as nitrifying and heterotrophic bacteria).   The research team found it unexpectedly challenging to apply common microbiological transformation methods for laboratory strains to the wastewater treatment plant strains. The research team generated six new bioluminescent bioreporters from bacteria that are typical constituents of activated sludge.  Of particular significance is a bioreporter developed using a Hyphomicrobium sp., which is a slow growing bacterium known to be present in significant numbers in some activated sludge plants. Of the six generated, initial bioluminescence and toxicity screening indicated that one strain (a Pseudomonad) was a particularly promising candidate due to its ease of cultivation and high light production.  Further toxicity testing, however, determined that the response of the strain to 48 organic compounds and 8 metals commonly found in wastewater was similar to that of a previously created strain, Shk1 (also a Pseudomonad).  Further work is therefore needed in the generation of appropriate biosensors and test conditions for populations not represented by the new heterotrophic biosensor.

  • Language: English

    Published by IWA Publishing, GB, 2004

    1843397145 / 9781843397144

    • Softcover

    Seller: Rarewaves.com USA, London, LONDO, United KingdomRarewaves.com USA

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    Paperback. Condition: New. Biological wastewater treatment plants can be adversely affected by influent toxicity.  The effects can range from poor clarifier biomass settling and elevated effluent BOD and ammonia levels to total plant kills.  These problems could be minimized or eliminated if an effective method existed for continuously monitoring biological wastewater treatment plant influent for toxicity to the treatment plant microorganisms.    Current influent screening methods have not been proven to be adequate for adaptation to continuous screening in the field.  The primary reasons include the batch-wise nature of the assays and an inadequate correlation between the assays and plant performance.  The goal of the research team was to create new bioluminescent biosensors from different types of bacteria found in biological wastewater treatment plants for the development of a multi-channel continuous monitoring system.  A system built from multiple biosensors would make it possible to differentiate between potential influent toxicity effects to different classes of bacteria (such as nitrifying and heterotrophic bacteria).   The research team found it unexpectedly challenging to apply common microbiological transformation methods for laboratory strains to the wastewater treatment plant strains. The research team generated six new bioluminescent bioreporters from bacteria that are typical constituents of activated sludge.  Of particular significance is a bioreporter developed using a Hyphomicrobium sp., which is a slow growing bacterium known to be present in significant numbers in some activated sludge plants. Of the six generated, initial bioluminescence and toxicity screening indicated that one strain (a Pseudomonad) was a particularly promising candidate due to its ease of cultivation and high light production.  Further toxicity testing, however, determined that the response of the strain to 48 organic compounds and 8 metals commonly found in wastewater was similar to that of a previously created strain, Shk1 (also a Pseudomonad).  Further work is therefore needed in the generation of appropriate biosensors and test conditions for populations not represented by the new heterotrophic biosensor.

  • Language: English

    Published by IWA Publishing, 2004

    1843397145 / 9781843397144

    • Softcover

    Seller: THE SAINT BOOKSTORE, Southport, United KingdomTHE SAINT BOOKSTORE

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    Paperback / softback. Condition: New. New copy - Usually dispatched within 3 working days.

  • Language: English

    Published by Intl Water Assn, 2004

    1843397145 / 9781843397144

    • Softcover

    Seller: Revaluation Books, Exeter, United KingdomRevaluation Books

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    Paperback. Condition: Brand New. illustrated edition. 80 pages. 10.75x8.00x0.25 inches. In Stock.

  • Language: English

    Published by IWA Publishing, 2004

    1843397145 / 9781843397144

    • Softcover

    Seller: Kennys Bookshop and Art Galleries Ltd., Galway, GY, IrelandKennys Bookshop and Art Galleries Ltd.

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    Condition: New. 2004. paperback. . . . . .

  • Language: English

    Published by IWA Publishing, 2004

    1843397145 / 9781843397144

    • Softcover

    Seller: Biblios, frankfurt am main, HESSE, GermanyBiblios

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    Condition: New. pp. 80.

  • Language: English

    Published by WERF, 2004

    1843397145 / 9781843397144

    • Softcover

    Seller: moluna, Greven, Germanymoluna

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    Condition: New. KlappentextrnrnBiological wastewater treatment plants can be adversely affected by influent toxicity. The effects can range from poor clarifier biomass settling and elevated effluent BOD and ammonia levels to total plant kills. These problems .

  • Language: English

    Published by IWA Publishing, 2004

    1843397145 / 9781843397144

    • Softcover

    Seller: Kennys Bookstore, Olney, MD, U.S.A.Kennys Bookstore

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    Condition: New. 2004. paperback. . . . . . Books ship from the US and Ireland.

  • Language: English

    Published by IWA Publishing, GB, 2004

    1843397145 / 9781843397144

    • Softcover

    Seller: Rarewaves USA United, HEBRON, KY, U.S.A.Rarewaves USA United

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    Paperback. Condition: New. Biological wastewater treatment plants can be adversely affected by influent toxicity.  The effects can range from poor clarifier biomass settling and elevated effluent BOD and ammonia levels to total plant kills.  These problems could be minimized or eliminated if an effective method existed for continuously monitoring biological wastewater treatment plant influent for toxicity to the treatment plant microorganisms.    Current influent screening methods have not been proven to be adequate for adaptation to continuous screening in the field.  The primary reasons include the batch-wise nature of the assays and an inadequate correlation between the assays and plant performance.  The goal of the research team was to create new bioluminescent biosensors from different types of bacteria found in biological wastewater treatment plants for the development of a multi-channel continuous monitoring system.  A system built from multiple biosensors would make it possible to differentiate between potential influent toxicity effects to different classes of bacteria (such as nitrifying and heterotrophic bacteria).   The research team found it unexpectedly challenging to apply common microbiological transformation methods for laboratory strains to the wastewater treatment plant strains. The research team generated six new bioluminescent bioreporters from bacteria that are typical constituents of activated sludge.  Of particular significance is a bioreporter developed using a Hyphomicrobium sp., which is a slow growing bacterium known to be present in significant numbers in some activated sludge plants. Of the six generated, initial bioluminescence and toxicity screening indicated that one strain (a Pseudomonad) was a particularly promising candidate due to its ease of cultivation and high light production.  Further toxicity testing, however, determined that the response of the strain to 48 organic compounds and 8 metals commonly found in wastewater was similar to that of a previously created strain, Shk1 (also a Pseudomonad).  Further work is therefore needed in the generation of appropriate biosensors and test conditions for populations not represented by the new heterotrophic biosensor.

  • Language: English

    Published by Werf, 2004

    1843397145 / 9781843397144

    • Softcover

    Seller: preigu, Osnabrück, Germanypreigu

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    Taschenbuch. Condition: Neu. Sensor Technology for Water Quality Monitoring | Bioluminescent Microorganisms | Paul Frymier (u. a.) | Taschenbuch | Werf Report | Kartoniert / Broschiert | Englisch | 2004 | Werf | EAN 9781843397144 | Verantwortliche Person für die EU: preigu GmbH & Co. KG, Lengericher Landstr. 19, 49078 Osnabrück, mail[at]preigu[dot]de | Anbieter: preigu.

  • Language: English

    Published by IWA Publishing Jan 2004, 2004

    1843397145 / 9781843397144

    • Softcover

    Seller: AHA-BUCH GmbH, Einbeck, GermanyAHA-BUCH GmbH

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    Taschenbuch. Condition: Neu. Neuware - Biological wastewater treatment plants can be adversely affected by influent toxicity. The effects can range from poor clarifier biomass settling and elevated effluent BOD and ammonia levels to total plant kills. These problems could be minimized or eliminated if an effective method existed for continuously monitoring biological wastewater treatment plant influent for toxicity to the treatment plant microorganisms. Current influent screening methods have not been proven to be adequate for adaptation to continuous screening in the field. The primary reasons include the batch-wise nature of the assays and an inadequate correlation between the assays and plant performance. The goal of the research team was to create new bioluminescent biosensors from different types of bacteria found in biological wastewater treatment plants for the development of a multi-channel continuous monitoring system. A system built from multiple biosensors would make it possible to differentiate between potential influent toxicity effects to different classes of bacteria (such as nitrifying and heterotrophic bacteria).

  • Language: English

    Published by IWA Publishing, GB, 2004

    1843397145 / 9781843397144

    • Softcover

    Seller: Rarewaves.com UK, London, United KingdomRarewaves.com UK

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    Paperback. Condition: New. Biological wastewater treatment plants can be adversely affected by influent toxicity.  The effects can range from poor clarifier biomass settling and elevated effluent BOD and ammonia levels to total plant kills.  These problems could be minimized or eliminated if an effective method existed for continuously monitoring biological wastewater treatment plant influent for toxicity to the treatment plant microorganisms.    Current influent screening methods have not been proven to be adequate for adaptation to continuous screening in the field.  The primary reasons include the batch-wise nature of the assays and an inadequate correlation between the assays and plant performance.  The goal of the research team was to create new bioluminescent biosensors from different types of bacteria found in biological wastewater treatment plants for the development of a multi-channel continuous monitoring system.  A system built from multiple biosensors would make it possible to differentiate between potential influent toxicity effects to different classes of bacteria (such as nitrifying and heterotrophic bacteria).   The research team found it unexpectedly challenging to apply common microbiological transformation methods for laboratory strains to the wastewater treatment plant strains. The research team generated six new bioluminescent bioreporters from bacteria that are typical constituents of activated sludge.  Of particular significance is a bioreporter developed using a Hyphomicrobium sp., which is a slow growing bacterium known to be present in significant numbers in some activated sludge plants. Of the six generated, initial bioluminescence and toxicity screening indicated that one strain (a Pseudomonad) was a particularly promising candidate due to its ease of cultivation and high light production.  Further toxicity testing, however, determined that the response of the strain to 48 organic compounds and 8 metals commonly found in wastewater was similar to that of a previously created strain, Shk1 (also a Pseudomonad).  Further work is therefore needed in the generation of appropriate biosensors and test conditions for populations not represented by the new heterotrophic biosensor.

  • Language: English

    Published by IWA Publishing, London, 2004

    1843397145 / 9781843397144

    • Softcover

    Seller: AussieBookSeller, Truganina, VIC, AustraliaAussieBookSeller

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    Paperback. Condition: new. Paperback. Biological wastewater treatment plants can be adversely affected by influent toxicity. The effects can range from poor clarifier biomass settling and elevated effluent BOD and ammonia levels to total plant kills. These problems could be minimized or eliminated if an effective method existed for continuously monitoring biological wastewater treatment plant influent for toxicity to the treatment plant microorganisms. Current influent screening methods have not been proven to be adequate for adaptation to continuous screening in the field. The primary reasons include the batch-wise nature of the assays and an inadequate correlation between the assays and plant performance. The goal of the research team was to create new bioluminescent biosensors from different types of bacteria found in biological wastewater treatment plants for the development of a multi-channel continuous monitoring system. A system built from multiple biosensors would make it possible to differentiate between potential influent toxicity effects to different classes of bacteria (such as nitrifying and heterotrophic bacteria). Biological wastewater treatment plants can be adversely affected by influent toxicity. The effects can range from poor clarifier biomass settling and elevated effluent BOD and ammonia levels to total plant kills. The goal of a research team was to create bioluminescent biosensors from the bacteria, found in biological wastewater treatment plants. Shipping may be from our Sydney, NSW warehouse or from our UK or US warehouse, depending on stock availability.