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[长期有机改良剂对关中平原夏玉米-冬小麦种植系统一氧化氮排放的影响]

[Effect of Long-term Organic Amendments on Nitric Oxide Emissions from the Summer Maize-Winter Wheat Cropping System in Guanzhong Plain].

作者信息

Yuan Meng-Xuan, Wang Jin-Feng, Tan Yue-Hui, Wei Jing, Yang Xue-Yun, Gu Jiang-Xin

机构信息

College of Natural Resources and Environment, Northwest A & F University, Yangling 712100, China.

出版信息

Huan Jing Ke Xue. 2018 Jun 8;39(6):2819-2826. doi: 10.13227/j.hjkx.201709262.

Abstract

Agricultural soil is a significant source of nitric oxide (NO). The primary aim of this study was to quantify the effect of long-term organic amendments on NO emissions from the summer maize-winter wheat cropping system in Guanzhong Plain. NO fluxes were regularly measured by the static chamber method for one year (June 2016 to June 2017). Field experiments included four fertilizer treatments that commenced in 1990. The control (CK, 0 kg·hm) treatment was unfertilized throughout the years. The fertilized treatments were synthetic fertilizer (NPK, 165 kg·hm), synthetic fertilizer plus maize stalk (NPKS, (165+40) kg·hm), and synthetic fertilizer plus dairy manure (NPKM, (50+115) kg·hm) during the winter wheat season. They were fertilized with synthetic fertilizer (188 kg·hm) during the summer maize season. The results showed small NO emission [<12.2 g·(hm·d)] from the CK treatment within the experimental period. Large NO fluxes [up to 112.0 g·(hm·d) in NPK treatment] were captured following sowing and fertilization during the summer maize season and following fertilization during the winter wheat season for all fertilized treatments. Annual NO emissions and direct emission factors ranged from 0.13 to 0.57 kg·hm and from 0.04% to 0.12%, respectively. Annual NO emissions from the NPKS and NPKM treatments were 17.6% lower and 68.0% (<0.05) larger than those from the NPK treatment, respectively. Seasonal NO emissions from the NPKS and NPKM treatments were 41.1%-60.0% (<0.05) lower than those from the NPK treatment during the winter wheat season, indicating that organic amendments reduced NO emissions. Seasonal NO emissions from the NPKS and NPKM treatments were 25.2%-292.1% (<0.05) larger than that from the NPK treatment during the summer maize season, mostly due to the positive effect of soil organic matter content on NO emissions.

摘要

农业土壤是一氧化氮(NO)的重要来源。本研究的主要目的是量化长期有机改良剂对关中平原夏玉米-冬小麦种植系统中NO排放的影响。采用静态箱法对NO通量进行了为期一年(2016年6月至2017年6月)的定期测量。田间试验包括始于1990年的四种施肥处理。对照(CK,0 kg·hm)处理多年来均不施肥。施肥处理在冬小麦季分别为:化肥(NPK,165 kg·hm)、化肥加玉米秸秆(NPKS,(165 + 40) kg·hm)和化肥加牛粪(NPKM,(50 + 115) kg·hm)。在夏玉米季,它们均施化肥(188 kg·hm)。结果表明,试验期内CK处理的NO排放量较小[<12.2 g·(hm·d)]。所有施肥处理在夏玉米季播种和施肥后以及冬小麦季施肥后均出现了较大的NO通量[NPK处理中高达112.0 g·(hm·d)]。年NO排放量和直接排放因子分别为0.13至0.57 kg·hm和0.04%至0.12%。NPKS和NPKM处理的年NO排放量分别比NPK处理低17.6%和高68.0%(<0.05)。在冬小麦季,NPKS和NPKM处理的季节性NO排放量比NPK处理低41.1% - 60.0%(<0.05),表明有机改良剂减少了NO排放。在夏玉米季,NPKS和NPKM处理的季节性NO排放量比NPK处理高25.2% - 292.1%(<0.05),这主要归因于土壤有机质含量对NO排放的积极影响。

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