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Tropical soils degraded by slash‐and‐burn cultivation can be recultivated when amended with ashes and compost

机译:通过刀耕火种的方式退化的热带土壤可以用灰烬和堆肥进行改良

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摘要

In many tropical regions, slash‐and‐burn agriculture is considered as a driver of deforestation; the forest is converted into agricultural land by cutting and burning the trees. However, the fields are abandoned after few years because of yield decrease and weed invasion. Consequently, new surfaces are regularly cleared from the primary forest. We propose a reclamation strategy for abandoned fields allowing and sustaining re‐cultivation. In the dry region of south‐western Madagascar, we tested, according to a split‐plot design, an alternative selective slash‐and‐burn cultivation technique coupled with compost amendment on 30–year‐old abandoned fields. Corn plants (Zea mays L.) were grown on four different types of soil amendments: no amendment (control), compost, ashes (as in traditional slash‐and‐burn cultivation), and compost + ashes additions. Furthermore, two tree cover treatments were applied: 0% tree cover (as in traditional slash‐and‐burn cultivation) and 50% tree cover (selective slash‐and‐burn). Both corn growth and soil fertility parameters were monitored during the growing season 2015 up to final harvest. The amendment compost + ashes strongly increased corn yield, which was multiplied by 4–5 in comparison with ashes or compost alone, reaching 1.5 t/ha compared to 0.25 and 0.35 t/ha for ashes and compost, respectively. On control plots, yield was negligible as expected on these degraded soils. Structural equation modeling evidenced that compost and ashes were complementary fertilizing pathways promoting soil fertility through positive effects on soil moisture, pH, organic matter, and microbial activity. Concerning the tree cover treatment, yield was reduced on shaded plots (50% tree cover) compared to sunny plots (0% tree cover) for all soil amendments, except ashes. To conclude, our results provide empirical evidence on the potential of recultivating tropical degraded soils with compost and ashes. This would help mitigating deforestation of the primary forest by increasing lifespan of agricultural lands.
机译:在许多热带地区,刀耕火种的农业被认为是毁林的驱动力。通过砍伐和烧毁树木将森林转变为农田。但是,由于产量下降和杂草入侵,几年后田地被废弃了。因此,定期从原始森林中清除新的表面。我们提出了针对废弃土地的开垦战略,以允许并维持重新耕种。在马达加斯加西南部的干旱地区,根据裂区设计,我们在30岁的废弃土地上测试了另一种选择性的刀耕火种栽培技术以及堆肥改良方法。玉米(Zea mays L.)种植在四种不同类型的土壤改良剂上:无改良(对照),堆肥,灰烬(如传统的刀耕火种)和添加堆肥+灰烬。此外,还进行了两种树木覆盖处理:0%树木覆盖(如传统的刀耕火种)和50%树木覆盖(选择性刀耕火种)。在2015年至最终收成的生长季节,均监测了玉米生长和土壤肥力参数。改良的堆肥+灰分大大提高了玉米产量,与单独的灰分或堆肥相比,其增幅为4–5,达到1.5 t / ha,而灰分和堆肥分别为0.25和0.35 t / ha。在对照样地上,在这些退化的土壤上的产量可忽略不计。结构方程模型表明,堆肥和骨灰是对土壤水分,pH,有机质和微生物活性的积极影响,从而促进土壤肥力的互补施肥途径。关于树木覆盖处理,除灰烬外,所有土壤改良剂的阴凉地块(50%树木覆盖)的产量与晴天区(0%树木覆盖)相比有所降低。总而言之,我们的结果提供了使用堆肥和灰烬修复热带退化土壤的潜力的经验证据。这将通过增加农田的寿命来帮助减轻原始森林的砍伐。

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