首页> 外文期刊>Journal of arid environments >Tree biomass and soil organic carbon densities across the Sudanese woodland savannah: A regional carbon sequestration study
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Tree biomass and soil organic carbon densities across the Sudanese woodland savannah: A regional carbon sequestration study

机译:苏丹林地大草原的树木生物量和土壤有机碳密度:区域碳固存研究

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摘要

Mean tree biomass and soil carbon (C) densities for 39 map sheet grids (1° lat. × 1.5° long.) covering the Acacia woodland savannah region of Sudan (10-16° N; 21—36° E) are presented. Data from the National Forest Inventory of Sudan, Harmonized World Soil Database and FAO Local Climate Estimator were used to calculate C densities, mean annual precipitation (MAP) and mean annual temperature (MAT). Above-ground biomass C and soil organic carbon (SOC, 1 m) densities averaged 112 and 5453 g C m~(-2), respectively. Below-ground biomass C densities, estimated using root shoot ratios, averaged 33 g C m~(-2). Biomass C densities and MAP increased southwards across the region while SOC densities were lowest in the centre of the region and increased westwards and eastwards. Both above-ground biomass C and SOC densities were significantly (p < 0.05) correlated with MAP (r_s = 0.84 and r_s = 0.34, respectively) but showed non-significant correlations with MAT (r_s = -0.22 and r_s = 0.24, respectively). SOC densities were significantly correlated with biomass C densities (r_s = 0.34). The results indicated substantial under stocking of trees and depletion of SOC, and potential for C sequestration. Up-to-date regional and integrated soil and forest inventories are required for planning improved land-use management and restoration.
机译:给出了覆盖苏丹(10-16°N; 21-36°E)的39个地图图纸网格(1°纬度×1.5°长)的平均树木生物量和土壤碳(C)密度。苏丹国家森林清单,世界土壤协调数据库和粮农组织当地气候估算器的数据用于计算碳密度,年平均降水量(MAP)和年平均温度(MAT)。地上生物量碳和土壤有机碳(SOC,1 m)的密度分别平均为112和5453 g C m〜(-2)。利用根冠比估算的地下生物量碳密度平均为33 g C m〜(-2)。整个区域的生物量碳密度和MAP向南增加,而SOC密度在区域中心最低,向西和向东增加。地上生物量碳和SOC密度均与MAP显着相关(p <0.05)(r_s = 0.84和r_s = 0.34),但与MAT无显着相关性(r_s = -0.22和r_s = 0.24) 。 SOC密度与生物质C密度显着相关(r_s = 0.34)。结果表明树木存量不足和SOC耗尽,以及潜在的C隔离。为了规划改进的土地利用管理和恢复,需要最新的区域和综合的土壤和森林清单。

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