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Tillage System Affects Soil Organic Carbon Storage and Quality in Central Morocco

机译:耕作制度影响摩洛哥中部地区土壤有机碳的储存和质量

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Stabilizing or improving soil organic carbon content is essential for sustainable crop production under changing climate conditions. Therefore, soil organic carbon research is gaining momentum in the Mediterranean basin. Our objective is to quantify effects of no tillage (NT) and conventional tillage (CT) on soil organic carbon stock (SOCs) in three soil types (Vertisol, Cambisol, and Luvisol) within Central Morocco. Chemical analyses were used to determine how tillage affected various humic substances. Our results showed that, after 5 years, surface horizon (0–30 cm) SOC stocks varied between tillage systems and with soil type. The SOCs was significantly higher in NT compared to CT (10% more in Vertisol and 8% more in Cambisol), but no significant difference was observed in the Luvisol. Average SOCs within the 0–30 cm depth was 29.35 and 27.36 Mg ha−1under NT and CT, respectively. The highest SOCs (31.89 Mg ha−1) was found in Vertisols under NT. A comparison of humic substances showed that humic acids and humin were significantly higher under NT compared to CT, but fulvic acid concentrations were significantly lower. These studies confirm that NT does have beneficial effects on SOCs and quality in these soils.
机译:在不断变化的气候条件下,稳定或提高土壤有机碳含量对于可持续作物生产至关重要。因此,在地中海盆地,土壤有机碳的研究正在蓬勃发展。我们的目标是量化摩洛哥中部三种土壤类型(Vertisol,Cambisol和Luvisol)的免耕(NT)和常规耕作(CT)对土壤有机碳储量(SOCs)的影响。化学分析用于确定耕作如何影响各种腐殖质。我们的结果表明,5年后,耕作系统之间和土壤类型之间的表层SOC(0–30µcm)有所不同。与CT相比,NT中的SOC显着更高(在Vertisol中增加10%,在Cambisol中增加8%),但在Luvisol中未观察到显着差异。在NT和CT下,0–30 cm深度内的平均SOC分别为29.35和27.36 Mg ha-1。在NT下,在Vertisols中发现最高的SOC(31.89 Mg ha-1)。腐殖质的比较显示,与CT相比,NT下的腐殖酸和腐殖质显着较高,但富里酸的浓度显着较低。这些研究证实,NT对这些土壤的SOC和质量确实具有有益的影响。

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