袁晶晶, 同延安, 卢绍辉, 袁国军. 生物炭与氮肥配施改善土壤团聚体结构提高红枣产量[J]. 农业工程学报, 2018, 34(3): 159-165. DOI: 10.11975/j.issn.1002-6819.2018.03.021
    引用本文: 袁晶晶, 同延安, 卢绍辉, 袁国军. 生物炭与氮肥配施改善土壤团聚体结构提高红枣产量[J]. 农业工程学报, 2018, 34(3): 159-165. DOI: 10.11975/j.issn.1002-6819.2018.03.021
    Yuan Jingjing, Tong Yan'an ※, Lu Shaohui, Yuan Guojun. Biochar and nitrogen amendments improving soil aggregate structure and jujube yields[J]. Transactions of the Chinese Society of Agricultural Engineering (Transactions of the CSAE), 2018, 34(3): 159-165. DOI: 10.11975/j.issn.1002-6819.2018.03.021
    Citation: Yuan Jingjing, Tong Yan'an ※, Lu Shaohui, Yuan Guojun. Biochar and nitrogen amendments improving soil aggregate structure and jujube yields[J]. Transactions of the Chinese Society of Agricultural Engineering (Transactions of the CSAE), 2018, 34(3): 159-165. DOI: 10.11975/j.issn.1002-6819.2018.03.021

    生物炭与氮肥配施改善土壤团聚体结构提高红枣产量

    Biochar and nitrogen amendments improving soil aggregate structure and jujube yields

    • 摘要: 探讨花生壳生物炭配施氮肥对华北平原枣区土壤机械稳定性和水稳性团聚体的分布、稳定性及红枣产量的影响,阐明土壤和枣树对生物炭与氮肥培肥效果的响应,为枣区土壤结构改良和合理培肥制度建立科学依据。通过3 a(2013-2015)田间定位试验,设置生物炭用量4个水平(0,2.5,5和10 t/hm2)、氮肥用量3个水平(300,450和600 kg/hm2),利用干、湿筛法得到不同粒级的土壤团聚体含量。结果表明:与对照相比,生物炭与氮肥配施对机械稳定性团聚体的平均质量直径(MWD,mean weight diameter)、几何平均直径(geometric mean diameter, GMD)和>0.25 mm大团聚体质量分数无显著影响,但>0.25 mm水稳性大团聚体含量则显著提高20.7%,水稳性团聚体的MWD和GMD较对照分别显著增加29.2%和27.2%。同时,各配施处理降低了土壤团聚体破坏率,最大降幅为27.1%。与对照相比,中、高用量的生物炭与氮肥配施显著提高土壤有机碳含量,且有机碳含量与MWD和GMD均达到了显著水平(P<0.05)。生物炭施入土壤1 a后,随试验时间的推移,与氮肥的培肥效果越来越明显,红枣产量呈上升趋势。综合分析认为,生物炭与氮肥配施对枣区土壤水稳性大团聚体的形成、土壤结构及稳定性提升效果显著,有利于缓解枣区土壤质量退化问题和提高红枣产量。

       

      Abstract: Abstract: Soil aggregate as the fundamental unit of soil structure, is a product of interactions between soil microbial communities and mineral-organic compositions. High and sustainable soil aggregate stability is an important characteristic for preserving soil productivity and restraining soil erosion and degradation. However, there are few literatures about how biochar amendments affect soil aggregate in fruit orchards in China. The objective of this study was to evaluate the effects of combined application of peanut shell biochar and nitrogen (N) fertilizer on the distribution and stability of soil mechanical and water-stable aggregates, and jujube yields based on a three-year consecutive field experiment on fluvo-aquic soils in the North China Plain. This study could elucidate the responses of soil and jujube to soil fertility quality under biochar and N fertilizer application, which can provide a scientific basis for improving soil structure and high-efficient fertilization in jujube plantations. This experiment included 13 treatments: CK (no fertilizer), 4 levels of biochar amendments (C0-C3: 0, 2.5, 5 and 10 t/hm2) and 3 levels of N fertilizer application (N1-N3: 300, 450 and 600 kg/hm2). All samples were separated into 5 aggregate-size classes (>5, 2-5, 1-2, 0.25-1 and >0.25 mm) by dry and wet sieving. The results showed that compared with the control, biochar and N fertilizer amendments had no significant influence on mean weight diameter (MWD), geometric mean diameter (GMD) and the proportions of >0.25 mm macro-aggregates under dry sieving, while the proportions of >0.25 mm water-stable macro-aggregates increased with the biochar, and the highest proportion of this size was observed in the C3N2 treatment with the increment of 20.7%. The values of MWD and GMD under wet sieving were significantly increased by 29.2% and 27.2%, respectively. In addition, the percentage of aggregate destruction was significantly decreased by 27.1%. The contents of oil organic carbon were higher in biochar-amended treatments than in the control, and significant differences were observed for the higher application rates. A significant positive correlation was observed among soil organic carbon content, MWD and GMD (P<0.05) according to the correlation analysis. One year after the application of biochar to the jujube orchard, soil fertility under biochar and N fertilizer amendments increased with the increase of keeping years, and the yields of jujube were also gradually improved. Taking into account the above-mentioned results, we can draw the conclusion that biochar amendment combined with N fertilizer application significantly improved the content of soil water-stable aggregates and aggregate stability, which was conducive to ameliorate soil degradation, and improve jujube yield. The optimal amounts for biochar and N fertilizer according to the comprehensive results should be 10 t/hm2 and 300 kg/hm2, respectively.

       

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