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Contrasting effects of biochar on N_2O emission and N uptake at different N fertilizer levels on a temperate sandy loam

机译:温带沙质壤土上生物炭对不同氮肥水平下N_2O排放和吸收氮的对比作用

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摘要

Biochar has been frequently suggested as an amendment to improve soil quality and mitigate climate change. To investigate the optimal management of nitrogen (N) fertilization, we examined the combined effect of biochar and N fertilizer on plant N uptake and N_2O emissions in a cereal rotation system in a randomized two-factorial field experiment on a sandy loam soil in Brandenburg, Germany. The biochar treatment received 10 Mg ha~(-1) wood-derived biochar in September 2012. Four levels of N fertilizer, corresponding to 0.50%, 100%, 130% of the recommended fertilizer level, were applied in winter wheat (Triticum aestiwm L.)) and winter rye (Secale cereal L.) in 2013 and 2014 followed by the catch crop oil radish (Raphanus sativus L. van oleiformis). Biomass and N uptake of winter wheat and winter rye were significantly affected by the level of N fertilizer but not by biochar. For N uptake of oil radish an interaction effect was observed for biochar and N fertilizer. Without applied fertilizer, 39% higher N uptake was found in the presence of biochar, accompanied by higher soil NH_4~+ content and elevated cumulative CO_2 emissions. At 130% of the recommended fertilizer level, 16% lower N uptake and lower cumulative N_2O emissions were found in the biochar-mediated treatment No significant change in abundance of microbial groups and nosZ gene were observed. Our results highlight that biochar can have a greenhouse gas mitigation effect at high levels of N supply and may stimulate nutrient uptake when no N is supplied.
机译:人们经常建议使用生物炭作为改善土壤质量和缓解气候变化的修正。为了研究氮肥的最佳管理方式,我们在勃兰登堡州的一个沙质壤土土壤两轮随机田间试验中,研究了生物炭和氮肥对谷物轮作系统中植物氮吸收和N_2O排放的综合影响,德国。 2012年9月,生物炭处理获得了10 Mg ha〜(-1)木材衍生的生物炭。冬小麦(Triticum aestiwm)施用了4种水平的氮肥,分别对应于推荐的肥料水平的0.50%,100%,130%。 L.))和2013年和2014年的冬黑麦(Secale谷物L.),然后是农作物油萝卜(Raphanus sativus L. van oleiformis)。冬小麦和黑麦的生物量和氮吸收量受氮肥水平的显着影响,但不受生物炭的影响。对于油萝卜的氮吸收,观察到生物炭和氮肥的相互作用。如果不施用化肥,则在存在生物炭的情况下,氮吸收量增加了39%,同时土壤NH_4〜+含量更高,累积的CO_2排放量也增加。在建议的肥料水平的130%时,在生物炭介导的处理中发现氮吸收降低了16%,累积N_2O排放降低了,未观察到微生物群体和nosZ基因丰度的显着变化。我们的结果表明,在高氮供应水平下,生物炭具有缓解温室气体的作用,并且在不供应氮的情况下可能刺激养分吸收。

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  • 来源
    《The Science of the Total Environment》 |2017年第1期|557-565|共9页
  • 作者单位

    Leibniz-Institute for Agricultural Engineering and Bioeconomy, Potsdam, Germany ,College of Environment and Resources, Anhui Agricultural Univeristy, Hefei, China;

    Leibniz-Institute for Agricultural Engineering and Bioeconomy, Potsdam, Germany;

    Leibniz Centre for Agricultural Landscape Research (ZALF), Institute of Landscape Biogeochemistry, Muencheberg, Germany;

    Leibniz Centre for Agricultural Landscape Research (ZALF), Institute of Landscape Biogeochemistry, Muencheberg, Germany;

    Leibniz Centre for Agricultural Landscape Research (ZALF), Institute of Landscape Biogeochemistry, Muencheberg, Germany;

    Technical University of Berlin, Department of Soil Science, Berlin, Cermany;

    Leibniz-Institute for Agricultural Engineering and Bioeconomy, Potsdam, Germany;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Microbial community; Greenhouse gas emissions; nosZ gene;

    机译:微生物群落;温室气体排放;nosZ基因;

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