Tropical Agriculture Research Front, Japan International Research Center for Agricultural Sciences, Ishigaki, Japan.
Crop, Livestock and Environmental Division, Japan International Research Center for Agricultural Sciences, Tsukuba, Japan.
Sci Rep. 2024 Oct 1;14(1):22823. doi: 10.1038/s41598-024-73621-3.
Nitrogen leaching, resulting from the inefficient use of fertilizers, pollutes the environment, such as groundwater. Biochar can be applied to farmlands to mitigate nitrogen leaching. The effect depends on the application depth. However, the effect has not been examined under crop-farming conditions. Evaluating the interactions between biochar application depth and crop growth is indispensable for considering depth in the actual field. To address this, we conducted a pipe experiment with four treatments, no biochar (control), surface (0-5 cm), plow layer (0-30 cm), and subsurface (25-30 cm) applications, and compared the results with no-crop conditions from a previous study. Biochar application depth affected soil NO-N and NH-N absorption ability and also influenced soil-water stress conditions, affecting crop growth. Surface biochar application improved nitrogen absorption and reduced soil-water stress, improving crop growth. The NO-N leaching was reduced to 87.7%. Plow layer application worsened nitrogen absorption and resulted in frequent dry stress in the shallow-soil layer, preventing root growth in this layer. The NO-N and NH-N leaching increased 106.4% and 264.1%, respectively. The effects of subsurface application were similar to those in the control. Selecting an appropriate application depth can simultaneously improve crop growth and reduce nitrogen leaching.
氮淋失是由于肥料使用效率低下造成的,会污染地下水等环境。生物炭可以应用于农田以减少氮淋失。其效果取决于应用深度。然而,在作物种植条件下,其效果尚未得到检验。评估生物炭应用深度和作物生长之间的相互作用对于考虑实际田间的深度是必不可少的。为了解决这个问题,我们进行了一个有四个处理的管实验,分别为不添加生物炭(对照)、表施(0-5cm)、耕层(0-30cm)和深施(25-30cm),并将结果与之前的一项无作物条件的研究进行了比较。生物炭应用深度影响了土壤硝态氮和氨态氮的吸收能力,也影响了土壤水分胁迫条件,从而影响了作物生长。表施生物炭提高了氮素吸收,减少了土壤水分胁迫,从而促进了作物生长。NO-N 淋失减少了 87.7%。耕层施入生物炭则恶化了氮素吸收,并导致浅层土壤频繁出现干旱胁迫,阻止了该层的根系生长。NO-N 和 NH-N 的淋失分别增加了 106.4%和 264.1%。深施的效果与对照相似。选择适当的应用深度可以同时提高作物生长和减少氮淋失。