Efflux of Soil Nitrous Oxide from Applied Fertilizer Containing Organic Materials in Citrus unshiu Field in Southwestern Japan

Nitrous oxide (N2O) emissions from agricultural fields are an important source of the increasing atmospheric N2O concentration. We conducted a two-year investigation of soil N2O emissions induced by the application of combined organic and synthetic fertilizer (COS) and distilled silage waste (DSW)....

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Main Authors: Yo Toma, Takeshi Higuchi, Osamu Nagata, Yasuhiko Kato, Tooru Izumiya, Shingo Oomori, Hideto Ueno
Format: Article
Language:English
Published: MDPI AG 2017-02-01
Series:Agriculture
Subjects:
Online Access:http://www.mdpi.com/2077-0472/7/2/10
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spelling doaj-bd5e9635529849ef9a466bede83eada12021-04-02T07:53:25ZengMDPI AGAgriculture2077-04722017-02-01721010.3390/agriculture7020010agriculture7020010Efflux of Soil Nitrous Oxide from Applied Fertilizer Containing Organic Materials in Citrus unshiu Field in Southwestern JapanYo Toma0Takeshi Higuchi1Osamu Nagata2Yasuhiko Kato3Tooru Izumiya4Shingo Oomori5Hideto Ueno6Graduate School of Agriculture, Ehime University, 3-5-7, Tarumi, Matsuyama, Ehime 790-8566, JapanGraduate School of Agriculture, Ehime University, 3-5-7, Tarumi, Matsuyama, Ehime 790-8566, JapanAgriculture, Forestry and Fisheries Research Council, Ministry of Agriculture, Forestry and Fisheries, JAPAN, 1-2-1, Kasumigaseki, Chiyoda-ku, Tokyo 100-8950, JapanNippon Steel & Sumikin Engineering, 1-5-1, Oosaki, Shinagawa, Tokyo 141-8604, JapanNippon Steel & Sumikin Engineering, 1-5-1, Oosaki, Shinagawa, Tokyo 141-8604, JapanGraduate School of Agriculture, Ehime University, 3-5-7, Tarumi, Matsuyama, Ehime 790-8566, JapanGraduate School of Agriculture, Ehime University, 3-5-7, Tarumi, Matsuyama, Ehime 790-8566, JapanNitrous oxide (N2O) emissions from agricultural fields are an important source of the increasing atmospheric N2O concentration. We conducted a two-year investigation of soil N2O emissions induced by the application of combined organic and synthetic fertilizer (COS) and distilled silage waste (DSW). Three experimental treatments were applied to a Citrus unshiu field in January 2013 in Ehime, Japan: no fertilizer (NF), COS, and DSW. The applied nitrogen (N) from DSW was 192 and 244 kg N ha−1 in the first and second years, respectively, although the N application in COS was 192 kg N ha−1 in both years. The main N forms in COS and DSW were ammonium- and nitrate-N, respectively. Soil N2O and carbon dioxide fluxes, soil chemical properties, and mineral N leaching from topsoil were measured. The soil N2O flux increased after fertilization in COS and DSW, and a higher N2O efflux after supplemental fertilization was induced by warm and wet soil conditions. The emission factor of N2O was higher in COS (2.02%) than in DSW (1.18%), while N leaching was higher in DSW than in COS. The organic materials remaining after the application possibly increased the N2O emissions in the summer season. Therefore, to mitigate N2O emissions in citrus orchards, fertilizer containing organic materials should be applied during a cool and dry season.http://www.mdpi.com/2077-0472/7/2/10emission factorcitrus orchardcombined organic and synthetic fertilizerdistilled silage waste
collection DOAJ
language English
format Article
sources DOAJ
author Yo Toma
Takeshi Higuchi
Osamu Nagata
Yasuhiko Kato
Tooru Izumiya
Shingo Oomori
Hideto Ueno
spellingShingle Yo Toma
Takeshi Higuchi
Osamu Nagata
Yasuhiko Kato
Tooru Izumiya
Shingo Oomori
Hideto Ueno
Efflux of Soil Nitrous Oxide from Applied Fertilizer Containing Organic Materials in Citrus unshiu Field in Southwestern Japan
Agriculture
emission factor
citrus orchard
combined organic and synthetic fertilizer
distilled silage waste
author_facet Yo Toma
Takeshi Higuchi
Osamu Nagata
Yasuhiko Kato
Tooru Izumiya
Shingo Oomori
Hideto Ueno
author_sort Yo Toma
title Efflux of Soil Nitrous Oxide from Applied Fertilizer Containing Organic Materials in Citrus unshiu Field in Southwestern Japan
title_short Efflux of Soil Nitrous Oxide from Applied Fertilizer Containing Organic Materials in Citrus unshiu Field in Southwestern Japan
title_full Efflux of Soil Nitrous Oxide from Applied Fertilizer Containing Organic Materials in Citrus unshiu Field in Southwestern Japan
title_fullStr Efflux of Soil Nitrous Oxide from Applied Fertilizer Containing Organic Materials in Citrus unshiu Field in Southwestern Japan
title_full_unstemmed Efflux of Soil Nitrous Oxide from Applied Fertilizer Containing Organic Materials in Citrus unshiu Field in Southwestern Japan
title_sort efflux of soil nitrous oxide from applied fertilizer containing organic materials in citrus unshiu field in southwestern japan
publisher MDPI AG
series Agriculture
issn 2077-0472
publishDate 2017-02-01
description Nitrous oxide (N2O) emissions from agricultural fields are an important source of the increasing atmospheric N2O concentration. We conducted a two-year investigation of soil N2O emissions induced by the application of combined organic and synthetic fertilizer (COS) and distilled silage waste (DSW). Three experimental treatments were applied to a Citrus unshiu field in January 2013 in Ehime, Japan: no fertilizer (NF), COS, and DSW. The applied nitrogen (N) from DSW was 192 and 244 kg N ha−1 in the first and second years, respectively, although the N application in COS was 192 kg N ha−1 in both years. The main N forms in COS and DSW were ammonium- and nitrate-N, respectively. Soil N2O and carbon dioxide fluxes, soil chemical properties, and mineral N leaching from topsoil were measured. The soil N2O flux increased after fertilization in COS and DSW, and a higher N2O efflux after supplemental fertilization was induced by warm and wet soil conditions. The emission factor of N2O was higher in COS (2.02%) than in DSW (1.18%), while N leaching was higher in DSW than in COS. The organic materials remaining after the application possibly increased the N2O emissions in the summer season. Therefore, to mitigate N2O emissions in citrus orchards, fertilizer containing organic materials should be applied during a cool and dry season.
topic emission factor
citrus orchard
combined organic and synthetic fertilizer
distilled silage waste
url http://www.mdpi.com/2077-0472/7/2/10
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