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    • 41. 发明专利
    • Method for producing seaweed-containing fertilizer and seaweed-containing fertilizer obtained by the production method
    • 生产方法生产含有含硫肥料和含海藻肥料的方法
    • JP2013028504A
    • 2013-02-07
    • JP2011166151
    • 2011-07-29
    • Kurosawa:Kk有限会社クロサワ
    • KUROSAWA FUMIO
    • C05F15/00C05F5/00C05F11/00
    • Y02A40/209
    • PROBLEM TO BE SOLVED: To provide a fertilizer ease, safe and excellent in efficacy, also contributing to reuse of wastes by employing natural materials such as rice bran, seaweeds or the like as main components of the fertilizer.SOLUTION: This method for producing a seaweed-containing fertilizer 10 comprises: a mixing step of stirring and mixing rice bran 1, molasses 2, seaweeds 3 and fermentation bacteria 4 as materials to be mixed; and a drying step of piling and drying the mixture obtained in the mixing process. At this time, the method may further go through a solidification step of forming the mixture obtained in the mixing process into a pellet form. Moreover it is possible in the mixing process that at least one selected from neem oil 5a, stevia powder 5b, wood chips 5c, wood flour 5d and charcoal powder 5e is added to the mixture as an additive 5.
    • 要解决的问题:提供肥料容易,安全和有效的优点,还通过采用天然材料如米糠,海藻等作为肥料的主要成分,有助于废物的再利用。 解决方案:这种含海草肥料10的方法包括:将米糠1,糖蜜2,海藻3和发酵菌4作为混合物料搅拌混合的混合步骤; 以及对在混合过程中获得的混合物进行打桩和干燥的干燥步骤。 此时,该方法可以进一步通过将在混合过程中获得的混合物形成为颗粒形式的固化步骤。 此外,在混合过程中,作为添加剂5可以将从楝树油5a,甜叶菊粉末5b,木屑5c,木粉5d和木炭粉末5e中选出的至少一种添加到混合物中。版权所有(C) )2013,JPO&INPIT
    • 46. 发明专利
    • Organic fertilizer
    • 有机肥料
    • JP2012062214A
    • 2012-03-29
    • JP2010207306
    • 2010-09-15
    • Taiyou-Nousan Inc太陽農産株式会社
    • KIMURA KAZUO
    • C05F17/00B09B3/00C02F11/02C05F3/00C05F9/00C05F11/00
    • Y02A40/205Y02A40/214Y02W30/43
    • PROBLEM TO BE SOLVED: To provide a method for producing an organic fertilizer which is sufficiently matured and exhibits pest repellent effect.SOLUTION: The organic fertilizer is produced by adding heat-resistant bacteria capable of surviving even at a high temperature of 80-90°C to an organic resource and heating the organic resource to a high temperature of 80-90°C by the heat-generation action of the heat-resistant bacteria. In particular, it is preferable that a gas generated from the heated organic resource and containing moisture is collected and separated into a liquid component and a gaseous component, then the gaseous component may be ionized into negative ions, and the negative ions are returned to the organic resource.
    • 待解决的问题:提供一种充分熟化并具有驱虫效果的有机肥料的制造方法。 解决方案:有机肥料通过加入能够在80-90℃的高温下能够存活的耐热细菌与有机物质一起生产,并将有机物质加热至80-90℃的高温,由 耐热细菌的发热作用。 特别地,优选从加热的有机物质产生并含有水分的气体被收集并分离成液体组分和气体组分,然后气态组分可以被离子化为负离子,并且负离子返回到 有机资源。 版权所有(C)2012,JPO&INPIT
    • 49. 发明专利
    • Organic material fermentation treatment apparatus
    • 有机材料发酵处理设备
    • JP2012020224A
    • 2012-02-02
    • JP2010159538
    • 2010-07-14
    • Francis Japan:KkYasuhiro Sugimoto安寛 杉本株式会社フランシスジャパン
    • SUGIMOTO YASUHIROTAJIMA DAISUKEMURANAKA CHIEKO
    • B09B3/00C02F11/02C05F3/06C05F11/00C05F17/02
    • Y02A40/208Y02W30/43
    • PROBLEM TO BE SOLVED: To provide an organic material fermentation treatment apparatus, capable of intensifying microbial activity with no need of manual cutting and stirring operations, and thus reducing the production period of ripe compost.SOLUTION: An air outlet opening 5 is provided in a lower portion of a side wall 3 of a treatment tank 1 for depositing and fermenting an organic material 6, and a suction opening 8 is provided on the upper side of the treatment tank 1. The suction opening 8 is connected to a suction means 10 through a suction conduit 9. Air is introduced into the treatment tank 1 through the air outlet opening 5 by a sucking force acting on the suction opening 8 by the suction means 10, passed from the lower side of the organic material 6 deposited in the treatment tank 1 to the upper side, and discharged from the suction opening 8 through the suction conduit 9.
    • 要解决的问题:提供一种能够在不需要手动切割和搅拌操作的情况下增强微生物活性并因此降低成熟堆肥生产周期的有机材料发酵处理装置。 解决方案:在处理槽1的侧壁3的下部设有出气口5,用于沉积和发酵有机材料6,并且在处理槽的上侧设有吸入口8 吸入口8通过吸引管道9与抽吸装置10连接。空气通过抽吸装置10作用在吸入口8上的吸力通过出气口5引入处理槽1中,通过 从沉积在处理槽1中的有机材料6的下侧到上侧,并通过吸引管9从吸入口8排出。(C)2012,JPO&INPIT