在莫桑比克万杜齐联合使用白千层(Leucaena leucocephala)和香根草(Chrysopogon zizanioides)恢复退化土壤的生态环境

Domingos Tomás, Luís Cristóvão, Gila Abilio João, Gonçalves Albino Dauala, E. Mulima, Alessandro Rocha
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摘要

土壤恢复是一个旨在扭转其可降解性的过程,通过纳入有利条件(物理、化学和生物)来重组生命,从而通过干预实现再生。本研究旨在分析在莫桑比克 Vandúzi 区 Nhamurenguera 地区综合利用白千层(Leucaena leucocephala)和香根草(Chrysopogon zizanioides)恢复退化土壤的潜力。实验方法包括土壤研究(物理化学分析)、区域准备(田地和苗床)、田间管理、地形测量,以及对正在生长的幼苗进行定性和定量视觉评估。在 0.5 公顷的土地上共种植了 650 株白花蛇舌草和 680 株香根草幼苗,两种草的行距为 4 米,株距为 2 米。种植三个月后,对幼苗的存活率和适应性进行了评估。结果表明,尽管使用了覆盖物,但由于蚂蚁的攻击和水分不足,17%的白芒花和 12%的香根草死亡。在幼苗对土壤条件的反应方面,由于土壤板结和养分供应不足(沥滤),94% 的白千层和 79% 的香根草在种植后的头 3 个月生长缓慢。四年后,对土壤化学参数进行了评估,并与种植白千层/香根草联盟前的土壤数据进行了比较。土壤的 pH 值、电导率、氮磷钾含量、钙和镁都有所提高,改善了土壤质量,表明土壤正在恢复,为以后的农业用途,特别是谷物和豆类作物的用途做好了准备。
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Edaphic recovery of degraded soils with combined use of leucaena (Leucaena leucocephala) and vetiver grass (Chrysopogon zizanioides) in Vandúzi, Mozambique
Soil recovery is a process aimed at reversing its degradability by incorporating favorable conditions (physical, chemical, and biological) to restructure life so that, through intervention, it can regenerate. This study aimed to analyze the potential combined use of leucaena (Leucaena leucocephala) and vetiver grass (Chrysopogon zizanioides) for the recovery of degraded soils in the Nhamurenguera area, Vandúzi District, Mozambique. The experimental method included soil study (physical-chemical analyses), area preparation (field and seedbed), field management, topographic survey, and qualitative and quantitative visual assessment of the developing seedlings. A total of 650 leucaena and 680 vetiver grass seedlings were planted in an area of 0.5 ha, with a spacing of 4 m between rows and 2 m between seedlings of both species in consort. Three months after planting, the survival and adaptability levels of the seedlings were evaluated. The results showed that 17% of the leucaena individuals and 12% of the vetiver grass died due to ant attacks and insufficient moisture, despite the use of mulching. Regarding the seedlings' reaction to soil conditions, 94% of leucaena and 79% of vetiver showed slow development in the first 3 months of planting due to soil compaction and low nutrient availability (leaching). After four years, soil chemical parameters were evaluated and compared with pre-leucaena/vetiver consortium soil data. The pH values, electrical conductivity, NPK contents, calcium, and magnesium increased, improving soil quality and indicating a soil recovery process to prepare it for subsequent agricultural use, especially for cereal and legume crops.
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