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Humus characteristics after maize residues degradation in soil amended with different copper concentrations

机译:不同铜浓度对玉米残渣降解后土壤中腐殖质特性的影响

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Crop residues humification is an important process in nutrient cycling in agroecosystems. A preliminary laboratory incubation experiment of 180 days was conducted to evaluate the quantitative and qualitative characteristics of humic fractions formed during the humification process of maize residues in soil amended with different copper (Cu) concentrations. The Cu concentrations tested were 0, 50, 100, 200, 400, 600, 800, and 1000 mg Cu/kg dry soil. Results showed that the carbon content of humic fractions, i.e. humic acid (HA) and fulvic acid (FA), increased with the increase of Cu concentrations; the exception was carbon content of HA that initially decreased at the concentration of 50 mg Cu/kg. The color coefficient (ΔlogK) and activation degree (AD) of HA increased with increasing Cu concentrations while the relative color intensity (RF) decreased. In summary, we found that the carbon accumulation of humic fractions increases while the degrees of humification and aromaticity of HA decrease with increasing Cu concentrations in soil.
机译:作物残体的腐殖化是农业生态系统养分循环的重要过程。进行了为期180天的实验室初步培养实验,以评估在用不同铜(Cu)浓度改良的土壤中玉米残留物腐殖化过程中形成的腐殖质组分的定量和定性特征。测试的铜浓度为0、50、100、200、400、600、800和1000 mg铜/ kg干燥土壤。结果表明,腐殖酸级分的腐殖酸(HA)和黄腐酸(FA)的碳含量随着Cu浓度的增加而增加。唯一的例外是HA的碳含量最初在50 mg Cu / kg的浓度下降低。 HA的色系数(ΔlogK)和活化度(AD)随着Cu浓度的增加而增加,而相对色强度(RF)则降低。总而言之,我们发现腐殖质部分的碳积累随着土壤中Cu浓度的增加而增加,而HA的腐殖化程度和芳香性降低。

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