Impact of Land-Applied Biosolids on Forage Quality And Water Movement During Rangeland Restoration Activities

The land application of biosolids to provide nutrients and organic matter is widely practiced in agricultural applications. However, the potential benefit of applying biosolids to disturbed rangelands has not been adequately evaluated. Thus the main goal of the current study was to evaluate the pote...

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Main Author: Vasquez, Issaak R
Format: Others
Published: DigitalCommons@USU 2008
Subjects:
Online Access:https://digitalcommons.usu.edu/etd/89
https://digitalcommons.usu.edu/cgi/viewcontent.cgi?article=1097&context=etd
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spelling ndltd-UTAHS-oai-digitalcommons.usu.edu-etd-10972019-10-13T05:36:01Z Impact of Land-Applied Biosolids on Forage Quality And Water Movement During Rangeland Restoration Activities Vasquez, Issaak R The land application of biosolids to provide nutrients and organic matter is widely practiced in agricultural applications. However, the potential benefit of applying biosolids to disturbed rangelands has not been adequately evaluated. Thus the main goal of the current study was to evaluate the potential economic and environmental benefits of applying biosolids to disturbed rangeland with the main focus on evaluating the impact on forage quality and quantity as a function of biosolids type and application rate. Three types of biosolids (aerobically, anaerobically, and lime stabilized biosolids) were surface applied with no subsequent tilling at various loading rates (1, 5, 10, and 20 times nitrogen plant requirement) in Skull Valley, Utah. It was demonstrated that forage quality (crude protein and in vitro digestibility) and quantity (biomass) can be improved by biosolids land application. Also, the analyses of the soil and forage for 16 specific metals indicated no measurable accumulation except for a statistical increase of sodium compared with the control. No negative impact on soil moisture infiltration (e.g., drainage) properties were seen. The economic analysis of biosolids land application on disturbed rangeland associated with improvements in forage quality indicated that use of biosolids for land restoration would be profitable. The highest potential financial return was observed when anaerobically digested biosolids were land applied at 20 times the agronomic rate. Finally, despite the numerous benefits associated with biosolids land application, there remain a number of human health and environmental concerns regarding its use on publicly accessible lands that should be addressed in future studies. These concerns are primarily associated with the accumulation of heavy metals and recalcitrant organics (e.g. polychlorinated biphenyls, dioxins, brominated biphenyls, and pharmaceuticals and personal care products) that may be associated with the biosolids. 2008-05-01T07:00:00Z text application/pdf https://digitalcommons.usu.edu/etd/89 https://digitalcommons.usu.edu/cgi/viewcontent.cgi?article=1097&context=etd Copyright for this work is held by the author. Transmission or reproduction of materials protected by copyright beyond that allowed by fair use requires the written permission of the copyright owners. Works not in the public domain cannot be commercially exploited without permission of the copyright owner. Responsibility for any use rests exclusively with the user. For more information contact Andrew Wesolek (andrew.wesolek@usu.edu). All Graduate Theses and Dissertations DigitalCommons@USU Environmental Sciences
collection NDLTD
format Others
sources NDLTD
topic Environmental Sciences
spellingShingle Environmental Sciences
Vasquez, Issaak R
Impact of Land-Applied Biosolids on Forage Quality And Water Movement During Rangeland Restoration Activities
description The land application of biosolids to provide nutrients and organic matter is widely practiced in agricultural applications. However, the potential benefit of applying biosolids to disturbed rangelands has not been adequately evaluated. Thus the main goal of the current study was to evaluate the potential economic and environmental benefits of applying biosolids to disturbed rangeland with the main focus on evaluating the impact on forage quality and quantity as a function of biosolids type and application rate. Three types of biosolids (aerobically, anaerobically, and lime stabilized biosolids) were surface applied with no subsequent tilling at various loading rates (1, 5, 10, and 20 times nitrogen plant requirement) in Skull Valley, Utah. It was demonstrated that forage quality (crude protein and in vitro digestibility) and quantity (biomass) can be improved by biosolids land application. Also, the analyses of the soil and forage for 16 specific metals indicated no measurable accumulation except for a statistical increase of sodium compared with the control. No negative impact on soil moisture infiltration (e.g., drainage) properties were seen. The economic analysis of biosolids land application on disturbed rangeland associated with improvements in forage quality indicated that use of biosolids for land restoration would be profitable. The highest potential financial return was observed when anaerobically digested biosolids were land applied at 20 times the agronomic rate. Finally, despite the numerous benefits associated with biosolids land application, there remain a number of human health and environmental concerns regarding its use on publicly accessible lands that should be addressed in future studies. These concerns are primarily associated with the accumulation of heavy metals and recalcitrant organics (e.g. polychlorinated biphenyls, dioxins, brominated biphenyls, and pharmaceuticals and personal care products) that may be associated with the biosolids.
author Vasquez, Issaak R
author_facet Vasquez, Issaak R
author_sort Vasquez, Issaak R
title Impact of Land-Applied Biosolids on Forage Quality And Water Movement During Rangeland Restoration Activities
title_short Impact of Land-Applied Biosolids on Forage Quality And Water Movement During Rangeland Restoration Activities
title_full Impact of Land-Applied Biosolids on Forage Quality And Water Movement During Rangeland Restoration Activities
title_fullStr Impact of Land-Applied Biosolids on Forage Quality And Water Movement During Rangeland Restoration Activities
title_full_unstemmed Impact of Land-Applied Biosolids on Forage Quality And Water Movement During Rangeland Restoration Activities
title_sort impact of land-applied biosolids on forage quality and water movement during rangeland restoration activities
publisher DigitalCommons@USU
publishDate 2008
url https://digitalcommons.usu.edu/etd/89
https://digitalcommons.usu.edu/cgi/viewcontent.cgi?article=1097&context=etd
work_keys_str_mv AT vasquezissaakr impactoflandappliedbiosolidsonforagequalityandwatermovementduringrangelandrestorationactivities
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