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首页> 外文期刊>Ecological indicators >Impact of nitrogen fertilizer, greenhouse, and crop species on yield-scaled nitrous oxide emission from vegetable crops: A meta-analysis
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Impact of nitrogen fertilizer, greenhouse, and crop species on yield-scaled nitrous oxide emission from vegetable crops: A meta-analysis

机译:氮肥,温室和农作物物种对蔬菜作物产量产生的一氧化二氮排放的影响:荟萃分析

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Vegetable production is recognized as an important anthropogenic source of nitrous oxide (N2O) emission. An improved understanding of yield-scaled N2O emission from vegetable production can promote innovation for climate smart cropping. In this study, we performed a meta-analysis to quantify yield-scaled N2O emission from six types of vegetable crops, to elucidate the effects of greenhouse cultivation and different types of nitrogen (N) fertilizers on yield-scaled N2O emission from vegetable crops. Significant differences were observed in N2O emission factor (EF) and area- and yield-scaled N2O emissions among the six vegetable types. Stem and seed vegetables showed the lowest and highest area- and yield-scaled N2O emissions, respectively. The average yield of all of the vegetables was significantly higher in greenhouses than in open fields. However, only leafy vegetables were observed to have significantly lower yield-scaled N2O in greenhouses than in open fields. Emissions of yield-scaled N2O in response to inorganic N application rate differed among the different vegetable types. The replacement of inorganic N fertilizer with manure significantly reduced yield-scaled N2O emission from leafy vegetables, but significantly enhanced that from fruit vegetables. Enhanced-efficiency N fertilizer (EENF) significantly increased yield, and significantly reduced area- and yield-scaled N2O emissions from all of the vegetable types; however, it was less effective for root vegetables and open field cultivation.
机译:蔬菜生产被认为是一氧化二氮(N2O)排放的重要人为来源。对蔬菜生产中按比例缩放的N2O排放量的更好理解可以促进气候智能种植的创新。在这项研究中,我们进行了荟萃分析,量化了六种蔬菜作物的产量定额N2O排放,以阐明温室栽培和不同类型的氮肥对蔬菜作物的产量定额N2O排放的影响。在六种蔬菜中,N2O排放因子(EF)以及按面积和产量定标的N2O排放量均存在显着差异。茎类和种子蔬菜分别显示出最低和最高的面积和产量比例的N2O排放量。大棚中所有蔬菜的平均产量都比露天田高得多。但是,在温室中仅观察到叶菜类蔬菜的N2O比例要比露天田低得多。在不同的蔬菜类型中,响应无机氮施用量的产量级N2O排放不同。用肥料代替无机氮肥可显着降低叶菜类蔬菜的产量N2O排放水平,但显着增强果蔬的排放量。增效氮肥(EENF)显着提高了所有蔬菜的产量,并显着减少了面积和产量规模的N2O排放;但是,它对根菜类蔬菜和野外耕作效果不佳。

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