蒋发辉, 王玥凯, 郭自春, 张中彬, 彭新华. “旋松一体”耕作对潮土和砂姜黑土物理性质及作物生长的影响[J]. 土壤通报, 2021, 52(4): 801 − 810. DOI: 10.19336/j.cnki.trtb.2021010901
引用本文: 蒋发辉, 王玥凯, 郭自春, 张中彬, 彭新华. “旋松一体”耕作对潮土和砂姜黑土物理性质及作物生长的影响[J]. 土壤通报, 2021, 52(4): 801 − 810. DOI: 10.19336/j.cnki.trtb.2021010901
JIANG Fa-hui, WANG Yue-kai, GUO Zi-chun, ZHANG Zhong-bin, PENG Xing-hua. Effect of “Rotary-subsoiling” Tillage on Soil Physical Properties and Crop Growth in Fluvo-aquic Soil and Shajiang Black Soil[J]. Chinese Journal of Soil Science, 2021, 52(4): 801 − 810. DOI: 10.19336/j.cnki.trtb.2021010901
Citation: JIANG Fa-hui, WANG Yue-kai, GUO Zi-chun, ZHANG Zhong-bin, PENG Xing-hua. Effect of “Rotary-subsoiling” Tillage on Soil Physical Properties and Crop Growth in Fluvo-aquic Soil and Shajiang Black Soil[J]. Chinese Journal of Soil Science, 2021, 52(4): 801 − 810. DOI: 10.19336/j.cnki.trtb.2021010901

“旋松一体”耕作对潮土和砂姜黑土物理性质及作物生长的影响

Effect of “Rotary-subsoiling” Tillage on Soil Physical Properties and Crop Growth in Fluvo-aquic Soil and Shajiang Black Soil

  • 摘要: 为改善潮土和砂姜黑土容重大,穿透阻力强,犁底层紧实等结构障碍。研究提出一种“旋松一体”耕作方式,并在山东德州的典型潮土和安徽怀远的典型砂姜黑土进行试验。其中,潮土设置旋耕15 cm、旋松一体30 cm两个处理;砂姜黑土设置旋耕15 cm、深翻30 cm和旋松一体30 cm三个处理,研究旋松一体耕作对两种土壤0 ~ 40 cm土层土壤容重、紧实度、水分动态和小麦玉米根系及产量生长的影响。结果表明:与旋耕相比,旋松一体耕作显著降低了潮土和砂姜黑土容重和穿透阻力,与深翻相比,旋松一体耕作也显著降低了砂姜黑土容重和穿透阻力。旋松一体耕作显著提高了降水后土壤水分下渗速度、下渗量及下渗深度,进而提高潮土深层,砂姜黑土小麦季表层及玉米季深层土壤体积含水量。与旋耕相比,旋松一体耕作分别增加潮土和砂姜黑土小麦产量11.4%和7.1%,玉米产量6.7%和37%(受涝害胁迫),提高直接经济收益1748和3277元hm−2。旋松一体耕作有效改善了潮土和砂姜黑土物理性质,提高作物产量和经济效益显著,可作为华北平原土壤耕层结构改良的新型耕作模式。

     

    Abstract: A new method of combined tillage called “Rotary-subsoiling” was invented to improve the soil structure obstacle of Fluvo-aquic soil and Shajiang black soil, such as subsoil compaction and high soil strength. Two field experiments were established to assess the effects of rotary-subsoiling tillage on soil physical properties, root distribution and grain yield of wheat and maize on these two soils. The treatments included: rotary tillage to 15 cm and rotary-subsoiling to 30 cm on Fluvo-aquic soil; rotary tillage 15 cm, deep ploughing 30 cm and rotary-subsoiling 30 cm on Shajiang black soil. The results showed that, compared with rotary tillage, rotary-subsoiling significantly decreased the soil bulk density and penetration resistance in both soils, increased the rate, amount and depth of water infiltration, as consequently enhanced soil volume water content over the wheat season of Fluvo-aquic soil and Shajiang black soil. Moreover, rotary-subsoiling enhanced the biomass of plant root and significantly increased the yield of wheat by 11.4% and 7.1% , that of of maize by 6.7% and 37% on Fluvo-aquic soil and Shajiang black soil compared with rotary tillage, respectively. Consequently, the income was increased by 1748 and 3277 yuan hm−2 in these two soils, respectively. In conclusion, the rotary-subsoiling could remediate soil physical properties, increase crop yield, and then increase profit significantly.

     

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