미생물의 전기화학적 농화배양 방법 및 유기물질 및 BOD 분석용 바이오센서
    1.
    发明授权
    미생물의 전기화학적 농화배양 방법 및 유기물질 및 BOD 분석용 바이오센서 失效
    用于富集微生物的电化学方法和用于分析有机物质和BOD的生物传感器

    公开(公告)号:KR100303611B1

    公开(公告)日:2001-09-24

    申请号:KR1019990027167

    申请日:1999-07-07

    CPC classification number: G01N33/1866 G01N33/1806

    Abstract: 본발명에따라, 혐기적조건에서매개체없는생물연료전지를사용하여전기화학적인방법으로시료속의유기물농도또는 BOD를측정할수 있는바이오센서가제공된다. BOD 측정용바이오센서에사용되는생물연료전지의전기화학적활성세균은생물연료전지의운전과정에서농화배양된폐수및 슬러지속에포함된활성세균이사용된다. 따라서, 본발명의 BOD 바이오센서는인위적인미생물의첨가없이운전될수 있으며폐수에따라적절한세균의활성이유지될수 있다. 바이오센서용생물연료전지는 6개월이상안정적으로작동할수 있다.

    미생물의 전기화학적 농화배양 방법 및 유기물질 및 BOD 분석용 바이오센서
    2.
    发明公开
    미생물의 전기화학적 농화배양 방법 및 유기물질 및 BOD 분석용 바이오센서 失效
    微生物电化学渗透文化方法及生物传感器分析有机材料与物质

    公开(公告)号:KR1020010009030A

    公开(公告)日:2001-02-05

    申请号:KR1019990027167

    申请日:1999-07-07

    CPC classification number: G01N33/1866 G01N33/1806

    Abstract: PURPOSE: Provided are a method of electrochemical dense culture of a microorganism and a biosensor for analyzing organic material and BOD. The biosensor for BOD analysis can be operated without addition of the microorganism, can maintain an optimal bacterial activity depending on sewage and can determined BOD of the sewage successively by using activated bacteria contained in the sewage and sludge as a biological fuel cell. Also, the biological fuel cell is stably operated for up to 6 months. CONSTITUTION: The biosensor for BOD analysis comprises a measuring portion, a detecting portion of current, a monitoring portion recording detected current change, and optionally, a potentiostat, wherein the measuring portion is the biological fuel cell without additional mediator or transducer comprising an anode, a cathode, a conduction mediator of the anode and the cathode, and an anion switch membrane between the two pole, and wherein the cathode part comprises a sample containing electrochemically activated bacteria.

    Abstract translation: 目的:提供微生物电化学致密培养的方法和用于分析有机物和BOD的生物传感器。 用于BOD分析的生物传感器可以在不添加微生物的情况下操作,可以根据污水保持最佳的细菌活性,并且可以通过使用污水和污泥中包含的活性细菌作为生物燃料电池,连续测定污水的BOD。 此外,生物燃料电池稳定运行长达6个月。 构成:用于BOD分析的生物传感器包括测量部分,电流的检测部分,记录检测到的电流变化的监测部分和可选的恒电位仪,其中测量部分是没有附加介体或换能器的生物燃料电池,其包括阳极, 阴极,阳极和阴极的传导介质和两极之间的阴离子交换膜,其中阴极部分包含含有电化学活化的细菌的样品。

    유기성 담체 함유 충전층 반응기를 이용하여 폐수에서중금속을 제거하는 생물학적 방법
    4.
    发明授权
    유기성 담체 함유 충전층 반응기를 이용하여 폐수에서중금속을 제거하는 생물학적 방법 失效
    使用含有有机底物的填充床反应器在废水中生物去除重金属

    公开(公告)号:KR100330687B1

    公开(公告)日:2002-04-03

    申请号:KR1019990057376

    申请日:1999-12-14

    Abstract: 본발명은황산염환원세균을이용하여 6가크롬등의중금속함유폐수를처리하는방법에있어서, 불용성의고형유기물 (유기성담체)가충전된충전층반응기를이용하는폐수처리방법에관한것이다. 또한, 중금속의처리효과를높이기위해서, 유기수용성폐수를유기성담체와혼합하거나또는별도로동시에공급할수 있는데, 이때 유기성폐수에서유래하는유기물이처리수로배출되지않도록운전함으로써동시에두 가지폐수의처리가가능하다. 본발명의방법은다른중금속이함유된폐수에도적용가능하다.

    폐수 및 폐수처리용 활성슬러지를 사용한 생물연료전지
    5.
    发明公开
    폐수 및 폐수처리용 활성슬러지를 사용한 생물연료전지 失效
    生物电池使用活性污泥进行废水处理

    公开(公告)号:KR1020010009031A

    公开(公告)日:2001-02-05

    申请号:KR1019990027168

    申请日:1999-07-07

    Abstract: PURPOSE: Provided is a bio-electric cell that organic material of wastewater is used as fuel and microorganisms of activated sludge is used as catalyst. Wastewater and activated sludge are filled around a cathode. At the cathode, microorganisms of wastewater or activated sludge are cultivated in an anaerobic condition, so only microorganisms, which use the cathode as electron acceptor, are cultivated selectively. Generally, microorganisms are covered with lipid film being nonconductive, so electron exchange is not occurred directly between microorganisms and electrode. Therefore, phosphate buffer solution is used as an electronic conductor in the bio-electric cell. Consequently, electrochemically activated microorganisms oxidize organic material of wastewater and electrons are produced by oxidation of organic material. The electrons are discharged to the exterior of cell of the microorganisms and are transferred to the cathode. Then, electric current is generated and wastewater is purified by oxidation of organic material. CONSTITUTION: The bio-electric cell is comprising by follow parts: graphite felts used as cathode and anode; a cation exchange resin to minimize resistance of the bio-electric cell; phosphate buffer solution for electronic conduction; an anode being aerobic condition; a cathode being anaerobic condition.

    Abstract translation: 目的:提供废水有机物作为燃料的生物电池,活性污泥的微生物用作催化剂。 废水和活性污泥填充在阴极周围。 在阴极处,废水或活性污泥的微生物在厌氧条件下培养,所以只有使用阴极作为电子受体的微生物被选择性培养。 通常,微生物被不导电的脂质膜覆盖,因此微生物和电极之间不直接发生电子交换。 因此,磷酸盐缓冲溶液用作生物电池中的电子导体。 因此,电化学活化的微生物氧化废水的有机物质,电子通过有机材料的氧化产生。 电子被排出到微生物细胞的外部并被转移到阴极。 然后,产生电流,并通过有机材料的氧化净化废水。 构成:生物电池由以下部分组成:用作阴极和阳极的石墨毡; 阳离子交换树脂,以最小化生物电池的电阻; 用于电子传导的磷酸盐缓冲溶液; 阳极是有氧条件; 阴极是无氧条件。

    유기성 담체 함유 충전층 반응기를 이용하여 폐수에서중금속을 제거하는 생물학적 방법
    6.
    发明公开
    유기성 담체 함유 충전층 반응기를 이용하여 폐수에서중금속을 제거하는 생물학적 방법 失效
    使用含有有机介质的包装床反应器从废水中重金属的生物去除方法

    公开(公告)号:KR1020010055997A

    公开(公告)日:2001-07-04

    申请号:KR1019990057376

    申请日:1999-12-14

    Abstract: PURPOSE: A biological removing method of heavy metal from wastewater using a packed bed reactor containing organic media is provided, which can treat heavy metal contained wastewater simply in a reduced time by using insoluble solid organic matter (organic media) that can function as a source of nutrients for microorganism and by controlling hydraulic retention time (HRT) according to the concentration of metal contained in wastewater. CONSTITUTION: The method comprises as follows: (i) neutralize wastewater using lime stone; (ii) mix with sludge of anaerobic digestion tank; and (iii) feed the mixture to a packed bed reactor packed with solid organic matters for reduction treatment of wastewater containing heavy metal using sulfate reducing bacteria, the organic matter being a mixture of paper manufacturing sludge and waste oak remaining after culturing Lentnus edodes, the heavy metal being sexivalent chrome, sexivalent uranium and sexivalent selenium.

    Abstract translation: 目的:提供使用含有有机介质的填充床反应器的废水中重金属的生物去除方法,其可以通过使用可以作为来源的不溶性固体有机物质(有机介质)简化减少处理重金属的废水。 的微生物营养物质,并根据废水中含有的金属浓度控制水力停留时间(HRT)。 规定:该方法如下:(i)用石灰石中和废水; (ii)与厌氧消化槽的污泥混合; 和(iii)将混合物进料到装有固体有机物质的填充床反应器中,用于使用硫酸盐还原细菌还原处理含有重金属的废水,有机物是培养Lentnus edodes之后残留的造纸污泥和废橡木的混合物 重金属是等价铬,等效铀和等效硒。

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