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Combined use of compost and wood scraps to increase carbon stock and improve soil quality in intensive farming systems

机译:在集约化耕作系统中混合使用堆肥和废木料以增加碳储量并改善土壤质量

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Intensive agricultural systems negatively affect soil quality principally because of a reduction in soil organic matter (OM). Sustainable practices providing organic amendments could be useful to maintain or increase OM content in agricultural soils, preserving and improving soil fertility. In this study, biomass with a large C:N ratio was applied to intensively farmed agricultural soils to maximize the increase of soil OM and hence chemical and biochemical fertility. In particular, 30 and 60 t ha(-1) of two mixtures of compost and scraps from poplar pruning, A1 and A2, with different C:N ratios (15 and 25, respectively), were applied to soils of two farms (F1 and F2) in a Mediterranean area (southern Italy) on an annual basis for two consecutive years. An effective, long-lasting increase of soil OM, on average of 60 and 55% in F1 and F2 soils, respectively, was reached at the end of the experiment. As well as a progressive increase in the C:N ratio, total N and available P also increased with organic amendments, with positive effects on soil microbial activity as demonstrated by the enhancement of the seven studied enzymatic activities. Principal component analysis demonstrated different responses to various organic amendments between F1 and F2 soils because of their geopedological diversity. The results indicate that the C:N ratio of the mixture is an important factor, but what is the best rate of addition to use is still not obvious. The use of a smaller amount (30 t ha(-1)) of the A1 mixture (10:1 compost:wood) appears, in these types of soils, to be the most suitable strategy to produce significant benefits.
机译:集约化农业系统主要由于土壤有机质(OM)的减少而对土壤质量产生负面影响。提供有机改良剂的可持续做法可能对维持或增加农业土壤中有机肥的含量,保持和改善土壤肥力有用。在这项研究中,将高C:N比的生物量应用于集约耕作的农业土壤,以最大程度地增加土壤OM,从而最大程度地提高化学和生化肥力。特别是,将来自杨树修剪的堆肥和废料的两种混合肥料A1和A2的30和60 t ha(-1)分别以不同的C:N比(分别为15和25)施用于两个农场的土壤(F1和F2),连续两年每年在地中海地区(意大利南部)进行。在实验结束时,F1和F2土壤的OM有效,持久地增加,分别达到60%和55%。随着C:N比例的逐渐增加,总氮和有效磷也随着有机物的增加而增加,这对土壤微生物活性产生了积极影响,这通过研究的7种酶活性的增强得以证明。主成分分析表明,由于F1和F2土壤的地理学多样性,它们对各种有机改良剂的反应不同。结果表明,混合物的C:N比是一个重要因素,但是最佳的添加比例仍不清楚。在这些类型的土壤中,使用少量(30 t ha(-1))的A1混合物(10:1堆肥:木材)似乎是产生重大收益的最合适策略。

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