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Optically controlled millimetre-wave switch with stepped-impedance lines

DOI:10.1049/iet-map.2018.6191 期刊:IET Microwaves, Antennas & Propagation 出版年份:2019 更新时间:2025-09-23 15:19:57
摘要: Nitrogen (N) placement can impact nitrogen use efficiency, but its effect on greenhouse gas (GHG) emissions remain unclear. The objective of this study is to compare the effects of four different N horizontal placement methods (i.e., annular canal (An), radial canal (Ra), band (Ba), and nest fertilization (Ne)) with urea broadcast (Br) on nitrous oxide (N2O), methane (CH4), and soil heterotrophic respiration carbon dioxide (CO2) emissions from an apple orchard to assess the seasonal and spatial variations in these gas emissions. The total cumulative GHG emissions are determined through spots that are differentiated as fertilized or unfertilized. A field simulation study is conducted in an apple orchard, and all N sources have an application rate of 300 kg N ha?1. from the Br treatment are significantly lower than those of other treatments, and the emissions from the Ne treatment are 1.7-fold higher than those of the Br treatment. Surprisingly, the cumulative N2O emissions from the Br treatment are significantly higher than those of the other four treatments. N horizontal placement does not significantly influence the soil CH4 sink. The CO2 emissions in the Br treatment are higher than in other treatments. High N2O emissions in the Br treatment result in a significantly higher GHG exchange than in other treatments, while the Ne treatment significantly reduces the GHG exchange throughout the measurement period. Therefore, optimizing N placement may serve as an effective way to reduce GHG emissions from arable soils.
作者: Man Zhang,Shengli Guo,Bo Li
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To compare the effects of four different N horizontal placement methods with urea broadcast on nitrous oxide (N2O), methane (CH4), and soil heterotrophic respiration carbon dioxide (CO2) emissions from an apple orchard to assess the seasonal and spatial variations in these gas emissions.

The total cumulative N2O emissions were significantly lower for the An, Ra, Ba, and Ne treatments than for the Br treatment. N horizontal placement did not significantly change the soil CH4 sink. The CO2 emissions in the Br treatment were higher than those of other treatments. The study also showed that the nest placement treatment in silty clay loam soil resulted in lower GHG emissions and GHG exchange. The method of N nest application is recommended for apple orchard fields in temperate semi-arid croplands.

The study was conducted over a short period (from 16 July 2016 to 2 September 2016), and the differences between treatments may have been larger if the field test had lasted for a longer period. Additionally, the study focused on a specific type of soil (silty clay loam) and a specific cropping system (apple orchard), which may limit the generalizability of the findings to other soil types and cropping systems.

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