Literature DB >> 26437088

Methane and Nitrous Oxide Emissions from Flooded Rice Systems following the End-of-Season Drain.

Maria Arlene Adviento-Borbe, Gay Necita Padilla, Cameron M Pittelkow, Maegen Simmonds, Chris van Kessel, Bruce Linquist.   

Abstract

Large CH and NO fluxes can occur from flooded rice ( L.) systems following end-of-season drainage, which contribute significantly to the total growing-season greenhouse gas (GHG) emissions. Field and laboratory studies were conducted to determine under what soil water conditions these emissions occur. In three field studies, GHG fluxes and dissolved CH in the soil pore water were measured before and after drainage. Across all fields, approximately 10% of the total seasonal CH emissions and 27% of the total seasonal NO emissions occurred following the final drain, confirming the importance of quantifying postdrainage CH and NO emissions. Preplant fertilizer N had no effect on CH emissions or dissolved CH; however, increased postdrainage NO fluxes were observed at higher N rates. To determine when postdrainage sampling needs to take place, our laboratory incubation study measured CH and NO fluxes from intact soil cores from these fields as the soil dried. Across fields, maximum CH emissions occurred at approximately 88% water-filled pore space (WFPS), but emissions were observed between 47 and 156% WFPS. In contrast, maximum NO emissions occurred between 45 and 71% WFPS and were observed between 16 and 109% WFPS. For all fields, gas samplings between 76 and 100% WFPS for CH emissions and between 43 and 78% WFPS for NO emissions was necessary to capture 95% of these postdrainage emissions. We recommend that frequent gas sampling following drainage be included in the GHG protocol of total GHG emissions.
Copyright © by the American Society of Agronomy, Crop Science Society of America, and Soil Science Society of America, Inc.

Entities:  

Year:  2015        PMID: 26437088     DOI: 10.2134/jeq2014.11.0497

Source DB:  PubMed          Journal:  J Environ Qual        ISSN: 0047-2425            Impact factor:   2.751


  1 in total

1.  High nitrous oxide fluxes from rice indicate the need to manage water for both long- and short-term climate impacts.

Authors:  Kritee Kritee; Drishya Nair; Daniel Zavala-Araiza; Jeremy Proville; Joseph Rudek; Tapan K Adhya; Terrance Loecke; Tashina Esteves; Shalini Balireddygari; Obulapathi Dava; Karthik Ram; Abhilash S R; Murugan Madasamy; Ramakrishna V Dokka; Daniel Anandaraj; D Athiyaman; Malla Reddy; Richie Ahuja; Steven P Hamburg
Journal:  Proc Natl Acad Sci U S A       Date:  2018-09-10       Impact factor: 11.205

  1 in total

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