Fine root biomass and its relationship with the soil in degraded areas by mining in biogeographic Chocó

Harley Quinto Mosquera, Yeison Rivas Urrutia, Natalia Palacios Murillo
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Abstract

Fine root biomass (FRB) is essential for the functioning of tropical forests. However, due to the degradation generated by mining, it is necessary to evaluate the influence of the soil and the successional time on the FRB, to contribute to its restoration. Forests of biogeographic Chocó have been affected by mining; for this reason, the objective of evaluating the influence of the soil and the successional time on the FRB in abandoned mines was proposed. For this, plots were established in three successional stages: two abandoned mines (12-15 and 30-35 years) and a primary forest. Subsequently, the physicochemical conditions of the soil and the FRB (<2 mm) at 20 cm depth were measured. The registered FRB was 5.73 t ha-1 in stages of 12-15 years, 2.56 t ha-1 in stages of 30- 35 years, and 5.91 t ha-1 forests; that is, it recovered quickly, but did not increase with successional time. In general, the FRB was determined by successional age, fertility, OM, and clay. In stages of 12-15 years, it was positively associated with OM and slime; and negatively with clay and sand. While, in stages of 30-35 years, it was positively related to Al, N, Ca and clay; but, with K, MO and Mg it was negative. In summary, it was determined that the soils have a different influence on the FRB in each successional stag. In addition, the limitation of belowground biomass storage due to multiple nutrients, which affect the mitigation of global climate change, was noted.
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生物地理研究中退化地区细根生物量及其与土壤的关系Chocó
细根生物量(FRB)对热带森林的功能至关重要。然而,由于采矿造成的退化,有必要评估土壤和演替时间对森林植被的影响,以促进森林植被的恢复。生物地理Chocó的森林受到采矿的影响;为此,提出了评价土壤和演替时间对废弃矿山FRB影响的目标。为此,在三个连续阶段建立了地块:两个废弃矿山(12-15年和30-35年)和一个原始森林。随后,测量了20 cm深度土壤的理化条件和FRB (<2 mm)。12-15年、30- 35年和5.91 t ha-1的森林速降率分别为5.73 t ha-1、2.56 t ha-1;也就是说,它恢复得很快,但不随连续时间而增加。一般来说,FRB由演替年龄、肥力、OM和粘土决定。在12-15年的阶段,它与OM和粘液呈正相关;而粘土和沙子则相反。在30 ~ 35 a阶段,与Al、N、Ca和粘土呈显著正相关;但是对于K, MO和Mg,它是负的。综上所述,土壤对不同演替阶段FRB的影响是不同的。此外,与会者还指出,由于多种营养物质的存在,地下生物量储存受到限制,影响到全球气候变化的减缓。
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