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首页> 外文期刊>Environmental Science and Pollution Research >Citrus stand ages regulate the fraction alteration of soil organic carbon under a citrus/Stropharua rugodo-annulata intercropping system in the Three Gorges Reservoir area, China
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Citrus stand ages regulate the fraction alteration of soil organic carbon under a citrus/Stropharua rugodo-annulata intercropping system in the Three Gorges Reservoir area, China

机译:柑橘展台年龄在中国三峡库区柑橘/ stropharua rugodo-anululattats系统下调节土壤有机碳的分数改变

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摘要

Soil carbon fractionation is a valuable indicator in assessing stabilization of soil organic matter and soil quality. However, limited studies have addressed how different vegetation stand ages under intercropping agroforestry systems, could affect organic carbon (OC) accumulation in bulk soil and its physical fractions. A field study thus investigated the impact of citrus plantation age (15-, 25-, and 45-year citrus) on the bulk soil organic carbon (SOC) and SOC fractions and yields of Stropharia rugoso-annulata (SRA) in the Three Gorges Reservoir area, Chongqing, China. Results indicated that the intercropping practice of SRA with citrus significantly increased the SOC by 57.4-61.6% in topsoil (0-10 cm) and by 24.8-39.9% in subsoil (10-30 cm). With a significantly higher enhancement under the 25-year citrus stand than the other two stands, all these citrus stands of three ages also resulted in a significant increase of free particulate OC (fPOC, 60.1-62.4% in topsoil and 34.8-46.7% in subsoil), intra-micro aggregate particulate OC (iPOC, 167.6-206.0% in topsoil and 2.77-61.09% in subsoil), and mineral-associated OC (MOC, 43.6-46.5% in topsoil and 26.0-51.5% in subsoil). However, there were no significant differences in yields of SRA under three citrus stands. Our results demonstrated that citrus stand ages did play an important role in soil carbon sequestration and fractionation under a citrus/SRA intercropping system, which could therefore provide a sustainable agroforestry system to enhance concurrently the SOC accumulation while mitigating farmland CO2 emission.
机译:土壤碳分级是评估土壤有机质和土壤质量稳定的有价值指标。然而,有限的研究已经解决了间作农林甜菜系统下的不同植被阶段,可能会影响散装土壤及其物理分数中的有机碳(OC)积累。因此,田间研究研究了柑橘种植园年龄(15-,25岁和45年)对三峡散装土壤有机碳(SOC)和SOC分数的影响,并在三峡中(SRA)中的散装土壤有机碳(SOC)和产量中国重庆水库地区。结果表明,SOP的SRA与柑橘的间作实践显着增加了SOC(0-10厘米)的57.4-61.6%,底层中的24.8-39.9%(10-30厘米)。在25年的柑橘座上比其他两个展台下的增强显着提高,所有这些柑橘均为三岁的含量也导致自由颗粒oc(FPOC,TOPSOIL 60.1-62.4%的显着增加,34.8-46.7% Substhill),微聚集体颗粒癌(IPOC,TOPSOIL的167.6-206.0%,底层中的2.77-61.09%),和矿物相关的OC(MOC,TOPSOIL中的43.6-46.5%,26.0-51.5%在底层)。然而,在三个柑橘类的SRA产量没有显着差异。我们的研究结果表明,柑橘类人在柑橘/ SRA间作系统下的土壤碳封存和分馏中发挥着重要作用,因此可以提供可持续的农林料系统,以加强同时积累的同时减轻农田二氧化碳排放。

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