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首页> 外文期刊>日本土壤肥料学雑誌 >Estimation of farmyard manure application levels in nitrogen base by using the 2000 census of agriculture and forestry.
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Estimation of farmyard manure application levels in nitrogen base by using the 2000 census of agriculture and forestry.

机译:2000年农业与林业普查估算氮素基础肥大施肥水平。

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摘要

A new method to evaluate farming households' behaviours concerning farmyard manure application to fields and to estimate the distribution diversity of manure application levels in nitrogen base per unit area for agricultural land in Kyushu and Okinawa regions (8 local governments), Japan, was developed by using the personal questionnaire data of the 2000 Census of Agriculture and Forestry (Permission for Personal Data Use, No. Sohtohshin-333, dated on 6 September 2002). Livestock farming households were hypothesized to treat excess production of livestock manure after standard application to their fields as follows. The livestock farming households, who used their own or common treatment facilities and who exchanged raw manure for litter, would move their excess production to crop farming households, who applied manure to their fields at standard application levels. The livestock farming households, who did dig-and-throw or field-heaping, would apply all their excess products to one field. Other livestock farming households would equally apply their excess products to their grasslands. This simulation gave several manure application levels in nitrogen base; Standard (210 kg N ha-1 for grassland, 140 kg N ha-1 for upland, 70 kg N ha-1 for paddy field), overplus to grassland and extreme excess to one dig-and-throw field. The area ratios of fields with overplus application (more than 400 kg N ha-1) to total agricultural land were estimated as follows; 6.7% (Fukuoka Prefecture), 8.0% (Saga Prefecture), 20.8% (Nagasaki Prefecture), 18.2% (Kumamoto Prefecture), 16.3% (Ohita Prefecture), 31.1% (Miyazaki Prefecture), 23.5% (Kagoshima Prefecture), and 18.6% (Okinawa Prefecture). The volume ratios of the applied overplus farmyard manure to total production in nitrogen base were estimated as follows; 55.9% (Fukuoka Prefecture), 73.2% (Saga Prefecture), 78.1% (Nagasaki Prefecture), 72.5% (Kumamoto Prefecture), 65.0% (Ohita Prefecture), 83.0% (Miyazaki Prefecture), 74.4% (Kagoshima Prefecture), and 71.5% (Okinawa Prefecture).
机译:一种新的方法,评估农户对野地粪便申请的农户行为和估算九州和冲绳地区农业土地(8个地方政府8当地政府)农业用地施肥施肥水平分布多样性使用2000年农业和林业普查的个人问卷数据(个人数据使用许可,No.Sohtohshin-333,于2002年9月6日日期)。畜牧业的养殖家庭被假设,以治疗标准应用后的牲畜粪便,如下所示。使用自己或常见的治疗设施以及垃圾交换原始粪便的牲畜养殖家庭将使他们的超额产量转移到农作养殖家庭,他在标准应用水平下施加粪便。挖掘和抛弃或堆积的牲畜养殖家庭会将所有多余产品应用于一个领域。其他牲畜养殖家庭将同等地将其超额产品应用于草原。该模拟在氮气基础上发出了几个粪肥施肥水平;标准(210公斤HA-1用于草地,140公斤HA-1用于高地,70 kg N HA-1用于稻田),过度为草地,略微过量到一个挖掘和投掷领域。估计溢出应用(超过400公斤NA-1)的领域的面积比估计如下; 6.7%(福冈县),8.0%(佐贺县),20.8%(长崎县),18.2%(熊本县),16.3%(Ohita县),31.1%(宫崎县),23.5%(鹿儿岛县), 18.6%(冲绳县)。估计氮气基础总产量施用过剩农场肥料的体积比如下; 55.9%(福冈县),73.2%(佐贺县),78.1%(长崎县),72.5%(熊本县),65.0%(OHITA县),83.0%(Miyazaki Egrecturementure),74.4%(鹿儿岛县),和71.5%(冲绳县)。

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