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Soil nitrous oxide emissions under dryland N-fertilised canola and N2-fixing chickpea in the northern grains region, Australia

机译:澳大利亚北部谷物区旱地施肥水族溶液下的土壤二氮氧化物排放和N2固定鹰嘴豆

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Nitrous oxide (N_2O) emissions from cropping soils contribute to increasing atmospheric N_2O. Planning to reduce emissions requires real-world measurements. Crop production systems that partially rely on nitrogen (N) fixed by legumes may emit less N_2O than systems that are totally dependent on fertiliser N inputs. We measured N_2O emissions from a dryland vertosol in northwest NSW, Australia during the growth of N-fertilised canola (Brassica napus) and N2-fixing chickpea (Cicer arietinum). At sowing, canola received 80 kg N/ha as urea, and chickpea was inoculated with effective rhizobia. Emissions of N_2O were monitored seven times per day using an automated system of chambers connected to a gas chromatograph. Daily N_2O emissions ranged from -1.7to 39.6 g N_2O-N/ha/day in canola plots and -1.6 to 12.5 g N_2O-N/ha/day for chickpea. During crop growth, the N-fertilised canola plots emitted a total of 293 g N_2O-N/ha, equivalent to 0.37% of the urea N applied. Chickpea plots emitted 29 g N_2O-N/ha.The canola plots emitted a further 241 g N_2O-N/ha in the first months of the post-crop fallow, mostly during a short period of high rainfall, compared with 58 g N_2O-N/ha for chickpea. We hypothesise that the canola residue may have mineralised N earlier than chickpeas.
机译:来自种植土壤的氧化氮(N_2O)排放有助于增加大气N_2O。计划减少排放需要现实世界测量。部分依赖于豆类固定的氮气(n)的作物生产系统可能比完全依赖于肥料N输入的系统发出更少的N_2O。我们在澳大利亚NSW南威尔士州西北北面南威尔士州南威尔士州南威尔士州(Brassica Napus)和N2固定鹰嘴豆(Cicer Arietinum)的生长期间测量了来自南威尔士州西式南威尔士州西式南威尔士州的旱地紫水醇的排放量。在播种时,CanoLA作为尿素接受了80公斤,并且用有效的根瘤菌接种了鹰嘴豆。使用连接到气相色谱仪的腔室的自动化系统,每天监测N_2O的排放七次。每日N_2O排放量从CANOLA图中的-1.7至39.6g N_2O-N / HA /天/天/鹰嘴豆植物的日/天/天/天。在作物生长期间,N-施肥的油菜图共产生293g N_2O-N / HA,其相当于施用的尿素N的0.37%。鹰嘴豆图发出29 g n_2o-n / ha。油菜地块在作物后休耕的第一个月内排放了另外241克N_2O-n / ha,主要是在短时间内的高降雨期间,与58克N_2O-相比鹰嘴豆的n / ha。我们假设油菜残留物可能比鹰嘴豆早发的矿化。

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