首页> 外文会议>International Plant Nutrition Colloquium; 2005; Beijing >The soil N-turnover after application of easily iegradable organic fertilizers does not follow the classical pattern
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The soil N-turnover after application of easily iegradable organic fertilizers does not follow the classical pattern

机译:施用易降解有机肥后土壤氮素转化不符合经典规律

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In spite of other influencing factors, the turnover of recalcitrant or moderately degradable organic fertilizers in soil is usually described as a function of the soil temperature. In our investigations, we focussed on those materials containing considerable fractions of easily degradable water soluble or structural organic matter, each of which was characterised by a relatively low C/N-ratio. Typical materials were fresh or dried green manure plants, especially legumes, and other plant derived fertilizers such as different leguminous seed meals and castor cake meal. Laboratory incubation studies as well as field experiments were carried out. It could be shown that the turnover of these materials differed considerably from the classical concept of temperature dependency mentioned above. Net N-mineralisation after soil incorporation of these materials was not or only very little temperature sensitive. Strong N-priming effects could be detected for some of the materials even at low temperatures, especially if considering soil microbial biomass N in addition to soil mineral N. It was concluded that low temperatures induce a decrease of the bioavailability of C-rich polymers (e.g. cellulose) and a preferential microbial utilisation of N-rich low molecular substances.
机译:尽管有其他影响因素,但顽固性或中等降解性有机肥在土壤中的转化通常被描述为土壤温度的函数。在我们的研究中,我们集中于那些包含大量易降解的水溶性或结构性有机物的材料,每种材料的特征在于相对较低的C / N比。典型的材料是新鲜或干燥的绿肥植物,尤其是豆类,以及其他植物衍生的肥料,例如不同的豆科种子粉和蓖麻饼粉。进行了实验室孵化研究以及现场实验。可以证明,这些材料的周转率与上述经典的温度依赖性概念有很大不同。掺入这些物质的土壤中的净氮矿化对温度不敏感或仅对温度不敏感。即使在低温下,对于某些材料也可以检测到强大的N引发效应,尤其是考虑到除土壤矿物质N之外还包括土壤微生物生物量N的结论。结论是,低温会导致富含C的聚合物的生物利用度降低( (例如纤维素)和富含N的低分子物质的优先微生物利用。

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