GAS DECOMPOSITION APPARATUS AND METHOD FOR DECOMPOSING GAS

    公开(公告)号:CA2720866C

    公开(公告)日:2012-10-16

    申请号:CA2720866

    申请日:2009-04-02

    Abstract: [Object] To provide a gas decomposition apparatus and a gas decomposition method in which no safety problems occur in spite of the application of a relatively high voltage between an anode and a cathode for the purpose of decomposing odorous gases of many types. [Solution] A catalytic electrode layer 6 that contains a catalyst and is porous; a counter electrode layer 7 that forms a pair with the catalytic electrode; and an electrolyte layer 15 that is sandwiched between the catalytic electrode and the counter electrode and has ion conductivity are included. The catalyst is held by the catalytic electrode in the form of being carried by a carrier containing a conductive material or the catalyst is directly carried by the catalytic electrode. A conductive material in the catalytic electrode, the conductive material being in contact with the catalyst, is not a noncovalent carbon material.

    Rechargeable battery system, and electrolyte

    公开(公告)号:AU2017304833A1

    公开(公告)日:2019-01-31

    申请号:AU2017304833

    申请日:2017-05-17

    Abstract: This rechargeable battery system is equipped with a gas supply mechanism which continuously supplies a flow gas containing an inert gas to the gaseous phase of a tank that stores an electrolyte. The electrolyte has a total concentration of elemental ions from groups 1 to 8 and 13 to 16 groups of the fifth period of the periodic table, and elemental ions from groups 1, 2, 4 to 8 and 13 to 15 groups of the sixth period, which are impurity elemental ions, that does not exceed 2500 mg/L, a concentration of vanadium ions of 1 mol/L to 3 mol/L, a concentration of free sulfuric acid of 1 mol/L to 4 mol/L, a concentration of phosphoric acid of 1.0 × 10

    Verfahren zur Erzeugung einer Aluminiumstruktur und Aluminiumstruktur

    公开(公告)号:DE112011103141T5

    公开(公告)日:2013-08-29

    申请号:DE112011103141

    申请日:2011-09-08

    Abstract: Vorgesehen wird ein Verfahren zur Erzeugung einer Aluminiumstruktur unter Verwendung eines porösen Harzformkörpers mit einer 3-dimensionalen Netzwerkstruktur, mit dem es möglich ist, eine Aluminiumstruktur mit einem niedrigen Oxidgehalt in der Oberfläche von Aluminium (d. h. mit einem Oxidfilm mit kleiner Dicke) zu bilden, und insbesondere ist es möglich, einen porösen Aluminiumkörper mit großer Fläche zu erhalten. Das Verfahren umfasst einen Schritt der Herstellung eines aluminiumbeschichteten Harzformkörpers, bei dem einen Aluminiumschicht gebildet wird, direkt oder mit einer anderen Schicht dazwischen auf einer Oberfläche eines Harzformkörpers, der sich aus Urethan zusammensetzt, und einen Schritt der Zersetzung des Harzformkörpers, indem der aluminiumbeschichtete Harzformkörper mit konzentrierter Salpetersäure mit einer Konzentration von 62% oder mehr kontaktiert wird.

    Electrolyte for electrolyte circulation-type battery, and electrolyte circulation-type battery system

    公开(公告)号:AU2017304832A1

    公开(公告)日:2019-01-31

    申请号:AU2017304832

    申请日:2017-05-17

    Abstract: Provided is an electrolyte for an electrolyte circulation-type battery that is supplied to an electrolyte circulation-type battery, wherein the total concentration of elemental ions from groups 1-8 and 13-16 of the fifth period of the periodic table, and elemental ions from groups 1, 2, 4-8 and 13-15 of the sixth period of the periodic table, which are impurity elemental ions which participate in the generation of gas containing elemental hydrogen, does not exceed 610 mg/L, the concentration of vanadium ions is 1 mol/L to 3 mol/L, the concentration of free sulfuric acid is 1 mol/L to 4 mol/L, the concentration of phosphoric acid is from 1.0 × 10

    MAGNESIUM ALLOY MATERIAL
    6.
    发明专利

    公开(公告)号:CA2823292C

    公开(公告)日:2016-06-14

    申请号:CA2823292

    申请日:2011-12-28

    Abstract: A magnesium alloy material with excellent corrosion resistance is provided. The magnesium alloy material comprises a magnesium alloy containing 7.3%-16 % by mass Al. When the Al content for the whole magnesium alloy material is x% by mass, the area with an Al content of 0.8x%-1.2x% by mass is 50% by area or more, the area with an Al content of 1.4x% by mass min. is 17.5% by area max., and there is substantially no area with an Al content of 4.2% by mass max. This magnesium alloy material can effectively prevent the occurrence of localized corrosion and the progression of said corrosion, as a result of the low variation in Al concentration and the lack of areas with extremely low Al content. Accordingly, the magnesium alloy material has excellent corrosion resistance compared to a die cast material with the same overall Al content. The magnesium alloy material can be used for plate material, coil material comprising rolled long plate material, and formed articles.

    An einem Anschluss angebrachtes Elektrokabel und Kabelbaum

    公开(公告)号:DE112018007593T5

    公开(公告)日:2021-04-08

    申请号:DE112018007593

    申请日:2018-05-11

    Abstract: Es wird ein an einem Anschluss angebrachtes Elektrokabel (1) bereitgestellt, beinhaltend: ein Elektrokabel (2), das einen aus Aluminium oder einer Aluminiumlegierung hergestellten Leiter (20) aufweist, dessen äußerer Umfang mit einer isolierenden Schicht (21) abgedeckt ist; und ein Anschlussbauteil (3), das aus Kupfer oder einer Kupferlegierung hergestellt ist und an einem Abschnitt (2e) mit freiliegendem Leiter verbunden ist, der an einem Endabschnitt des Elektrokabels (2) von der isolierenden Schicht (21) freiliegt. Das Anschlussbauteil (3) beinhaltet eine Beschichtungsschicht (31), die aus einem elektrisch leitfähigen Material hergestellt ist und an einem Abschnitt (3e) mit freiliegendem Anschluss mit Ausnahme eines Kontaktortes mit dem Leiter (20) an der Oberfläche des Anschlussbauteils (3) ausgebildet ist, und eine Oxidschicht (32) des elektrisch leitfähigen Materials, der an einer Oberfläche der Beschichtungsschicht (31) ausgebildet ist. Das elektrisch leitfähige Material ist ein Metall oder eine Legierung, die eine Oxidschicht (32) ausbildet, die eine Dicke von gleich oder mehr als 20 nm an einer Oberfläche davon aufweist, wenn 50 g/L Salzwasser bei 35° Celsius in Übereinstimmung mit einem durch JIS Z 2371:2000 definierten Salzwassersprühtest für 96 Stunden gesprüht werden, und der Abschnitt mit freiliegendem Leiter(2e) und der Abschnitt mit freiliegendem Anschluss(3e) liegen frei und sind einer äußeren Umfangsatmosphäre des an einem Anschluss angebrachten Elektrokabels (1) ausgesetzt.

    membro estrutural de uma liga de magnésio.

    公开(公告)号:BR112012014090A2

    公开(公告)日:2016-07-05

    申请号:BR112012014090

    申请日:2010-12-06

    Abstract: membro estrutural de uma liga de magnésio. é fornecido um membro estrutural de uma liga de magnésio possuindo excelente resistência à corrosão. o membro estrutural de uma liga de magnésio inclui um substrato de liga de magnésio que contém mais do que 7,5% em peso de al e uma camada anticorrosiva formada em um superfície do substrato pelo tratamento de conversão química. o substrato contém um precipitado, tipicamente, partículas dispersas no mesmo. as partículas são feitas de um composto intermetálico contendo pelo menos um de al e mg e têm um tamanho médio de partícula de 0,05 m ou mais e 1 m ou menos. a área total das partículas representa entre 1% da área ou mais e 20% da área ou menos. a camada anticorrosiva inclui uma subcamada inferior e uma subcamada de superfície no substrato nesta ordem. a subcamada de superfície é mais densa do que a subcamada inferior. o substrato do membro estrutural de uma liga de magnésio tem alta resistência à corrosão por causa de um alto teor de al. o membro estrutural de uma liga de magnésio tem excelente resistência à corrosão por causa da subcamada densa no lado frontal da camada anticorrosiva, que impede que um líquido corrosivo atinja o substrato. a subcamada inferior porosa pode reduzir a tendência da camada anticorrosiva de separar do substrato, por exemplo, quando de um impacto e permite que o membro estrutural de uma liga de magnésio possa conservar uma alta resistência à corrosão.

    GAS DECOMPOSITION APPARATUS AND METHOD FOR DECOMPOSING GAS

    公开(公告)号:CA2720866A1

    公开(公告)日:2009-10-15

    申请号:CA2720866

    申请日:2009-04-02

    Abstract: Disclosed is a gas decomposition apparatus for decomposing many kinds of foul-smelling gas, which is free from safety problems while applying a relatively high voltage between anode and cathode. A method for decomposing gas is also disclosed. The gas decomposition apparatus is characterized by comprising a porous catalyst electrode (6) containing a catalyst, a counter electrode (7) forming a pair with the catalyst electrode, and an ion-conductive electrolyte (15) sandwiched between the catalyst electrode and the counter electrode. The gas decomposition apparatus is also characterized in that the catalyst is supported by a carrier which is composed of a conductive material and held by the catalyst electrode, or directly supported by the catalyst electrode, and the conductive material in contact with the catalyst in the catalyst electrode is not a non-covalent bond carbon material.

    Electrolyte for Flow Battery and Flow Battery System

    公开(公告)号:AU2017304832B2

    公开(公告)日:2022-06-02

    申请号:AU2017304832

    申请日:2017-05-17

    Abstract: Provided is an electrolyte for an electrolyte circulation-type battery that is supplied to an electrolyte circulation-type battery, wherein the total concentration of elemental ions from groups 1-8 and 13-16 of the fifth period of the periodic table, and elemental ions from groups 1, 2, 4-8 and 13-15 of the sixth period of the periodic table, which are impurity elemental ions which participate in the generation of gas containing elemental hydrogen, does not exceed 610 mg/L, the concentration of vanadium ions is 1 mol/L to 3 mol/L, the concentration of free sulfuric acid is 1 mol/L to 4 mol/L, the concentration of phosphoric acid is from 1.0 × 10

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