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    • 1. 发明专利
    • Anaerobic treatment method and anaerobic treatment apparatus
    • 厌氧处理方法和厌氧处理装置
    • JP2014133211A
    • 2014-07-24
    • JP2013002822
    • 2013-01-10
    • Swing Corp水ing株式会社
    • KAMAIKE KAZUMASAHONMA YASUHIROTSUKAMOTO YUJI
    • C02F3/28B01D21/00B01D21/01B01D21/02C02F3/00
    • Y02E50/343
    • PROBLEM TO BE SOLVED: To propose, by targeting an anaerobic treatment method of an organic effluent including C1 compounds, a novel anaerobic treatment method of an organic effluent capable of sustaining a prescribed volume of sludge within a methane fermentation tank.SOLUTION: The proposed anaerobic treatment method of an organic effluent comprises: a methane fermentation step of executing the methane fermentation of an organic effluent and dissociating the generated biogas; a sludge separation step of adding, to the methane-fermented treated water discharged from the methane fermentation step, metal cations bearing a divalent or higher valence and then separating and recovering the sludge and treated water by separating the methane-fermented treated water to which the metal cations have been added; and a sludge return step of returning, to the methane fermentation step, some or all of the sludge separated and recovered at the sludge separation step.
    • 要解决的问题:通过针对含有C1化合物的有机流出物的厌氧处理方法,提出一种能够在甲烷发酵罐内维持规定体积的污泥的有机污水的新型厌氧处理方法。解决方案:提出的厌氧 有机流出物的处理方法包括:甲烷发酵步骤,执行有机流出物的甲烷发酵并解离生成的沼气; 向从甲烷发酵工序排出的甲烷发酵处理水中添加具有二价以上价态的金属阳离子,然后通过将甲烷发酵处理水分离并回收污泥和处理水的污泥分离步骤 添加金属阳离子; 以及向所述甲烷发酵工序返回在所述污泥分离工序中分离回收的部分或全部所述污泥的污泥返回工序。
    • 5. 发明专利
    • Method of treating water containing peroxide and treating apparatus therefor
    • 处理含水过氧化氢的方法及其处理装置
    • JP2012245486A
    • 2012-12-13
    • JP2011120751
    • 2011-05-30
    • Swing Corp水ing株式会社
    • OBA MASAZUMITSUKAMOTO YUJIYOSHIDA MAINA
    • C02F1/58
    • PROBLEM TO BE SOLVED: To effectively allow bubbles generated in a first reactor to be released from the system to the outside in a treating apparatus allowing treated water to be circulated downwardly through a second reactor where a peroxide decomposition material is filled after allowing the treated water to be circulated upwardly through a first reactor where the peroxide decomposition material is filled.SOLUTION: The bubbles generated in the first reactor can be effectively released from the system to the outside by allowing the upper part of the first reactor to be an opening enlarged toward the upward direction.
    • 要解决的问题:为了有效地允许在处理设备中将第一反应器中产生的气泡从系统释放到外部,允许经处理的水通过允许过氧化物分解材料填充的第二反应器向下循环 经处理的水向上循环通过填充过氧化物分解物质的第一反应器。 解决方案:通过允许第一反应器的上部为向上方向扩大的开口,可以将第一反应器中产生的气泡从系统有效地释放到外部。 版权所有(C)2013,JPO&INPIT
    • 7. 发明专利
    • Anaerobic treatment method and anaerobic treatment apparatus of organic effluent
    • 有机溶剂的厌氧处理方法和厌氧处理装置
    • JP2014133210A
    • 2014-07-24
    • JP2013002821
    • 2013-01-10
    • Swing Corp水ing株式会社
    • KAMAIKE KAZUMASAHONMA YASUHIROTSUKAMOTO YUJI
    • C02F3/28
    • Y02E50/343
    • PROBLEM TO BE SOLVED: To provide, by targeting an anaerobic treatment method of an organic effluent including C1 compounds, a novel anaerobic treatment method of an organic effluent capable of adjusting the pH inside a methane fermentation tank within a pH range suitable for methane fermentation without requiring the enlargement of the reaction tank volume.SOLUTION: The proposed anaerobic treatment method of an organic effluent comprises: an agitated methane fermentation step of executing the methane fermentation of an organic effluent within a mixing tank in an agitated state; a finish methane fermentation step of executing, within a fermentation tank of a plug flow method in an agitation-free state, the methane fermentation of a sludge-containing agitated methane-fermented treated water discharged from the agitated methane fermentation step; a sludge separation step of separating and recovering the sludge and methane-fermented treated water from the sludge-containing finish-methane-fermented treated water discharged from the finish methane fermentation step; and a sludge return step of returning, to the agitated methane fermentation step or finish methane fermentation step, some or all of the sludge separated and recovered at the sludge separation step.
    • 要解决的问题:为了通过靶向含有C1化合物的有机流出液的厌氧处理方法,提供一种能够在适于甲烷发酵的pH范围内调节甲烷发酵罐内的pH的有机污水的新型厌氧处理方法, 要求扩大反应槽体积。解决方案:提出的有机流出物的厌氧处理方法包括:搅拌甲烷发酵步骤,在搅拌状态下进行混合罐内有机流出物的甲烷发酵; 一种完成甲烷发酵步骤,在无搅拌状态的活塞式流动方法的发酵罐内执行从搅拌甲烷发酵步骤排出的含污泥的搅拌甲烷发酵处理水的甲烷发酵; 从完成甲烷发酵步骤排出的含污泥的甲烷发酵处理水中分离回收污泥和甲烷发酵处理水的污泥分离步骤; 和返回到搅拌的甲烷发酵步骤或完成甲烷发酵步骤的污泥返回步骤,在污泥分离步骤分离和回收的部分或全部污泥。
    • 8. 发明专利
    • Device for anaerobic treatment of organic waste water
    • 有机废水厌氧处理装置
    • JP2013059729A
    • 2013-04-04
    • JP2011200138
    • 2011-09-14
    • Swing Corp水ing株式会社Nippon Paper Industries Co Ltd日本製紙株式会社
    • KAMAIKE KAZUMASAHONMA YASUHIROTSUKAMOTO YUJITANAKA TOSHIHIROAIZAWA MITSUYOSHIIIJIMA YUKOONODERA ISAO
    • C02F3/28
    • Y02E50/343
    • PROBLEM TO BE SOLVED: To provide a stable and high performance device for methane fermentation treatment with an organic waste water containing alcohol as a major component and having a small amount of SS to all organic compounds.SOLUTION: A device for anaerobic treatment of organic waste water treats an organic waste water, containing at least 60% of alcohol component on CODcr basis for all CODcr in the waste water and less than 1% of SS, with a tank for adjustment of waste water and one tank type methane fermentation tank. The device includes: a measurement device for measuring water quality such as values of pH of input water and output water of the methane fermentation tank; a measurement device for measuring the concentration of CO; a control device for controlling the amount of an adjusting agent for M-alkali degree based on the values from these measurement devices; and an adding device which adds the adjustment agent for M-alkali degree based on the signal from the control device. An upflow anaerobic sludge bed or an expanded granular sludge bed is recommended to be used in the methane fermentation tank.
    • 要解决的问题:提供一种用于以含有醇为主要成分并且对所有有机化合物具有少量SS的有机废水进行甲烷发酵处理的稳定和高性能的装置。

      解决方案:用于厌氧处理有机废水的装置处理有机废水,其中CODcr含量至少为60%,CODcr为废水中的所有CODcr,少于SS的1% 调整废水和一个罐式甲烷发酵罐。 该装置包括:用于测量水质的测量装置,例如甲烷发酵罐的输入水的pH值和输出水的值; 用于测量CO 2 的浓度的测量装置; 控制装置,用于根据来自这些测量装置的值来控制M碱度调节剂的量; 以及添加装置,其基于来自控制装置的信号添加M碱度调节剂。 建议在甲烷发酵罐中使用上流厌氧污泥床或膨胀颗粒污泥床。 版权所有(C)2013,JPO&INPIT

    • 10. 发明专利
    • Method and apparatus for treating peracetic acid-containing wastewater
    • 用于处理含PERI含酸废水的方法和装置
    • JP2013233506A
    • 2013-11-21
    • JP2012107288
    • 2012-05-09
    • Swing Corp水ing株式会社
    • HONMA YASUHIROOBA MASAZUMIKAMAIKE KAZUMASATSUKAMOTO YUJIAKIYAMA TORU
    • C02F3/28C02F1/58
    • Y02E50/343
    • PROBLEM TO BE SOLVED: To provide a method which enables a stable methane fermentation treatment even when a target substrate is nearly an acetic acid single substrate, and further enables use of an active carbon as a methane bacterium-holding carrier by catching the active carbon flowing out of a peroxide decomposition process at the decomposing reaction of at least a part of hydrogen peroxide and peracetic acid in an anaerobic filter bed or fluidized bed.SOLUTION: A method for treating peracetic acid-containing wastewater comprises: a peroxide decomposition step of decomposing at least a part of hydrogen peroxide and peracetic acid in the peracetic acid-containing wastewater by bringing the wastewater into contact with the active carbon to discharge a decomposition-treated water including acetic acid; and an anaerobic treatment step of performing a methane fermentation treatment of acetic acid contained in the decomposition-treated water by treating it using an anaerobic filter bed or fluidized bed filled with the active carbon to thereby discharge an anaerobic treatment water.
    • 要解决的问题:为了提供即使在目标基板几乎是乙酸单基板时能够进行稳定的甲烷发酵处理的方法,并且还可以通过捕获活性炭流动来使用活性炭作为甲烷细菌保持载体 在厌氧过滤床或流化床中的至少一部分过氧化氢和过乙酸的分解反应中的过氧化物分解过程。解决方案:一种处理含过氧乙酸的废水的方法,包括:过氧化物分解步骤,在 通过使废水与活性炭接触以排出包含乙酸的分解处理水,使含过乙酸的废水中的过氧化氢和过乙酸的至少一部分; 以及厌氧处理步骤,通过使用填充有活性炭的厌氧过滤床或流化床对其进行甲醛发酵处理,分解处理水中所含的乙酸进行甲烷发酵处理,从而排出厌氧处理水。