Production and application of manure nitrogen and phosphorus in the United States since 1860

<p>Livestock manure nitrogen (N) and phosphorus (P) play an important role in biogeochemical cycling. Accurate estimation of manure nutrient is important for assessing regional nutrient balance, greenhouse gas emission, and water environmental risk. Currently, spatially explicit manure nutrien...

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Main Authors: Z. Bian, H. Tian, Q. Yang, R. Xu, S. Pan, B. Zhang
Format: Article
Language:English
Published: Copernicus Publications 2021-02-01
Series:Earth System Science Data
Online Access:https://essd.copernicus.org/articles/13/515/2021/essd-13-515-2021.pdf
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spelling doaj-595f520e2fe748bcb7dff3db0e993a1e2021-02-18T12:39:08ZengCopernicus PublicationsEarth System Science Data1866-35081866-35162021-02-011351552710.5194/essd-13-515-2021Production and application of manure nitrogen and phosphorus in the United States since 1860Z. Bian0H. Tian1Q. Yang2R. Xu3S. Pan4B. Zhang5International Center for Climate and Global Change Research, School of Forestry and Wildlife Sciences, Auburn University, Auburn, AL 36849, USAInternational Center for Climate and Global Change Research, School of Forestry and Wildlife Sciences, Auburn University, Auburn, AL 36849, USADepartment of Infrastructure Engineering, University of Melbourne, Parkville 3010, AustraliaInternational Center for Climate and Global Change Research, School of Forestry and Wildlife Sciences, Auburn University, Auburn, AL 36849, USAInternational Center for Climate and Global Change Research, School of Forestry and Wildlife Sciences, Auburn University, Auburn, AL 36849, USADepartment of Environment, Geology, and Natural Resources, Ball State University, Muncie, IN 47306, USA<p>Livestock manure nitrogen (N) and phosphorus (P) play an important role in biogeochemical cycling. Accurate estimation of manure nutrient is important for assessing regional nutrient balance, greenhouse gas emission, and water environmental risk. Currently, spatially explicit manure nutrient datasets over a century-long period are scarce in the United States (US). Here, we developed four datasets of annual animal manure N and P production and application in the contiguous US at a 30 arcsec resolution over the period of 1860–2017. The dataset combined multiple data sources including county-level inventory data as well as high-resolution livestock and crop maps. The total production of manure N and P increased from 1.4 Tg N yr<span class="inline-formula"><sup>−1</sup></span> and 0.3 Tg P yr<span class="inline-formula"><sup>−1</sup></span> in 1860 to 7.4 Tg N yr<span class="inline-formula"><sup>−1</sup></span> and 2.3 Tg P yr<span class="inline-formula"><sup>−1</sup></span> in 2017, respectively. The increasing manure nutrient production was associated with increased livestock numbers before the 1980s and enhanced livestock weights after the 1980s. The manure application amount was primarily dominated by production, and its spatial pattern was impacted by the nutrient demand of crops. The intense-application region mainly enlarged from the Midwest toward the southern US and became more concentrated in numerous hot spots after the 1980s. The South Atlantic–Gulf and Mid-Atlantic basins were exposed to high environmental risks due to the enrichment of manure nutrient production and application from the 1970s to the period of 2000–2017. Our long-term manure N and P datasets provide detailed information for national and regional assessments of nutrient budgets. Additionally, the datasets can serve as the input data for ecosystem and hydrological models to examine biogeochemical cycles in terrestrial and aquatic ecosystems. Datasets are available at <a href="https://doi.org/10.1594/PANGAEA.919937">https://doi.org/10.1594/PANGAEA.919937</a> (Bian et al., 2020).</p>https://essd.copernicus.org/articles/13/515/2021/essd-13-515-2021.pdf
collection DOAJ
language English
format Article
sources DOAJ
author Z. Bian
H. Tian
Q. Yang
R. Xu
S. Pan
B. Zhang
spellingShingle Z. Bian
H. Tian
Q. Yang
R. Xu
S. Pan
B. Zhang
Production and application of manure nitrogen and phosphorus in the United States since 1860
Earth System Science Data
author_facet Z. Bian
H. Tian
Q. Yang
R. Xu
S. Pan
B. Zhang
author_sort Z. Bian
title Production and application of manure nitrogen and phosphorus in the United States since 1860
title_short Production and application of manure nitrogen and phosphorus in the United States since 1860
title_full Production and application of manure nitrogen and phosphorus in the United States since 1860
title_fullStr Production and application of manure nitrogen and phosphorus in the United States since 1860
title_full_unstemmed Production and application of manure nitrogen and phosphorus in the United States since 1860
title_sort production and application of manure nitrogen and phosphorus in the united states since 1860
publisher Copernicus Publications
series Earth System Science Data
issn 1866-3508
1866-3516
publishDate 2021-02-01
description <p>Livestock manure nitrogen (N) and phosphorus (P) play an important role in biogeochemical cycling. Accurate estimation of manure nutrient is important for assessing regional nutrient balance, greenhouse gas emission, and water environmental risk. Currently, spatially explicit manure nutrient datasets over a century-long period are scarce in the United States (US). Here, we developed four datasets of annual animal manure N and P production and application in the contiguous US at a 30 arcsec resolution over the period of 1860–2017. The dataset combined multiple data sources including county-level inventory data as well as high-resolution livestock and crop maps. The total production of manure N and P increased from 1.4 Tg N yr<span class="inline-formula"><sup>−1</sup></span> and 0.3 Tg P yr<span class="inline-formula"><sup>−1</sup></span> in 1860 to 7.4 Tg N yr<span class="inline-formula"><sup>−1</sup></span> and 2.3 Tg P yr<span class="inline-formula"><sup>−1</sup></span> in 2017, respectively. The increasing manure nutrient production was associated with increased livestock numbers before the 1980s and enhanced livestock weights after the 1980s. The manure application amount was primarily dominated by production, and its spatial pattern was impacted by the nutrient demand of crops. The intense-application region mainly enlarged from the Midwest toward the southern US and became more concentrated in numerous hot spots after the 1980s. The South Atlantic–Gulf and Mid-Atlantic basins were exposed to high environmental risks due to the enrichment of manure nutrient production and application from the 1970s to the period of 2000–2017. Our long-term manure N and P datasets provide detailed information for national and regional assessments of nutrient budgets. Additionally, the datasets can serve as the input data for ecosystem and hydrological models to examine biogeochemical cycles in terrestrial and aquatic ecosystems. Datasets are available at <a href="https://doi.org/10.1594/PANGAEA.919937">https://doi.org/10.1594/PANGAEA.919937</a> (Bian et al., 2020).</p>
url https://essd.copernicus.org/articles/13/515/2021/essd-13-515-2021.pdf
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