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Effects of straw and biochar addition on soil nitrogen, carbon, and super rice yield in coId waterlogged paddy soils of North China

机译:秸秆和生物炭添加对华北淹水稻田土壤氮,碳和超级稻产量的影响

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摘要

The additions of straw and biochar have been suggested to increase soil fertility, carbon sequestration, and crop produc-tivity of agricultural lands. To our knowledge, there is little information on the effects of straw and biochar addition on soil nitrogen form, carbon storage, and super rice yield in cold waterlogged paddy soils. We performed field trials with four treatments including conventional fertilization system (CK), straw amendment 6 t ha–1 (S), biochar amendment 2 t ha–1 (C1), and biochar amendment 40 t ha–1 (C2). The super japonica rice variety, Shennong 265, was selected as the test crop. The results showed that the straw and biochar amendments improved total nitrogen and organic carbon content of the soil, reduced N2O emissions, and had little influence on nitrogen retention, nitrogen density, and CO2 emissions. The S and C1lincreased NH4+-N content, and C2 increased NO3–-N content. Both S and C1 had little influence on soil organic carbon density (SOCD) and C/N ratio. However, C2 greatly increased SOCD and C/N ratio. C1 and C2 significantly improved the soil carbon sequestration (SCS) by 62.9 and 214.0% (P<0.05), respectively, while S had no influence on SCS. C1 and C2 maintained the stability of super rice yield, and significantly reduced CH4 emissions, global warming potential (GWP), and greenhouse gas intensity (GHGI), whereas S had the opposite and negative effects. In summary, the biochar amendments in cold waterlogged paddy soils of North China increased soil nitrogen and carbon content, improved soil carbon seques-tration, and reduced GHG emission without affecting the yield of super rice.
机译:已建议添加秸秆和生物炭可增加土壤肥力,固碳和增加农地的农作物生产力。据我们所知,在冷涝的稻田中,秸秆和生物炭添加对土壤氮形态,碳储量和超级稻产量的影响知之甚少。我们用四种处理方法进行了田间试验,包括常规施肥系统(CK),秸秆改良剂6 t ha-1(S),生物炭改良剂2 t ha-1(C1)和生物炭改良剂40 t ha-1(C2)。选择了超级粳稻品种神农265。结果表明,秸秆和生物炭改良剂改善了土壤中的总氮和有机碳含量,减少了N2O排放,并且对氮保留,氮密度和CO2排放影响很小。 S和C1增加了NH4 + -N的含量,而C2增加了NO3--N的含量。 S和C1对土壤有机碳密度(SOCD)和碳氮比几乎没有影响。但是,C2大大提高了SOCD和C / N比。 C1和C2分别使土壤固碳(SCS)分别提高了62.9%和214.0%(P <0.05),而S对SCS没有影响。 C1和C2保持了超级稻产量的稳定性,并显着减少了CH4排放,全球变暖潜能(GWP)和温室气体强度(GHGI),而S则具有相反和负面的影响。综上所述,在华北冷涝稻田土壤中,生物炭改良剂增加了土壤的氮和碳含量,改善了土壤的碳固存性,并减少了温室气体的排放,而没有影响超级稻的产量。

著录项

  • 来源
    《农业科学学报(英文版)》 |2017年第5期|1064-1074|共11页
  • 作者单位

    Rice Research Institute, Shenyang Agricultural University/Key Laboratory of Northeast Rice Biology and Breeding, Ministry of Agriculture/Key Laboratory of Northern japonica Super Rice Breeding, Ministry of Education, Shenyang 110866, P.R.China;

    Tieling Academy of Agricultural Sciences, Tieling 112616, P.R.China;

    Rice Research Institute, Shenyang Agricultural University/Key Laboratory of Northeast Rice Biology and Breeding, Ministry of Agriculture/Key Laboratory of Northern japonica Super Rice Breeding, Ministry of Education, Shenyang 110866, P.R.China;

    Agronomy Col ege, Shenyang Agricultural University, Shenyang 110866, P.R.China;

    Rice Research Institute, Shenyang Agricultural University/Key Laboratory of Northeast Rice Biology and Breeding, Ministry of Agriculture/Key Laboratory of Northern japonica Super Rice Breeding, Ministry of Education, Shenyang 110866, P.R.China;

    Rice Research Institute, Shenyang Agricultural University/Key Laboratory of Northeast Rice Biology and Breeding, Ministry of Agriculture/Key Laboratory of Northern japonica Super Rice Breeding, Ministry of Education, Shenyang 110866, P.R.China;

    Rice Research Institute, Shenyang Agricultural University/Key Laboratory of Northeast Rice Biology and Breeding, Ministry of Agriculture/Key Laboratory of Northern japonica Super Rice Breeding, Ministry of Education, Shenyang 110866, P.R.China;

  • 收录信息 中国科学引文数据库(CSCD);中国科技论文与引文数据库(CSTPCD);
  • 原文格式 PDF
  • 正文语种 eng
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  • 入库时间 2022-08-18 00:23:57
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