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    • 1. 发明专利
    • Centrifugal separation apparatus
    • 离心分离装置
    • JP2010264419A
    • 2010-11-25
    • JP2009119911
    • 2009-05-18
    • Nishihara Environment Technology Inc株式会社西原環境テクノロジー
    • OTSUKI NOBUHIROITO TAKAHIRONAGAMATSU SHINICHISUGAWARA YOSHIYUKIHAZAMA MASABUMISONODA TETSUYAKIKUKAWA TETSUO
    • C02F11/14B04B1/20B04B15/06C02F11/12
    • C02F11/14B04B1/20B04B11/02B04B2001/2033C02F11/127
    • PROBLEM TO BE SOLVED: To obtain a centrifugal separation apparatus which can stably maintain high solid-liquid separation performance of a centrifugal separator by promptly injecting a diluted inorganic flocculant to separated sludge which is flocculated sludge with advanced solid-liquid separation to cause the separated sludge promptly and efficiently to react with the inorganic flocculant thereby promoting solid-liquid separation and surely attaining lower water content of dewatered sludge and high concentration of concentrated sludge, and also by surely washing an inorganic flocculant injecting system in the centrifugal separator which is not easily washed. SOLUTION: The centrifugal separation apparatus includes the centrifugal separator 1 which is equipped with an outside barrel bowl 3 and an inside barrel screw 4 and which separates the sludge to separated matter and separated liquid. The centrifugal separation apparatus further includes an inorganic flocculant injection pipe 23 which has an inorganic flocculant ejection pore 23a and injects the inorganic flocculant into a sludge supplying chamber 7 disposed at the inside barrel screw 4 and a water supply pipe 26 which is connected with the inorganic flocculant injection pipe 23 and supplies water. COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:为了获得能够通过将稀释的无机絮凝剂迅速地注入到分离的污泥中的稳定地保持离心分离器的高分离性能的离心分离装置,所述污泥是先进的固液分离的絮凝污泥,导致 分离后的污泥迅速有效地与无机絮凝剂反应,促进固液分离,确保脱水污泥含水量更低,浓缩污泥浓度高,并且在离心分离机中清洗无机絮凝剂注入系统, 不容易洗 解决方案:离心分离装置包括配备有外桶筒3和内筒螺杆4的离心分离器1,并且将污泥分离成分离的物质和分离的液体。 离心分离装置还包括无机絮凝剂注入管23,其具有无机絮凝剂喷射孔23a,并将无机絮凝剂注入设置在内筒形螺杆4的污泥供给室7和与无机絮凝剂喷射孔23连接的供水管26。 絮凝剂注入管23并供水。 版权所有(C)2011,JPO&INPIT
    • 2. 发明专利
    • Centrifugal separation apparatus
    • 离心分离装置
    • JP2010264417A
    • 2010-11-25
    • JP2009119899
    • 2009-05-18
    • Nishihara Environment Technology Inc株式会社西原環境テクノロジー
    • SUGAWARA YOSHIYUKIITO TAKAHIROOTSUKI NOBUHIROHAZAMA MASABUMIKIKUKAWA TETSUOINOUE YOICHITANEDA TOKUJI
    • C02F11/14B04B1/20B04B15/06C02F11/12
    • B04B1/20B04B11/02B04B2001/2033C02F1/38C02F1/5236C02F1/56C02F11/14
    • PROBLEM TO BE SOLVED: To obtain a centrifugal separation apparatus which can stably maintain high solid-liquid separation performance of a centrifugal separator by promptly injecting an inorganic flocculant again to separated sludge which is flocculated sludge with advanced solid-liquid separation to cause the separated sludge promptly and efficiently to react with the inorganic flocculant, thereby promoting solid-liquid separation and surely attaining lower water content of dewatered sludge and high concentration of concentrated sludge.
      SOLUTION: In the centrifugal separation apparatus, the centrifugal separator 1 equipped with an outside barrel bowl 3 and an inside barrel screw 4 carries out solid-liquid separation of the sludge to which the inorganic flocculant and a polymer flocculant are supplied to obtain separated matter and separated liquid. The centrifugal separation apparatus includes an inorganic flocculant injection pipe 23 which has an inorganic flocculant ejection pore 23a and injects the inorganic flocculant into a sludge supplying chamber 7 disposed at the inside barrel screw 4.
      COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:为了获得能够通过立即将无机絮凝剂再次注入到具有先进的固液分离的絮凝污泥的分离污泥中,可以稳定地保持离心分离器的高固相分离性能的离心分离装置, 分离后的污泥迅速有效地与无机絮凝剂反应,促进固液分离,确保脱水污泥含水量更低,浓缩污泥浓度高。 解决方案:在离心分离装置中,配备有外桶筒3和内筒螺杆4的离心分离器1进行无机絮凝剂和高分子絮凝剂供给的污泥的固液分离,得到 分离物质和分离液体。 离心分离装置包括无机絮凝剂注入管23,其具有无机絮凝剂喷出孔23a,并将无机絮凝剂注入设置在内筒形螺杆4的污泥供给室7.版权所有(C)2011,JPO&INPIT
    • 6. 发明专利
    • Sewage treatment apparatus
    • 水处理设备
    • JP2006289188A
    • 2006-10-26
    • JP2005110084
    • 2005-04-06
    • Nishihara Environment Technology Inc株式会社西原環境テクノロジー
    • NAWAMURA YOSHIHARUSATO MINORUOSHITA AKIRATANAKA HAGUMU
    • C02F3/30C02F3/08C02F3/28C02F3/34
    • Y02W10/15
    • PROBLEM TO BE SOLVED: To obtain a sewage treatment apparatus which can circulate carriers well throughout a water tank without precipitating them even in a deep water tank. SOLUTION: The sewage treatment apparatus comprises an anaerobic tank 1 accommodating sewage mixed with the carriers 26, an oxygen-free tank 2, and an aerobic tank 3. An agitation shaft 21 having agitation vanes 23, 24, and a driving means 22 for performing low-speed rotation drive of the agitation shaft 21 are installed in the anaerobic tank 1 and the oxygen-free tank 2, and a draft tube 25 is disposed around the agitation vanes 23, 24. A partition plate 27 and an aeration means 28 are disposed in the aerobic tank 3. The water depth of the anaerobic tank 1, oxygen-free tank 2, and aerobic tank 3 is 5-15 m, and the distance between the upper end of the draft tube 25 and a water surface is ≤1/5 times the water depth. COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:为了获得一种污水处理装置,即使在深水箱中也能将载体良好地循环到水箱中而不使其沉淀。 解决方案:污水处理装置包括容纳与载体26,无氧罐2和好氧罐3混合的污水的厌氧池1.具有搅拌叶片23,24的搅拌轴21和驱动装置 用于进行搅拌轴21的低速旋转驱动的传动装置22安装在厌氧池1中,无氧罐2和引流管25设置在搅拌叶片23,24周围。分隔板27和曝气 装置28设置在需氧罐3中。厌氧池1,无氧罐2和需氧罐3的水深为5〜15m,引流管25的上端与水的距离 表面为水深的1/1 / 5倍。 版权所有(C)2007,JPO&INPIT
    • 8. 发明专利
    • Apparatus for quantifying microorganism
    • 用于定量微生物的装置
    • JP2006094761A
    • 2006-04-13
    • JP2004284403
    • 2004-09-29
    • Nishihara Environment Technology Inc株式会社西原環境テクノロジー
    • DOI TETSUYAMINAGAWA HIDEO
    • C12M1/34G01N21/78G01N33/483G01N33/569G01N33/58
    • PROBLEM TO BE SOLVED: To provide an apparatus for quantifying microorganisms, capable of accurately quantifying the target microorganisms, even when a high-sensitive imaging means is not used. SOLUTION: This apparatus for quantifying the microorganisms is equipped with a binarization processing part 5 and a ratio calculating part 6, wherein the binarization processing part 5 binarizes brightness of pixels composing an imaged picture of a specimen into which a DNA probe with a fluorescent mark is mixed and the ratio calculating part 6 calculates a ratio R of a number CH of pixels having brightness of an H (higher than a threshold value) level after binarization by the binarization processing part 5 to a number CL of pixels having brightness of an L (lower than a threshold value) level, so that the target microorganisms contained in the specimen are quantified based on the ratio R which is calculated by the ratio calculating part 6, by referring to a preliminarily defined relation between the ratio of the pixels and an amount of the microorganisms. COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:即使当不使用高灵敏度成像装置时,提供能够精确定量目标微生物的微生物定量装置。 解决方案:这种用于量化微生物的装置装备有二值化处理部分5和比例计算部分6,其中二值化处理部分5将组成成像图像的像素的亮度二值化成一个DNA探针与 荧光标记被混合,比率计算部6计算二值化处理部分5二值化之后的具有H(高于阈值)的亮度的像素数CH的比例R与亮度为 L(低于阈值)水平,使得根据由比率计算部6计算的比率R,通过参照像素的比率之间的预先确定的关系来量化试样中包含的目标微生物 和一定量的微生物。 版权所有(C)2006,JPO&NCIPI
    • 10. 发明专利
    • Low speed stirrer
    • 低速搅拌机
    • JP2005296850A
    • 2005-10-27
    • JP2004118274
    • 2004-04-13
    • Furukawa Co LtdNishihara Environment Technology Inc古河機械金属株式会社株式会社西原環境テクノロジー
    • IMAZEKI ETSUOINABA KATSUHIROSATO MINORUTANAKA HAGUMUNAITO SATOSHI
    • C02F3/08B01F7/16
    • Y02W10/15
    • PROBLEM TO BE SOLVED: To achieve the conservation of energy by reducing the required power of a low speed stirrer and to dispense with a long rotary shaft even in a deep reaction tank to prevent an increase in weight and cost. SOLUTION: A draft tube 7 is provided to the center part of a reaction tank 1 of an activated sludge method so that the lower end is positioned in the vicinity of the base 14 of the reaction tank 1 and a rotary shaft 4 rotated at a low speed is suspended into the draft tube 7 from a drive part 2 installed on the top panel 8 of the reaction tank 1. Lower blades 6 for vertically imparting a flow to the liquid in the draft tube 7 and upper blades 5 for imparting the flow to the liquid in the vicinity of a liquid surface 13 in a centrifugal direction are provided to the rotary shaft 4. COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:为了通过减少低速搅拌器的所需功率来实现能量守恒,并且即使在深反应罐中也可以省略长的旋转轴,以防止重量和成本的增加。 解决方案:将引流管7设置在活性污泥法的反应槽1的中心部分,使得下端位于反应罐1的基部14附近,旋转轴4旋转 低速从安装在反应罐1的顶板8上的驱动部分2悬挂在引流管7中。用于垂直地施加到引流管7中的液体的流动的下部叶片6和用于施加 向离心方向的液面13附近的液体的流动被设置在旋转轴4上。(C)2006,JPO&NCIPI