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首页> 外文期刊>Sustainable Agriculture Research >Soil Organic Carbon and Nitrogen Decomposition in Fecal Manure of Cattle Fed Browse/Maize Silages
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Soil Organic Carbon and Nitrogen Decomposition in Fecal Manure of Cattle Fed Browse/Maize Silages

机译:饲喂浏览/玉米青贮饲料粪便中土壤有机碳和氮的分解

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Soil organic carbon (C) and nitrogen (N) decomposition in fecal manure of cattle fed browses of Calliandra ( Calliandra calothyrsus ), Gliricidia ( Gliricidia sepium ) and Leucaena ( Leucaena leucocephala ) browse/maize silage mixtures and maize ( Zea mays ) silage alone when applied to the soil were investigated in a pot experiment in comparison to the corresponding silages fed. Maize silage alone had the lowest N and a larger C: N ratio, making it a poor quality compost when applied to the soil, but compared to the browse/maize silage mixtures it had the highest level of soluble N as non-protein nitrogen (NPN) which makes much of its N available for soil microbial decomposition of its organic C. Calliandra browse/maize silage mixture had the highest level of fiber-bound N (ADFN), which reduces N availability for soil microbial decomposition of its organic C in spite of its high N content and a narrower C: N ratio. Fecal manure from maize silage alone had a lower level of N and a wider C: N ratio than fecal manure from the other silages fed which would affect its decomposition in the soil, but it had the lowest level of ADFN and much of its N is made available for soil microbial decomposition of its organic C. Soil samples after 12 weeks of the experiment showed that Calliandra browse/maize silage mixture maintained the highest level of C in the soil, while maize silage alone maintained the lowest level. Also soils treated with fecal manure from the other browse/maize silage mixtures maintained higher levels of C than fecal manure from maize silage alone. Organic C levels were lowest at 8 weeks of the experiment for all treatments and rose to the original levels at 12 weeks which could have been as a result of biotic and hydrologic factors coupled with soil aggregation. Decomposition of organic N followed a similar trend as organic C. The two elements are linked in both plant inputs in the soil and in the eventual soil humic substances. The soils treated with browse/maize silage mixtures maintained C: N ratios that were similar to that of the control soil and higher than those of the fecal manure treatments. Thus, in spite of the added silage materials to the soil, rapid decomposition of organic C could not occur to reflect benefits of adding the silage materials to the soil. Thus, fecal manure, particularly from feeding animals on browse/forage diets is more beneficial in the soil as it would decompose more readily releasing the plant nutrients they contain.
机译:饲喂Calliandra(Calliandra calothyrsus),Gliricidia(Gliricidia sepium)和Leucaena(Leucaena leucocephala)的浏览粪便的牛粪便中的土壤有机碳(C)和氮(N)分解浏览/玉米青贮混合物和玉米(Zea mays)青贮饲料与盆栽的青贮饲料相比,在盆栽实验中研究了施用到土壤上的肥料。单独的玉米青贮饲料具有最低的N和较大的C:N比,使其在土壤上的堆肥质量较差,但与浏览/玉米青贮饲料混合物相比,其可溶性N含量最高,为非蛋白质氮( NPN),使得其大部分氮可用于有机C的土壤微生物分解。Calliandra浏览/玉米青贮混合物的纤维结合氮(ADFN)含量最高,这降低了土壤中有机C的土壤微生物分解氮的利用率。尽管N含量高,而C:N比却窄。与其他饲喂的青贮粪肥相比,仅玉米青贮的粪便粪肥具有较低的氮含量和较宽的C:N比,这会影响其在土壤中的分解,但其ADFN含量最低,其大部分氮为可用于土壤中有机碳的微生物分解。实验12周后的土壤样品显示,Calliandra浏览/玉米青贮饲料混合物保持土壤中的最高C,而仅玉米青贮饲料保持最低。同样,用其他浏览/玉米青贮饲料混合物中的粪便处理过的土壤比单独使用玉米青贮饲料的粪便中的C含量更高。所有处理的有机碳水平在实验的第8周最低,而在第12周上升到原始水平,这可能是由于生物和水文因素以及土壤聚集的结果。有机氮的分解与有机碳的分解趋势相似。这两种元素在土壤中的植物输入以及最终的土壤腐殖质中都有联系。用浏览/玉米青贮混合物处理的土壤保持的C:N比与对照土壤相似,但比粪便处理高。因此,尽管向土壤中添加了青贮饲料材料,但仍未发生有机碳的快速分解,以反映出向土壤中添加青贮饲料材料的益处。因此,粪便粪肥,特别是通过浏览/饲喂饮食喂养动物粪便,在土壤中更有利,因为粪便粪便会更容易分解,释放出它们所含的植物养分。

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