전기분해를 이용한 수소가스 제조장치 및 방법
    1.
    发明授权
    전기분해를 이용한 수소가스 제조장치 및 방법 有权
    制造氢气的方法及其制备方法

    公开(公告)号:KR101663413B1

    公开(公告)日:2016-10-10

    申请号:KR1020150032743

    申请日:2015-03-09

    CPC classification number: Y02E60/366

    Abstract: 본발명은전기분해를이용한수소가스를제조하는장치에관한것으로소금용액유입부(101)와; 전기분해유닛(102)과; 가스분리장치(104)와; 염소용액저장조(105)와; 차염저장조(103)와; 수소가스저장조(106)와; 전기에너지전환부(107); 및직류전원공급부(108)로; 구성되어, 염소가스의용해도및 반응성을높여수소가스의순도를높이고대량으로생산할수 있는장점이있다.

    Abstract translation: 本发明涉及一种使用电解制造氢气的装置,其包括:盐溶液流入单元(101); 电解单元(102); 气体分离装置(104); 氯溶液储存罐(105); 次氯酸钠储存罐(103); 氢气储罐(106); 电能转换单元(107); 和直流电源单元(108)。 使用电解制造氢气的装置通过提高氯气的反应性和溶解度而提高氢气的纯度,并且可以大量生产氢气。

    전기분해를 이용한 수소가스 제조장치 및 방법
    2.
    发明公开
    전기분해를 이용한 수소가스 제조장치 및 방법 有权
    使用电解生产氢气的设备和方法

    公开(公告)号:KR1020160110622A

    公开(公告)日:2016-09-22

    申请号:KR1020150032743

    申请日:2015-03-09

    CPC classification number: Y02E60/366 C25B1/10 C25B9/08

    Abstract: 본발명은전기분해를이용한수소가스를제조하는장치에관한것으로소금용액유입부(101)와; 전기분해유닛(102)과; 가스분리장치(104)와; 염소용액저장조(105)와; 차염저장조(103)와; 수소가스저장조(106)와; 전기에너지전환부(107); 및직류전원공급부(108)로; 구성되어, 염소가스의용해도및 반응성을높여수소가스의순도를높이고대량으로생산할수 있는장점이있다.

    Abstract translation: 本发明涉及使用电解制造氢气的设备,其包括:盐溶液入口101; 电解单元(102); 气体分离装置104; 氯溶液贮存器105; 盐水储罐103; 氢气储存器106; 电能切换单元107; 和一个直流电源108; 由此增加氯气的溶解性和反应性,增加氢气的纯度并大量生产氢气。

    전기분해조가 포함된 유기슬러지 감량장치
    7.
    发明授权
    전기분해조가 포함된 유기슬러지 감량장치 有权
    有机污泥减排设备

    公开(公告)号:KR100810598B1

    公开(公告)日:2008-03-06

    申请号:KR1020070088067

    申请日:2007-08-31

    CPC classification number: Y02W10/15 C02F1/461 C02F3/12 C02F2303/06

    Abstract: An apparatus for reducing organic sludge is provided to achieve high-efficiency reduction of the organic sludge, by controlling the flow rate of organic sludge, the operating condition of an electrolytic bath, etc., so as to perform electrolysis actively. An apparatus for reducing organic sludge reduces the organic sludge generated when removing organic matters and nutrient salt from sewage and wastewater by using an electrolytic bath. The apparatus comprises a solid-liquid separation bath(20), a bioreactor(10), an MLSS(Mixed Liquid Suspended Solid) meter(11) and an ORP(Oxidation-Reduction Potential) meter(12) disposed at one side of the bioreactor, surplus sludge flow rate-regulating valve(21) and a recovery sludge flow rate-regulating valve(22), and an automatic operation controller(30) controls an operating condition by using operating information received from the MLSS meter and the ORP meter. The electrolytic bath includes a direct oxidation bath and an indirect oxidation bath. The direct oxidation bath has an upflow type stirrer for maximizing the contact between the organic sludge and an electrolytic electrode. The indirect oxidation bath has a bubble unit for re-oxidizing and stabilizing peroxide materials contained in the electrolytic sludge. The electrolytic bath, the surplus sludge flow rate-regulating valve, the recovery sludge flow rate-regulating valve, a rectifier(50) are controlled according to information transmitted from the automatic operation controller. Further, a denitrification-dephosphorization process, an active sludge, an anaerobic-anoxic oxic process or an SBR process is performed in the bioreactor.

    Abstract translation: 提供一种减少有机污泥的装置,通过控制有机污泥的流量,电解槽等的运行状态,有效地还原有机污泥,从而主动进行电解。 一种减少有机污泥的设备,通过使用电解槽,可以减少污水和废水中的有机物和营养盐产生的有机污泥。 该装置包括一个固液分离槽(20),一个生物反应器(10),一个MLSS(混合液体悬浮固体)计量器(11)和一个ORP(氧化还原电位)计量器(12) 生物反应器,剩余污泥流量调节阀(21)和回收污泥流量调节阀(22),以及自动运行控制器(30)通过使用从MLSS仪表和ORP计量器接收到的操作信息来控制运行状态 。 电解槽包括直接氧化浴和间接氧化浴。 直接氧化浴具有用于最大化有机污泥和电解电极之间的接触的上流型搅拌器。 间接氧化浴具有用于再氧化和稳定包含在电解污泥中的过氧化物材料的气泡单元。 电解槽,剩余污泥流量调节阀,回收污泥流量调节阀,整流器(50)根据自动运行控制器发送的信息进行控制。 此外,在生物反应器中进行脱氮脱磷处理,活性污泥,厌氧缺氧处理或SBR处理。

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