不同有机肥和化肥对稻田水稻生长和土壤环境的影响

Takamitsu Kai, Motoki Kumano, M. Tamaki
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引用次数: 8

摘要

目前,日本大部分稻田都使用化肥和合成化学农药种植,因为化肥可以提供植物生长所需的营养。然而,人们对化肥和农药生产的环境影响感到担忧,例如过量施肥导致土壤中肥料成分流失而导致土壤微生物减少和水污染。在本研究中,我们研究了施用有机肥和化肥对稻田植物生长的影响,以及它们对土壤化学和生物特性的影响。施用有机肥的水稻土粗米和糙米穗数、粗米和糙米千粒重、成熟粒率均显著高于施用化肥的水稻土。此外,施用有机肥的稻田土壤总碳(TC)含量和pH值显著高于施用有机肥的稻田。此外,施用有机肥的稻田土壤细菌生物量、氮循环活性和磷循环活性均高于施用化肥的稻田,但差异不显著。在本研究中,施用有机肥和化肥对植物生长的影响存在差异。结果表明,有机肥减药管理增加了土壤细菌生物量,激活了氮素循环活性等物质循环。
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A Study on Rice Growth and Soil Environments in Paddy Fields Using Different Organic and Chemical Fertilizers
Currently, the majority of paddy fields in Japan are grown using chemical fertilizers and synthetic chemical pesticides, since chemical fertilizers can provide the nutrients necessary for plant growth. However, there are concerns regarding the environmental impact of chemical fertilizer and pesticides production, such as reduction of soil microorganisms and water pollution due to the runoff of fertilizer components from the soil caused by excessive fertilizer application. In this study, we investigated the effects of the application of organic and chemical fertilizers on the plant growth of paddy fields, in addition to their effects on the chemical and biological properties of the soil. The panicle numbers of rough and brown rice, the 1000-grain weight of the rough and brown rice, and the percentages of ripened grains were significantly higher in paddy soils grown with organic fertilizers than in those grown with chemical fertilizers. In addition, the total carbon (TC) contents and pH values were significantly higher in the soils of paddy fields grown with organic fertilizers. Furthermore, the soils of paddy fields grown with organic fertilizers exhibited greater bacterial biomasses, N circulation activity, and P circulation activity than the soils of paddy fields grown using chemical fertilizers, although the differences were not significant. In this study, the difference in plant growth was appeared in fertilizer application such as organic and chemical fertilizers. It was indicated that the organic fertilizer and pesticide reduction management increased the soil bacterial biomass and activated the material cycle such as N circulation activity.
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