首页> 外文期刊>Journal of plant nutrition and soil science >Effects of part and whole straw returning on soil carbon sequestration in C3-C4 rotation cropland
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Effects of part and whole straw returning on soil carbon sequestration in C3-C4 rotation cropland

机译:零件与整个秸秆返回对C3-C4旋转耕地土壤碳封存的影响

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摘要

Long-term no-tillage management and crop residue amendments to soil were identified as an effective measure to increase soil organic carbon (SOC). The SOC content, SOC stock (SOCs), soil carbon sequestration rate (CSR), and carbon pool management index (CPMI) were measured. A stable isotopic approach was used to evaluate the contributions of wheat and maize residues to SOC at a long-term experimental site. We hypothesized that under no-tillage conditions, straw retention quantity would affect soil carbon sequestration differently in surface and deep soil, and the contribution of C3 and C4 crops to soil carbon sequestration would be different. This study involved four maize straw returning treatments, which included no maize straw returning (NT-0), 0.5 m (from the soil surface) maize straw returning (NT-0.5), 1 m maize straw returning (NT-1), and whole maize straw returning (NT-W). The results showed that in the 0-20 cm soil layer, the SOC content, SOCs, CSR and CPMI of the NT-W were highest after 14 years of no-tillage management, and there were obvious differences among the four treatments. However, the SOC, SOCs, and CSR of the NT-0.5 and NT-W were the highest and lowest in 20-100 cm, respectively. The value of delta C-13 showed an obviously vertical variability that ranged from -22.01 parts per thousand (NT-1) in the 0-20 cm layer to -18.27 parts per thousand (NT-0.5) in the 60-80 cm layer, with enriched delta C-13 in the 60-80 cm (NT-0.5 and NT-1) and 80-100 cm (NT-0 and NT-W) layers. The contributions of the wheat and maize-derived SOC of the NT-0.5, NT-1 and NT-W increased by 11.4, 29.5 and 56.3% and by 10.7, 15.1 and 40.1%, relative to those in the NT-0 treatment in the 0-20 cm soil layer, respectively. In conclusion, there was no apparent difference in total SOC sequestration between the NT-0.5, NT-1, and NT-W treatments in the 0-100 cm soil layer. The contribution of wheat-derived SOC was higher than that of maize-derived SOC.
机译:将土壤的长期无耕作管理和作物残留物修正被确定为增加土壤有机碳(SOC)的有效措施。测量了SoC含量,SoC库存(SoC),土壤碳封存率(CSR)和碳池管理指数(CPMI)。使用稳定的同位素方法在长期实验部位评估小麦和玉米残留对SoC的贡献。我们假设在无耕种条件下,秸秆保留量会影响地表和深土壤中的土壤碳封存,以及C3和C4作物对土壤碳封存的贡献将是不同的。这项研究涉及四种玉米秸秆还疗法,其中包括没有玉米秸秆还液(NT-0),0.5米(来自土壤表面)玉米秸秆返回(NT-0.5),1米玉米秸秆返回(NT-1),和整个玉米秸秆还价(NT-W)。结果表明,在0-20厘米的土壤层中,NT-W的SoC含量,SOC,CSR和CPMI在14年的无耕作管理后最高,并且四种治疗中存在明显差异。然而,NT-0.5和NT-W的SOC,SOC和CSR分别在20-100厘米的最高和最低。 Delta C-13的值显示出明显的垂直变异性,其在0-20cm层中的-22.01份(NT-1)在60-80cm层中的0-20cm层中至-18.27份(NT-0.5)。 ,富含60-80厘米(NT-0.5和NT-1)和80-100cm(NT-0和NT-W)层的富集的Delta C-13。 NT-0.5,NT-1和NT-W的小麦和玉米衍生SoC的贡献相对于NT-0治疗中的那些,增加了11.4,29.5和56.3%和10.7,15.1和40.1%分别为0-20厘米的土壤层。总之,NT-0.5,NT-1和0-100cm土层中的NT-0.5,NT-1和NT-W处理之间的总SOC螯合没有明显差异。小麦衍生的SoC的贡献高于玉米衍生的SoC。

著录项

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  • 作者单位

    Shandong Agr Univ Key Lab Crop Water Physiol &

    Drought Tolerance Ge State Key Lab Crop Biol Minist Agr Coll Agron Tai An 271018 Shandong Peoples R China;

    Shandong Agr Univ Key Lab Crop Water Physiol &

    Drought Tolerance Ge State Key Lab Crop Biol Minist Agr Coll Agron Tai An 271018 Shandong Peoples R China;

    Shandong Agr Univ Key Lab Crop Water Physiol &

    Drought Tolerance Ge State Key Lab Crop Biol Minist Agr Coll Agron Tai An 271018 Shandong Peoples R China;

    Shandong Agr Univ Key Lab Crop Water Physiol &

    Drought Tolerance Ge State Key Lab Crop Biol Minist Agr Coll Agron Tai An 271018 Shandong Peoples R China;

    Shandong Agr Univ Key Lab Crop Water Physiol &

    Drought Tolerance Ge State Key Lab Crop Biol Minist Agr Coll Agron Tai An 271018 Shandong Peoples R China;

    Shandong Agr Univ Key Lab Crop Water Physiol &

    Drought Tolerance Ge State Key Lab Crop Biol Minist Agr Coll Agron Tai An 271018 Shandong Peoples R China;

    Shandong Agr Univ Key Lab Crop Water Physiol &

    Drought Tolerance Ge State Key Lab Crop Biol Minist Agr Coll Agron Tai An 271018 Shandong Peoples R China;

    Shandong Agr Univ Key Lab Crop Water Physiol &

    Drought Tolerance Ge State Key Lab Crop Biol Minist Agr Coll Agron Tai An 271018 Shandong Peoples R China;

    Shandong Agr Univ Key Lab Crop Water Physiol &

    Drought Tolerance Ge State Key Lab Crop Biol Minist Agr Coll Agron Tai An 271018 Shandong Peoples R China;

    Shandong Agr Univ Key Lab Crop Water Physiol &

    Drought Tolerance Ge State Key Lab Crop Biol Minist Agr Coll Agron Tai An 271018 Shandong Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 农业基础科学;
  • 关键词

    carbon pool management index; delta C-13; SOC sequestration; straw amendment;

    机译:碳池管理指标;Delta C-13;SoC封存;秸秆修正案;

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