会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 1. 发明专利
    • Electrodialyzer and electrodialytic method
    • 电催化剂和电化学方法
    • JP2014087750A
    • 2014-05-15
    • JP2012239476
    • 2012-10-30
    • Mitsui Eng & Shipbuild Co Ltd三井造船株式会社San Akuteisu:Kk株式会社サンアクティス
    • HAMAMOTO OSAMUSUGIYAMA YOICHISENO HIROSHIHISAYOSHI YOSHINORISAITO MASAHIROKANAYAMA HIROSUKE
    • B01D61/46A23L5/20B09B5/00B09C1/00C02F11/00
    • Y02A20/134
    • PROBLEM TO BE SOLVED: To provide an electrodialyzer and an electrodialytic method capable of improving desalination efficiency even when a liquid concentrate of poor flowability is treated.SOLUTION: A electrodialyzer and an electrodialytic method include a cylindrical barrier membrane disposed in a body, a flow path disposed along one of the inner peripheral surface and the outer peripheral surface of the cylindrical barrier membrane to distribute treated liquid, a desalinized liquid housing part disposed along a peripheral surface opposite to a peripheral surface in which the flow path of the cylindrical barrier membrane is disposed, and potential application means for forming a potential gradient so as to subject charge particles in the treated liquid to electrophoresis in the desalinated liquid of the desalinated liquid housing part via the barrier membrane. In a barrier membrane section where the flow path contacts with the desalinated liquid housing part via the cylindrical barrier membrane, the retention time T(hr) of the treated liquid and a maximum clearance distance D(mm) of the treated liquid from the membrane surface of the barrier membrane satisfies a condition of D/T≤10.
    • 要解决的问题:提供一种即使处理流动性差的液体浓缩物也能够提高脱盐效率的电渗析器和电渗析方法。溶液:电渗析器和电渗析法包括设置在体内的圆柱形阻挡膜,流路 沿着圆筒形阻挡膜的内周表面和外周表面之一布置以分配经处理的液体;沿着与设置有圆筒形阻挡膜的流动路径的外周表面相对的外周表面设置的脱盐液体容纳部分 以及用于形成电位梯度的潜在施加装置,以便使经处理的液体中的电荷颗粒经由阻隔膜在脱盐液体容纳部分的脱盐液中进行电泳。 在流路与脱盐液体容纳部分经由圆柱形阻挡膜接触的阻隔膜部分中,处理液体的保留时间T(hr)和处理液体与膜表面的最大间隙距离D(mm) 的阻挡膜满足D /T≤10的条件。
    • 3. 发明专利
    • Greenhouse cultivation method
    • 温室养殖方法
    • JP2013094155A
    • 2013-05-20
    • JP2011242908
    • 2011-11-04
    • Mitsui Eng & Shipbuild Co Ltd三井造船株式会社
    • MIYAZAKI YOKOHAMAMOTO OSAMUHISAYOSHI YOSHINORI
    • A01G9/18A01G9/24
    • Y02A40/268
    • PROBLEM TO BE SOLVED: To provide a greenhouse cultivation method which can efficiently use heat energy and carbon dioxide, which are contained in a high temperature exhaust gas containing carbon dioxide in a high concentration, for plants, and can promote the growth of the plants.SOLUTION: The greenhouse cultivation method is characterized by disposing a gas holder 12 in a greenhouse, charging and storing the exhaust gas containing carbon dioxide in a higher concentration than the carbon dioxide concentration of a greenhouse space 1 and having higher temperature than that of air, in the gas holder 12, disposing a heating process for supplying the heat energy in the greenhouse space 1 by the release of heat from the surface of the gas holder 12 from the start of the charging of the exhaust gas to the finish of the charging and further during the storage of the exhaust gas and heating air on the neighborhood of the plant P, disposing a carbon dioxide concentration increasing process for discharging the exhaust gas in the greenhouse space 1 and increasing the concentration of the carbon dioxide in the air on the neighborhood of the plant P with the carbon dioxide contained in the discharged exhaust gas, and starting the charging of the exhaust gas in the heating process and the discharging of the exhaust gas in the carbon dioxide concentration increasing process at different timing.
    • 待解决的问题:提供一种温室栽培方法,其可以有效地使用含有高浓度二氧化碳的高温废气中的热能和二氧化碳,用于植物,并且可以促进植物的生长 植物。 解决方案:温室栽培方法的特征在于将气体保持器12设置在温室中,将含有二氧化碳的废气以比温室空间1的二氧化碳浓度高的浓度进行装载和储存,并且温度高于温室空间1。 的空气,在气体保持器12中,设置用于通过从气体保持器12的表面从排气的开始释放到室内的热量来提供热能的加热过程 进一步在废气的储存和加热空气在工厂P附近进行充填,设置用于排放温室空间1中的废气的二氧化碳浓度增加过程并增加空气中二氧化碳的浓度 在排放废气中含有二氧化碳的植物P附近,开始对加热器中的废气进行充电 g过程和废气在二氧化碳浓度增加过程中的排放。 版权所有(C)2013,JPO&INPIT
    • 6. 发明专利
    • Microbial treatment system
    • 微生物处理系统
    • JP2011212513A
    • 2011-10-27
    • JP2010080390
    • 2010-03-31
    • Mitsui Eng & Shipbuild Co LtdObihiro Univ Of Agriculture & Veterinary Medicine三井造船株式会社国立大学法人帯広畜産大学
    • TAKAHASHI JUNICHIUMETSU KAZUTAKAHAMAMOTO OSAMUHISAYOSHI YOSHINORISAITO MASAHIRONAKAMURA YUKIO
    • C02F3/10C02F3/28
    • Y02E50/343Y02W10/15
    • PROBLEM TO BE SOLVED: To provide a microbial treatment system for efficiently applying anaerobic treatment to organic wastewater containing organic matter with a low content of the suspended substance (SS) to form useful methane gas or the like usable as fuel or the like.SOLUTION: A solution to be treated low in the content of SS is mixed with a conductive carrier permitting the adhesion of methane producing bacteria being an anaerobic microorganism to keep the capacity of the microorganism such as the methane producing bacteria and decomposing the organic matter in the solution to be treated by the microorganism such as the methane producing bacteria to produce useful gas such as methane gas. By this constitution, even if the solution to be treated is a liquid containing the organic matter with a low content of SS, it is subjected to methane fermentation treatment in a fermentation tank, for example, as a suspension mixed with conductive carbon powdery matter permitting the adhesion of the methane producing bacteria being the anaerobic microorganism. As a result, the methane producing bacteria adhere to the conductive carbon powdery matter to decompose the organic matter to thereby produce the methane gas.
    • 要解决的问题:提供一种微生物处理系统,用于对具有低含量的悬浮物质(SS)的含有机物的有机废水进行厌氧处理以形成可用作燃料等的有用的甲烷气体等。微生物处理系统。 待处理SS含量低的溶液与导电载体混合,允许粘附作为厌氧微生物的甲烷生成细菌以保持微生物如产生甲烷的细菌的能力并将溶液中的有机物分解成 由诸如甲烷生成细菌的微生物处理以产生有用的气体,例如甲烷气体。 通过这种结构,即使待处理溶液是含有SS含量低的有机物的液体,也可以在发酵罐中进行甲烷发酵处理,例如作为混合有导电性碳粉末状物质的悬浮液 作为厌氧微生物的甲烷生成菌的粘附。 结果,生成甲烷的细菌粘附到导电性碳粉末物质上以分解有机物质,从而产生甲烷气体。
    • 7. 发明专利
    • Molded salt for feed and method for producing the same
    • 用于饲料的模制盐及其生产方法
    • JP2011205942A
    • 2011-10-20
    • JP2010075996
    • 2010-03-29
    • Mitsui Eng & Shipbuild Co Ltd三井造船株式会社
    • NAKAMURA YUKIOONO YUTAKAHAMAMOTO OSAMUKATO HIROSHINISHIOKA SHUNICHIRO
    • A23K1/00A23K1/16
    • PROBLEM TO BE SOLVED: To provide a molded salt for feed utilizing table salt recovered from food processing residue, having high strength, and inhibited from formation of peroxide; and to provide a method for producing the molded salt for feed.SOLUTION: The molded salt for feed is obtained by: heating a salt composition comprising table salt separated from food processing residue, and crude protein; and compressing and solidifying the heated salt composition. The molded salt for feed contains ≥10 meq/kg of organic oxidation-reduction substance as an oxidation-reduction equivalent weight, and contains 0.1-10 wt.% of the crude protein. The method for producing a molded salt for feed comprises: heating a salt composition to 50-110°C before being charged in a mold, or heating the salt composition to 50-110°C after being charged; thereafter compressing and solidifying the composition under the pressure of 0.1-10 kg/cm(0.01-1 MPa); and molding the solidified composition.
    • 要解决的问题:提供利用食品加工残渣回收的食盐的饲料成型盐,强度高,抑制过氧化物形成; 并提供一种生产用于饲料的模制盐的方法。溶液:用于饲料的模制盐通过以下方法获得:加热包含从食品加工残余物分离的食盐的盐组合物和粗蛋白质; 并压缩和固化加热的盐组合物。 用于饲料的成型盐含有≥10meq/ kg的作为氧化还原当量的有机氧化还原物质,并且含有0.1-10重量%的粗蛋白质。 制备用于饲料的模制盐的方法包括:在将盐组合物加入到模具中之前将盐组合物加热至50-110℃,或者在将盐组合物加入之后将其加热至50-110℃; 然后在0.1-10kg / cm(0.01-1MPa)的压力下压制和固化组合物; 并模塑固化的组合物。
    • 9. 发明专利
    • Bio-desulfurization system
    • 生物脱硫系统
    • JP2011046802A
    • 2011-03-10
    • JP2009195373
    • 2009-08-26
    • Mitsui Eng & Shipbuild Co LtdObihiro Univ Of Agriculture & Veterinary Medicine三井造船株式会社国立大学法人帯広畜産大学
    • HAMAMOTO OSAMUMISAKI TAKUYAAOKI KENJIYAMASHIRO SHIGEKIUMETSU KAZUTAKA
    • C10L3/10C02F1/20C02F1/74
    • Y02E50/343
    • PROBLEM TO BE SOLVED: To provide a bio-desulfurization system capable of enhancing the efficiency of purifying a biogas. SOLUTION: The bio-desulfurization system includes: a bio-desulfurization tank 2 for purifying a biogas by introducing the biogas containing methane gas and a sulfur compound generated in a methane fermentation tank 1 and performing bio-desulfurization by sulfur oxidizing bacteria supported on a filling material; a circulation tank 3 for storing a cleaning solution for cleaning and removing bio-desulfurization products produced in the bio-desulfurization tank 2; a circulation pump 300 for supplying the cleaning solution in the circulation tank 3 to an upper part of the bio-desulfurization tank 2; and a liquid sending pipe 202 for sending the cleaning solution sent by the circulation pump 300 to a cleaning solution spray part for spraying the cleaning solution from an upper part of the filling material. In the bio-desulfurization system, an ammonia removing means for removing ammonia by supplying at least a portion of the digested liquid generated in the methane fermentation tank 1 is provided, and ammonia gas produced by the ammonia removing means is supplied to the circulation tank 3. COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:提供能够提高沼气净化效率的生物脱硫系统。 解决方案:生物脱硫系统包括:生物脱硫罐2,用于通过引入含甲烷气体的沼气和在甲烷发酵罐1中产生的硫化合物来净化沼气,并通过负载的硫氧化细菌进行生物脱硫 在填充材料上; 用于存储用于清洁和除去生物脱硫罐2中生成的生物脱硫产物的清洁溶液的循环罐3; 循环泵300,用于将循环罐3中的清洗液供给到生物脱硫槽2的上部; 以及用于将由循环泵300发送的清洁溶液发送到用于从填充材料的上部喷射清洁溶液的清洁溶液喷射部分的送液管202。 在生物脱硫系统中,设置用于通过供给至少一部分在甲烷发酵罐1中产生的消化液体来除氨的氨除去装置,并且将通过氨除去装置产生的氨气供给至循环罐3 版权所有(C)2011,JPO&INPIT
    • 10. 发明专利
    • Biogas system
    • BIOGAS系统
    • JP2009066558A
    • 2009-04-02
    • JP2007239987
    • 2007-09-14
    • Mitsui Eng & Shipbuild Co Ltd三井造船株式会社
    • HISAYOSHI YOSHINORIMIYAZAKI YOKOHAMAMOTO OSAMU
    • B09B3/00B01D19/00C02F1/20C02F3/34C02F11/04
    • Y02E50/343
    • PROBLEM TO BE SOLVED: To provide a biogas system which can be utilized by returning a digestive fluid after ammonia stripping to a methane fermenter in which a methane producer remains active without giving any oxidant stress to the methane producer.
      SOLUTION: The biogas system comprises: the methane fermentation process 1 in which biomass is introduced into the methane fermenter 10 in which the methane producer is in the active status, and methane-fermented at high temperatures over 50°C; the ammonia stripping process 3 in which the digestive fluid extracted from the methane fermenter 10 is introduced into an ammonia stripper 30 to diffuse ammonia; and the deoxidation process 6 of removing oxygen dissolved in the digestive fluid in which ammonia is diffused. The system is characterized in that at least a part of the digestive fluid deoxidized in the deoxidation process 6 is returned to the methane fermenter 10.
      COPYRIGHT: (C)2009,JPO&INPIT
    • 要解决的问题:提供一种沼气系统,其可以在氨汽提之后将消化液返回到甲烷发酵罐中,其中甲烷发生器保持活性,而不向甲烷生产者施加任何氧化应激。 解决方案:沼气系统包括:甲烷发酵过程1,其中生物质被引入到甲烷发酵罐10中,其中甲烷生产者处于活性状态,并且在高于50℃的高温下甲烷发酵; 其中将从甲烷发酵罐10中提取的消化液引入氨汽提器30中以扩散氨的氨汽提过程3; 以及去除溶解在氨扩散的消化液中的氧的脱氧工序6。 该系统的特征在于,在脱氧过程6中脱氧的消化液的至少一部分返回到甲烷发酵罐10.版权所有(C)2009,JPO&INPIT