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首页> 外文期刊>Biology and Fertility of Soils >Nitrogen dynamics and microbial response in soil amended with either olive pulp or its by-products after biogas production
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Nitrogen dynamics and microbial response in soil amended with either olive pulp or its by-products after biogas production

机译:沼气生产后,用橄榄果肉或其副产物改良的土壤中的氮动态和微生物响应

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摘要

Olive pulp (OP), the residual material of a two-phase olive oil extraction system, and effluents from hydrogen (EH2) and methane (ECH4) production, have been evaluated as soil amendments particularly for their impact on soil mineral nitrogen (N) dynamics, gross N mineralization, and soil microbial biomass N (Nmic). Both N transformation and microbial growth were mainly influenced by the amount and quality of added organic carbon (C). Both OP and EH2, which contain more carbohydrates and lipids than polyphenolic compounds, stimulated NO3 ? immobilization during the early incubation period and increased Nmic, saprophytic fungi, and N mineralization. On the contrary, soil amended with ECH4, which is characterized by the lowest C content but the highest content of polyphenolic compounds, behaved as the control; neither NO3 ? immobilization nor microbial growth were observed and gross N mineralization was stimulated only at the beginning of the incubation period. Bacterial plate count was significantly correlated with direct bacterial count and fungal count was correlated with Nmic. Therefore, it is suggested that both bacterial and fungal plate counts may be used as indicators of the overall bacterial and fungal populations inhabiting soil, respectively. The knowledge of the impact of these materials on soil N dynamics is crucial for their correct use in agriculture because it has been shown that NO3 ? availability can be strongly influenced by the addition of different amounts and quality of organic amendment.
机译:橄榄纸浆(OP)是两相橄榄油提取系统的残余材料,还生产了氢气(EH2 )和甲烷(ECH4 )生产的废水,已作为土壤改良剂进行了评估,尤其是它们的改良剂对土壤矿质氮动态,总氮矿化和土壤微生物生物量氮(Nmic )的影响。氮的转化和微生物的生长都主要受添加有机碳(C)的数量和质量的影响。相比多酚类化合物,OP和EH2 所含的碳水化合物和脂质更多,它们在孵化初期刺激了NO3 的固定化,并增加了Nmic ,腐生真菌和N矿化作用。相反,以ECH4 修饰的土壤作为对照,其特征是C含量最低,而多酚化合物含量最高。没有观察到NO3 α的固定化和微生物的生长,仅在孵化期开始时才刺激了总氮矿化。细菌平板计数与直接细菌计数显着相关,而真菌计数与Nmic相关。因此,建议细菌和真菌板计数都可以分别用作指示土壤中细菌和真菌总体种群的指标。了解这些物质对土壤氮动力学的影响对其在农业中的正确使用至关重要,因为已表明,添加不同数量和质量的NO3 α的有效性会大大影响其有效性。有机修正。

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