Water Residuals to Reduce Soil Phosphorous

Water Residuals to Reduce Soil Phosphorous
Title Water Residuals to Reduce Soil Phosphorous PDF eBook
Author James DeWolfe
Publisher American Water Works Association
Total Pages 120
Release 2006
Genre Agricultural pollution
ISBN 9781583214275

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A report on the collaborative project of three water utilities (Pennsylvania American Water Company , Tulsa Metropolitan Utility Authority, and Denver Water) looking at managing water treatment residuals (WTRs) generated by drinking water treatment facilities. The goal is to exploit the unique characteristics of WTR for beneficial use, specifically to improve phosphorus management of agricultural lands by controlling the release of phosphorus.

Water Residuals to Reduce Soil Phosphorus

Water Residuals to Reduce Soil Phosphorus
Title Water Residuals to Reduce Soil Phosphorus PDF eBook
Author J. DeWolfe
Publisher IWA Publishing
Total Pages 0
Release 2006-06-30
Genre Science
ISBN 9781843399520

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Phosphorus in surface runoff from agricultural lands is often implicated in the degradation of surface water quality. Many states are developing soil phosphorus application limits. Utilities must develop and implement new best management practices (BMPs) to control phosphorous. The objective of this project was to investigate the beneficial use of water treatment residuals (WTRs) to control non-point source (NPS) phosphorus pollution and protect surface water quality. Specifically, the researchers planned to examine the unique chemical characteristics of WTRs, namely the large concentration of aluminum and iron hyrdroxides, to combine them with phosphorus in high phosphorus soils, biosolids, and manures to reduce the likelihood of phosphorus release to aquatic environments. Several types of WTRs were selected and characterized based on the coagulant used (aluminum and iron based) and their form - dewatered or liquid. The research developed valuable new insight for the beneficial use of WTRs and demonstrated WTRs' potential as a BMP for phosphorus control in surface runoff from agricultural lands and for protecting surface water quality. In particular, the potential role of WTRs in Phosphorous Index programs was confirmed. Future research and full-scale demonstrations are needed to confirm the potential of land applied WTRs as a BMP for phosphorus control in runoff from agricultural lands. Land application of WTRs within a utility?s source water watershed, while subject to local and state regulations, can be implemented as part of an overall watershed protection program.

Water Treatment Residuals Effects on Phosphorus in Soils Amended with Dairy Manure

Water Treatment Residuals Effects on Phosphorus in Soils Amended with Dairy Manure
Title Water Treatment Residuals Effects on Phosphorus in Soils Amended with Dairy Manure PDF eBook
Author Collin Thomas Lane
Publisher
Total Pages 142
Release 2002
Genre Cattle
ISBN

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Aluminum Water Treatment Residuals for Reducing Phosphorus Loss from Manure-impacted, High-watertable Soils

Aluminum Water Treatment Residuals for Reducing Phosphorus Loss from Manure-impacted, High-watertable Soils
Title Aluminum Water Treatment Residuals for Reducing Phosphorus Loss from Manure-impacted, High-watertable Soils PDF eBook
Author Thomas J. Rew
Publisher
Total Pages
Release 2006
Genre
ISBN

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Incorporation of Al-WTR to a depth of 10 cm decreased SP concentrations in subsurface flow and leachate by 37 and 11%, respectively. However, with incorporation of Al-WTR to a depth of 20 cm, both subsurface flow and leachate SP concentrations were reduced by approximately 90%. The incorporated Al-WTR reduced soil water-extractable P (WEP) by approximately 70%. However, Mehlich-1 P concentrations were not affected by the incorporation of Al-WTR in the soil. Care must be taken to ensure complete incorporation of Al-WTR throughout the P-impacted layer, as Al-WTR is only effective in reducing SP concentrations when it is in contact with the impacted soil. Shoot and root growth of stargrass were not adversely affected by the Al-WTR applied at a rate of 2.5% of soil weight.

Water Residuals and Biosolids

Water Residuals and Biosolids
Title Water Residuals and Biosolids PDF eBook
Author Jim Ippolito
Publisher American Water Works Association
Total Pages 72
Release 2006
Genre Phosphorus
ISBN 1583214852

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This research report presents the results of a study to determine both the longlasting effects of a single WTR-biosolids co-application (applied in 1991) and the short-term impacts of a repeated WTR-biosolids co-application (applied in 2002) on native rangeland soil phosphorus dynamics. This report covers from the time of application (1991 or 2002) along with changes between sampling periods, with field soil sampling occurring in October 2003 and October 2004. Specifically looked at were quantify changes in inorganic soil P associated with a single or repeated WTR-biosolids co-application and identify which inorganic P phase dominates using a sequential extraction technique along with same for organic soil P.

Phosphorus Dynamics in Soil Co-applied with Biosolids and Water Treatment Residuals

Phosphorus Dynamics in Soil Co-applied with Biosolids and Water Treatment Residuals
Title Phosphorus Dynamics in Soil Co-applied with Biosolids and Water Treatment Residuals PDF eBook
Author Robin Marie Bayley
Publisher
Total Pages 180
Release 2006
Genre Land treatment of wastewater
ISBN

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Evaluation of Water Treatment Residuals Application to Excessively Manured, High Soil-test Phosphorus (STP) Soils

Evaluation of Water Treatment Residuals Application to Excessively Manured, High Soil-test Phosphorus (STP) Soils
Title Evaluation of Water Treatment Residuals Application to Excessively Manured, High Soil-test Phosphorus (STP) Soils PDF eBook
Author Teuku Alvisyahrin
Publisher
Total Pages 492
Release 2004
Genre Soils
ISBN

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