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Effects of the Application of Digestates from Wet and Dry Anaerobic Fermentation to Japanese Paddy and Upland Soils on Short-Term Nitrification

机译:稻田和旱地土壤干湿厌氧发酵消化液对短期硝化的影响

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摘要

Wet and dry anaerobic fermentation processes are operated for biogas production from organic matter, resulting in wet and dry digestates as by-products, respectively. The application of these digestates to soil as fertilizer has increased in recent years. Therefore, we herein compared the effects of applying wet digestates (pH 8.2, C/N ratio 4.5), dry digestates (pH 8.8, C/N ratio 23.4), and a chemical fertilizer to Japanese paddy and upland soils on short-term nitrification under laboratory aerobic conditions. Chloroform-labile C, an indicator of microbial biomass, was only minimally affected by these applications, indicating that a small amount of labile N was immobilized by microbes. All applications led to rapid increases in NO3-N contents in both soils, and ammonia-oxidizing bacteria, but not archaea may play a critical role in net nitrification in the amended soils. The net nitrification rates for both soils were the highest after the application of dry digestates, followed by wet digestates and then the chemical fertilizer in order of decreasing soil pH. These results suggest that the immediate effects of applying digestates, especially dry digestates with the highest pH, on nitrate leaching need to be considered when digestates are used as alternative fertilizers.
机译:进行湿式和干式厌氧发酵工艺以从有机物生产沼气,分别产生湿式和干式消化副产品。近年来,随着肥料的使用,这些消化物在土壤中的应用有所增加。因此,我们在此比较了向日本稻田和旱地土壤施用湿消化物(pH 8.2,C / N比4.5),干消化物(pH 8.8,C / N比23.4)和化肥对短期硝化的影响。在实验室有氧条件下。这些应用对氯仿不稳定的C(微生物生物量的指标)的影响很小,表明微生物固定了少量的不稳定N。所有的应用都导致土壤中NO3-N含量的快速增加以及氨氧化细菌,但古细菌可能不会在改良土壤的净硝化中发挥关键作用。施用干消化物后,两种土壤的净硝化率最高,其次是湿消化物,然后是化肥,以降低土壤pH值的顺序。这些结果表明,当将消化液用作替代肥料时,应考虑施用消化液(特别是具有最高pH值的干消化液)对硝酸盐浸出的直接影响。

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