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    • 5. 发明申请
    • ADSORPTION AND RELEASE DEVICE OF CARBON DIOXIDE
    • 二氧化碳的吸收和释放装置
    • US20130145935A1
    • 2013-06-13
    • US13817905
    • 2012-04-16
    • Michio SuzukaTakeyuki YamakiTakashi SekiguchiRyo kamai
    • Michio SuzukaTakeyuki YamakiTakashi SekiguchiRyo kamai
    • B01D53/14
    • B01D53/1425B01J20/20B01J20/205B01J20/262B01J20/3441C01B32/60C08G73/0266C08G73/0627C08L79/02C08L79/04Y02C10/06
    • An object of the present invention is to provide a carbon dioxide adsorption and release device, which has high adsorptivity, and also consumes low energy upon adsorption and desorption. The carbon dioxide adsorption and release device is characterized by including a pair of electrodes (electrode 1 and electrode 2) provided opposite to each other; an electrolyte 3 filled between the respective electrodes 1 and 2 of the pair of electrodes; and a porous body 4 provided on the electrode 1 of the pair of electrodes, wherein the electrolyte 3 absorbs carbon dioxide thereby dissolving the carbon dioxide therein, and thus enabling formation of carbonic acid ions or hydrogen carbonate ions; and the carbonic acid ions or hydrogen carbonate ions are electrostatically adsorbed on a surface of the porous body 4 when a forward voltage is applied to the pair of electrodes by the porous body 4, and the carbonic acid ions or hydrogen carbonate ions are electrostatically released from a surface of the porous body 4 when a backward voltage is applied to the pair of electrodes.
    • 本发明的目的是提供一种二氧化碳吸附释放装置,其具有高吸附性,并且在吸附和解吸时也消耗低能量。 二氧化碳吸附和释放装置的特征在于包括彼此相对设置的一对电极(电极1和电极2) 填充在该对电极的各个电极1和2之间的电解质3; 以及设置在该对电极的电极1上的多孔体4,其中电解质3吸收二氧化碳,从而溶解二氧化碳,从而能够形成碳酸离子或碳酸氢根离子; 并且当通过多孔体4向一对电极施加正向电压时,碳酸离子或碳酸氢根离子被静电吸附在多孔体4的表面上,并且碳酸离子或碳酸氢根离子被静电释放 当向一对电极施加反向电压时,多孔体4的表面。
    • 9. 发明申请
    • Method for manufacturing cross prism
    • 十字棱镜制造方法
    • US20070102097A1
    • 2007-05-10
    • US11106431
    • 2005-04-15
    • Takashi SekiguchiKazuo EndoKatsumi EndoShigeru Kato
    • Takashi SekiguchiKazuo EndoKatsumi EndoShigeru Kato
    • B32B37/00
    • G02B5/04G02B27/102G02B27/1073G02B27/149Y10T156/1052
    • For the purpose of depositing deviation-free dichroic coatings of high plane rectitude, there is disclosed a method starting with preparation of glass assembly units each composed of first and second glass members of different lengths. A first dichroic coating 10A is deposited on a lateral side of one glass member, and the other glass member is joined on the first dichroic coating 10A on the one glass member to obtain a glass assembly unit 5. A lateral side of the glass assembly unit 5 is ground to one and same plane at an angle of 90 degrees, and then two edge lines on the opposite side are ground at an angle of 45 degrees to obtain a prism member. A second dichroic coating is deposited on the prism member, and joined with another prism member without a second dichroic coating to obtain a parental cross prism material to be cut into cubes for use as cross prisms.
    • 为了沉积具有高平面直角度的无偏差二向色性涂层,公开了从制备玻璃组件单元开始的方法,每个玻璃组件单元由不同长度的第一和第二玻璃构件组成。 第一分色涂层10A沉积在一个玻璃构件的侧面上,另一个玻璃构件在一个玻璃构件上的第一分色涂层10A上接合,以获得玻璃组合单元5.玻璃的侧面 组装单元5以90度的角度被研磨到同一平面,然后在相对侧上的两条边缘线以45度的角度被研磨以获得棱镜构件。 第二分色涂层沉积在棱镜构件上,并且与另一个棱镜构件接合而不用第二分色涂层,以获得待切割成立方体的母体十字棱镜材料,以用作十字棱镜。