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首页> 外文期刊>Acta Horticulturae >Is the heavy supply of manure adequate to stabilize soil organic matter in greenhouse vegetable planting system?
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Is the heavy supply of manure adequate to stabilize soil organic matter in greenhouse vegetable planting system?

机译:大量的肥料供应是否足以稳定温室蔬菜种植系统中的土壤有机质?

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Organic manure is one of the most important factors to maintain soil fertility and achieve high yield in greenhouse vegetable production. Effects of organic manure, mineral nitrogen application and wheat straw incorporation on C cycling was investigated based on a six-year greenhouse tomato experiment in Shandong Province, northern China. In contrast to the amount of 0.14 t C ha-1 a-1 contributed by root residue, chicken manure, with 3.80 t C ha-1 a-1, was the dominant C supplement. Without any manure application, soil organic carbon and soil non-labile carbon fraction significantly decreased after 6 years of intensive tomato production. High chicken manure applied rates ranging from 13 to 20 t ha-1 a-1 only could maintain SOC content at their initial levels in the greenhouse. Based on the organic manure application, little effect of different mineral N application rate on SOC content was observed. Manure and straw incorporation significantly enhanced soil respiration rate, especially for straw incorporation, which led to higher negative net ecosystem productivity. Meanwhile no significant increase of SOC content was observed with manure and straw incorporation. High organic carbon decomposition rate due to year-round high temperature and moisture and excessive manure with low C/N ratio might be the dominant reason for the low accumulated rate of soil organic matter in this greenhouse tomato planting system. How to improve the soil organic matter further will be a great challenge in greenhouse vegetable production.
机译:有机肥料是在温室蔬菜生产中保持土壤肥力和实现高产的最重要因素之一。在中国北方山东省的一项为期六年的温室番茄试验的基础上,研究了有机肥,矿质氮的施用和麦秸的掺入对碳循环的影响。相比之下,由鸡粪根部残渣贡献的0.14 t C ha -1 a -1 的量为3.80 t C ha -1 a -1 是主要的C补充。在不大量施肥的情况下,经过密集的番茄生产6年,土壤有机碳和非活性碳含量显着下降。高鸡粪施用量在13至20 t ha -1 a -1 范围内只能使温室中的SOC含量保持在初始水平。基于有机肥的施用,观察到不同无机氮肥施用量对SOC含量的影响很小。粪肥和秸秆还田显着提高了土壤呼吸速率,尤其是秸秆还田,这导致更高的负净生态系统生产力。同时,粪肥和秸秆还田并没有观察到SOC含量的显着增加。全年高温高湿导致的高有机碳分解率和低C / N比的过量粪肥可能是该温室番茄种植系统中土壤有机质累积速率低的主要原因。如何进一步改善土壤有机质将是温室蔬菜生产中的巨大挑战。

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