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Effects of Biochar Addition on CO2 and N2O Emissions following Fertilizer Application to a Cultivated Grassland Soil

机译:耕地土壤施肥后生物炭添加对CO2和N2O排放的影响

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摘要

Carbon (C) sequestration potential of biochar should be considered together with emission of greenhouse gases when applied to soils. In this study, we investigated CO2 and N2O emissions following the application of rice husk biochars to cultivated grassland soils and related gas emissions tos oil C and nitrogen (N) dynamics. Treatments included biochar addition (CHAR, NO CHAR) and amendment (COMPOST, UREA, NO FERT). The biochar application rate was 0.3% by weight. The temporal pattern of CO2 emissions differed according to biochar addition and amendments. CO2 emissions from the COMPOST soils were significantly higher than those from the UREA and NO FERT soils and less CO2 emission was observed when biochar and compost were applied together during the summer. Overall N2O emission was significantly influenced by the interaction between biochar and amendments. In UREA soil, biochar addition increased N2O emission by 49% compared to the control, while in the COMPOST and NO FERT soils, biochar did not have an effect on N2O emission. Two possible mechanisms were proposed to explain the higher N2O emissions upon biochar addition to UREA soil than other soils. Labile C in the biochar may have stimulated microbial N mineralization in the C-limited soil used in our study, resulting in an increase in N2O emission. Biochar may also have provided the soil with the ability to retain mineral N, leading to increased N2O emission. The overall results imply that biochar addition can increase C sequestration when applied together with compost, and might stimulate N2O emission when applied to soil amended with urea.
机译:应用于土壤时,应将生物炭的碳(C)隔离潜力与温室气体排放一起考虑。在这项研究中,我们调查了稻壳生物炭在耕种的草地土壤上的应用后的CO2和N2O排放,以及与油C和氮(N)动态相关的气体排放。处理方法包括添加生物炭(CHAR,NO CHAR)和修正剂(COMPOST,尿素,NO FERT)。生物炭施用率为0.3重量%。 CO2排放的时间模式根据生物炭添加和修正而有所不同。 COMPOST土壤的CO2排放量显着高于尿素和NO FERT土壤的CO2排放量,并且在夏季将生物炭和堆肥一起施用时,观察到的CO2排放量较少。整体N2O排放受到生物炭和修正物之间相互作用的显着影响。与对照相比,在尿素土壤中添加生物炭使N2O排放增加了49%,而在COMPOST和NO FERT土壤中,生物炭对N2O排放没有影响。提出了两种可能的机制来解释生物炭添加到尿素土壤中比其他土壤具有更高的N2O排放。生物炭中的不稳定碳可能刺激了我们研究中所用的碳限制土壤中微生物氮的矿化作用,导致N2O排放增加。生物炭还可能为土壤提供了保持矿质氮的能力,从而导致N2O排放增加。总体结果表明,与堆肥一起使用时,添加生物炭可以增加C的固存,而在施以尿素改良的土壤上使用时,可能会刺激N2O排放。

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  • 总页数 17
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