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Evolution of organic matter fractions after application of co-compost of sewage sludge with pruning waste to four Mediterranean agricultural soils. A soil microcosm experiment

机译:将污水污泥与修剪废物混合施用到四种地中海农业土壤后,有机物组分的演变。土壤微观实验

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摘要

The effect of co-compost application from sewage sludge and pruning waste, on quality and quantity of soil organic carbon (SOC) in four Mediterranean agricultural soils (South Spain), was studied in soil microcosm conditions. Control soil samples (no co-compost addition) and soils treated with co-composts to a rate equivalent of 140 Mg ha~(-1) were incubated for 90 days at two temperatures: 5 and 35℃. The significances of incubation temperature and the addition of co-compost, on the evolution of the different fractions of SOC, were studied using a 23 factorial design. The co-compost amendment increased the amounts of humic fractions: humic acids (HA) (1.9 times), fulvic acids (FA) (3.3 times), humin (1.5 times), as well as the free organic matter (1.4 times) and free lipids (21.8 times). Incubation of the soils enhanced its biological activity mainly in the amended soils and at 35℃, leading to progressive SOC mineralization and humification, concomitant to the preferential accumulation of HA. The incubation results show large differences depending on temperature and soil types. This fact allows us to select suitable organic amendment for the soil when a rapid increase in nutrients through mineralization is preferred, or in cases intending the stabilization and preservation of the SOC through a process of humification. In soils with HA of more than 5 E_4/E_6 ratio, the incubation temperature increased rates of mineralization and humification, whereas lower temperatures limited the extent of both processes. In these soils the addition of co-compost in spring or summer is the most recommendable. In soils with HA of lower E_4/E_6 ratio (<5), the higher temperature favoured mineralization but not humification, whereas the low temperature maintained the SOC levels and even increased the HA/FA ratio. In these soils the moment of addition of organic amendment should be decided depending on the effect intended. On the other hand, the lower the SOC content in the original soil, the greater are the changes observed in the SOC after amendment with co-compost. The results suggest that proper recommendations for optimum organic matter evolution after soil amendment is possible after considering a small set of characteristics of soil and the corresponding soil organic matter fractions, in particular HA.
机译:在土壤微观条件下,研究了污泥和修剪废料的混合肥料施用对四种地中海农业土壤(西班牙南部)土壤有机碳(SOC)的质量和数量的影响。对照土壤样品(不添加堆肥)和用堆肥处理的土壤等效量为140 Mg ha〜(-1)在5和35℃的两个温度下孵育90天。使用23因子设计研究了孵育温度和添加协同堆肥对SOC不同组成部分演变的意义。共同堆肥修正案增加了腐殖质含量:腐殖酸(HA)(1.9倍),富里酸(FA)(3.3倍),腐殖酸(1.5倍)以及游离有机物(1.4倍)和游离脂质(21.8倍)。土壤的温育主要在改良土壤中和在35℃下增强其生物活性,从而导致SOC逐渐矿化和腐殖化,并伴随HA的优先积累。孵育结果显示出很大差异,具体取决于温度和土壤类型。这个事实使我们能够在需要通过矿化快速增加养分的情况下,或者在打算通过腐化过程稳定和保存SOC的情况下,为土壤选择合适的有机改良剂。在HA比例大于5 E_4 / E_6的土壤中,温育温度增加了矿化和腐殖化的速率,而较低的温度限制了这两个过程的程度。在这些土壤中,最好在春季或夏季添加混合肥料。在HA的E_4 / E_6比值较低(<5)的土壤中,较高的温度有利于矿化而不是腐殖化,而低温则保持SOC含量甚至增加HA / FA比。在这些土壤中,应根据预期效果决定添加有机改性剂的时间。另一方面,原始土壤中的SOC含量越低,用混合肥料改良后SOC的变化越大。结果表明,在考虑土壤的少量特征和相应的土壤有机质组分(尤其是HA)后,可以对土壤改良后的最佳有机质演化提出适当的建议。

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  • 来源
    《Waste Management》 |2010年第10期|p.1957-1965|共9页
  • 作者单位

    Departamento de Edafologia y Quimica Agricola, Universidad de Granada, Spain;

    rnDepartamento de Edafologia y Quimica Agricola, Universidad de Granada, Spain;

    rnDepartamento de Edafologia y Quimica Agricola, Universidad de Granada, Spain;

    rnDepartamento de Edafologia y Quimica Agricola, Universidad de Granada, Spain;

    rnDepartamento de Suelos, CCMA-CSIC, Spain;

    rnDepartamento de Geologia, Universidad de Jaen, Spain;

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