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    • 1. 发明专利
    • Solid-liquid separator and solid-liquid separation method by precoat rotary drum
    • 固体旋转分离器和固液分离方法
    • JP2011041923A
    • 2011-03-03
    • JP2009192952
    • 2009-08-24
    • Fujita CorpSatomi Seisakusho:Kk株式会社サトミ製作所株式会社フジタ
    • ISHIKAWA MITSUSACHIKUBOTA HIROSHIYOSHIDA KOJIYAJIMA SATOSHISATOMI HITOSHITOBA KAZUO
    • B01D33/06B01D24/38B01D24/46B01D33/44B01D33/58B01D33/70C02F11/12
    • PROBLEM TO BE SOLVED: To efficiently perform solid-liquid separation by forming a precoat layer PC on a solid-liquid separation drum 2 without using an auxiliary agent or a precoating agent, for the purpose of effectively utilizing recovered suspended solids. SOLUTION: The solid-liquid separator includes: a treatment tank 1 to which water to be treated is supplied; a solid-liquid separation drum 2 which is rotatably arranged around the horizontal axial center, with a part immersed in the water W1 to be treated in this treatment tank 1 and which has an outer peripheral wall composed of a mesh material 21; a recovery means 3 which separates and collects the precoat layer PC comprising suspended solids stuck and accumulated on the outer peripheral face of the mesh material 21; and a draining means 12 for draining filtered water W2 passed into the solid-liquid separation drum 2. The meshes of the mesh material 21 are 150 μm or less, so that the precoat layer PC can be formed without applying a precoating agent preliminarily onto the mesh material 21 in the initial solid-liquid separation process. COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:为了有效利用回收的悬浮固体的目的,为了有效地进行固液分离,通过在固液分离滚筒2上形成预涂层PC而不使用辅助剂或预涂剂。 溶液:固液分离器包括:供给待处理水的处理槽1; 固定液体分离滚筒2,其以水平轴心为中心可旋转地设置,其一部分浸渍在处理槽1中要处理的水W1中,并具有由网状材料21构成的外周壁; 回收装置3,其分离并收集包含悬浮固体的预涂层PC,该悬浮固体粘附并积聚在网状材料21的外周面上; 以及用于排出通过固体分离滚筒2的过滤水W2的排出装置12.网状材料21的网眼为150μm以下,从而可以形成预涂层PC,而不是预先涂布预涂层 初始固 - 液分离过程中的网状材料21。 版权所有(C)2011,JPO&INPIT
    • 2. 发明专利
    • Planting base, and planting method
    • 生产基地和生产方式
    • JP2007259790A
    • 2007-10-11
    • JP2006090891
    • 2006-03-29
    • Fujita Corp株式会社フジタ
    • TAI AKITAKUBOTA HIROSHISHIMADA YOSHIHIKO
    • A01G33/00
    • PROBLEM TO BE SOLVED: To provide an effective technique for reproducing submerged plants including a caulescent kind. SOLUTION: A planting base 100 is formed by wrapping the outside of a base main body 10 of a three-dimensional void structure such as a synthetic fiber mat with a sheet-like member 30. The planting base 100 is structured for instance, in a floating island-like form set with a float. The mud of the bottom of a lake of a reproduced place, containing nutrient 20 of submerged plants 200a is painted and put in the front side of the three-dimensional void structure of the planting base 100 and is dried so as to prevent as much as possible flaking of the nutrient 20. The submerged plants 200a are fixed with pins 40 in a laying condition to the front side of the planting base 100 having the structure and grown to take root so as to reproduce the group of the submerged plants 200a. COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:提供一种有效的技术,用于复制包括caulescent类型的浸没植物。 解决方案:通过将具有片状构件30的合成纤维毡等三维空隙结构的基体主体10的外部包裹而形成种植基100。种植基100例如 ,以浮动的岛屿形式设置浮子。 将含有营养物20的淹没植物200a的再生土地的底部的泥土涂布并放入种植基地100的三维空隙结构的前侧,并被干燥,以防止 营养物20的可能剥落。浸没植物200a以铺设状态的销钉40固定在具有该结构的种植基地100的前侧,并生长成根部,以便再生一组浸没植物200a。 版权所有(C)2008,JPO&INPIT
    • 5. 发明专利
    • Method for regenerating submerged plant, and method for cultivating submerged plant, plant regenerating base, planting base, and floating island to be used for the method
    • 用于再生植物植物的方法,以及用于培养所用植物的植物再生基地,植物基地和浮动岛的方法,用于该方法
    • JP2010124816A
    • 2010-06-10
    • JP2008306715
    • 2008-12-01
    • Fujita Corp株式会社フジタ
    • TAI AKITASHIMADA YOSHIHIKOKUBOTA HIROSHI
    • A01G1/00A01G31/00
    • Y02P60/216
    • PROBLEM TO BE SOLVED: To provide a regeneration technique of a submerged plant community, for improving the efficiency of regeneration of submerged plants. SOLUTION: A method for regenerating submerged plants includes setting a planting base where submerged plants are cultivated, on a water bottom in a regenerative area 300, making a grass height of the cultivated submerged plants extend to a length just below a water surface, for instance, in the case of setting the grass in a water bottom in the regenerative area 300, and after setting, letting roots spread around the planting base 10 to take root, pulling up the set planting base 10 when the submerged plants take root around the planting base 10 or the grass height extends to a prescribed length, and again sinking and setting the pulled planting base 10 in a nonregenerative place of submerged plants. As a result of this, a submerged plant community is regenerated in the regenerative area 300 by relocating the planting base 10. COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:提供淹没植物群落的再生技术,以提高淹没植物的再生效率。 解决方案:一种用于再生浸没植物的方法包括在再生区域300的水底上设置浸没植物的种植基地,使得栽培的浸没植物的草高度延伸到刚好在水面下方的长度 例如在将再生区域300中的水底设置为草坪的情况下,在设定后,使种植基地10周围的根部伸长而扎根,当浸没植物生根时,将组播种植基地10拉起 在种植基地10周围或草地高度延伸到规定的长度,并且再次下沉并将拉拔的种植基地10设置在潜水植物的非再生地点。 因此,通过重新定位种植基地10,再生区300中的淹没植物群落再生。(C)2010年,JPO和INPIT
    • 6. 发明专利
    • Waste pretreatment method
    • 废弃预处理方法
    • JP2009241053A
    • 2009-10-22
    • JP2008225732
    • 2008-09-03
    • Fujita Corp株式会社フジタ
    • KUBOTA HIROSHIYAJIMA SATOSHIYAMADA HIROMISAKO SHINICHIOKAMOTO TARO
    • B09B3/00B09B1/00B09B5/00
    • PROBLEM TO BE SOLVED: To shorten pretreatment period while making use of advantages by sprinkling water-ventilation before carrying out the pretreatment of waste such as incineration ashes and so on. SOLUTION: The pretreatment of waste such as incineration ashes before reclamation is carried out by being divided into a plurality of pretreatment periods. In each pretreatment period, the amount of sprinkling water is reduced sequentially in accordance with the elution condition of salt from the waste. Thus, by reducing the amount of sprinkling water according to the elution amount, water-sprinkling can be carried out efficiently by reducing the total amount of sprinkling water that is needed for the pretreatment. Thereby, compared to the conventional water-sprinkling treatment with uniform water amount, for example, the reduction of elution amount by EC value of salt and so on from the waste is carried out in a short time. COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:在进行废物如焚烧灰等的预处理之前,通过洒水通风来缩短预处理时间。 解决方案:在回收前对废物如焚烧灰烬进行预处理,分为多个预处理阶段。 在每个预处理期间,根据来自废物的盐的洗脱条件,依次减少喷水量。 因此,通过根据洗脱量减少喷水量,可以通过减少预处理所需的洒水总量来有效地进行洒水。 因此,与常规的水分喷洒处理相比,例如,在短时间内,废弃物的盐等的EC值的洗脱量的降低等。 版权所有(C)2010,JPO&INPIT
    • 8. 发明专利
    • Artificial floating island for submerged plant, method for forming submerged plant community by using the same, and method for cleaning water by using the same
    • 用于脱水植物的人造浮体岛,使用该植物群体的方法,以及使用该方法清洁水的方法
    • JP2007029058A
    • 2007-02-08
    • JP2005220722
    • 2005-07-29
    • Fujita Corp株式会社フジタ
    • TAI AKITASHIMADA YOSHIHIKOKUBOTA HIROSHI
    • A01G31/00A01G1/00A01M29/00A01M29/32
    • Y02P60/216
    • PROBLEM TO BE SOLVED: To protect an artificial floating island for a submerged plant from an animal eating the submerged plant as food or the like, and to reconstruct the community of the submerged plants at a set water area. SOLUTION: The artificial floating island 10 for the submerged plant is constituted of a float 40, a frame 31 and the like, and a vegetation base plate 20 is provided in the frame 31 so that the water depth may be changed deeply and shallowly. A net 51 for blocking the fish eating the submerged plant as a food is provided at the submerged part, and a net 52 for preventing the submerged plant from being disturbed by a water bird is provided above the net. The submerged plant is raised at the position with a shallow depth at which the transmittance of the light is good at the initial time when the transparency is bad, and the depth is gradually deepened as the improvement of the transparency according to the growth. The seeds and the like of the submerged plant are dispersed to the water bottom to form the community at the environment, and thereafter the artificial floating island 10 for the submerged plant is removed. COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:为了保护淹没植物的人工浮岛免受作为食物等侵入淹没植物的动物的侵害,并在设定的水域重建淹没植物的群落。 解决方案:用于淹没植物的人造浮岛10由浮子40,框架31等构成,植物基板20设置在框架31中,使得水深可以深度变化, 浅。 在淹没部分设置有用于阻止淹没植物作为食物的网51,网上设有用于防止淹没植物被水禽扰乱的网52。 浸没植物在透明度不佳的初始时,浅层的透光度良好的深度位置上升,随着透视度的增长,深度逐渐变深。 将浸没植物的种子等分散到水底,在环境下形成群体,之后移除淹没植物的人造浮岛10。 版权所有(C)2007,JPO&INPIT
    • 9. 发明专利
    • Method for drying and storing organic material
    • 干燥和储存有机材料的方法
    • JP2010234271A
    • 2010-10-21
    • JP2009085243
    • 2009-03-31
    • Fujita Corp株式会社フジタ
    • KUBOTA HIROSHITAI AKITA
    • B09B5/00C02F11/00C02F11/16F26B23/00
    • Y02E50/30Y02W10/37
    • PROBLEM TO BE SOLVED: To save spacing by performing drying and storing in the same place to utilize and make use of organic materials of a high water content as biomass resources. SOLUTION: The biomass resources may be efficiently obtained in a few sites as drying of the organic materials 2 1 , 2 2 , ... and storing of the dried organic materials 2 1 , 2 2 , ... are performed in the same place by alternately laminating the organic materials 2 1 , 2 2 , ... and impervious sheets 3 1 , 3 2 , ... by laying impervious sheet 3 1 on the organic material 2 1 after laying and drying the organic material 2 1 of proper layer thickness and then repeating a step where the undry organic material 2 2 of proper layer thickness is laid on the impervious sheet 3 1 . COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:通过在相同的地方进行干燥和储存来节省间距,以利用和利用高含水量的有机材料作为生物质资源。 解决方案:在有机材料2 2 2 等的干燥中,可以在少数部位有效地获得生物质资源,并存储干燥 通过交替层叠有机材料2 1 2 1 ,2 2 2 ,...和不透水片3 1 3 2 ,...通过铺设不透水片3 1 将有机材料2 1 放置并干燥适当层厚度的有机材料2 ,然后重复其中不均匀有机材料2 SB / >适当的层厚放在不透水片3上。 版权所有(C)2011,JPO&INPIT
    • 10. 发明专利
    • Organic wastewater treatment method
    • 有机废水处理方法
    • JP2009195783A
    • 2009-09-03
    • JP2008038187
    • 2008-02-20
    • Fujita Corp株式会社フジタ
    • KUBOTA HIROSHIYOSHIDA KOJIYAJIMA SATOSHITANAKA YUKIHIKO
    • C02F3/34B09B3/00C02F11/04
    • Y02E50/343Y02W30/20
    • PROBLEM TO BE SOLVED: To provide a technique capable of treating an organic component or nitrogen component contained in a remaining liquid after methane fermentation at a low cost while enhancing the treatment efficiency of wastewater by methane fermentation by separating and recovering the organic component contained in organic wastewater and effectively putting the organic component to practical use in the recovery of energy and the biological denitrification treatment of wastewater. SOLUTION: An organic solid substance 102 with a particle size of a predetermined value or above is separated from the organic wastewater 101 to be subjected to methane fermentation treatment S3, the organic wastewater separated liquid 103 separated from the organic solid substance 102 is added to a methane fermentation remaining liquid 105 after the methane fermentation treatment S3, and the mixed liquid 106 of the organic wastewater separated liquid 103 and the methane fermentation remaining liquid 105 is subjected to the biological denitrification treatment S5. COPYRIGHT: (C)2009,JPO&INPIT
    • 要解决的问题:提供一种能够以低成本处理甲烷发酵后的剩余液体中所含的有机成分或氮成分的技术,同时通过分离和回收有机成分来提高废水的处理效率 含有有机废水,有效将有机成分实际应用于能源回收和废水生物脱氮处理。 解决方案:将具有预定值以上的有机固体物质102与有机废水101分离以进行甲烷发酵处理S3,与有机固体物质102分离的有机废水分离液103为 在甲烷发酵处理S3之后添加到甲烷发酵残留液体105中,并且将有机废水分离液103和甲烷发酵残液105的混合液106进行生物脱氮处理S5。 版权所有(C)2009,JPO&INPIT