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    • 32. 发明专利
    • CHEMICAL REACTION VESSEL FOR ESPECIALLY ADSORPTION/ SEPARATION OPERATION
    • JPH11147017A
    • 1999-06-02
    • JP22846198
    • 1998-08-13
    • LINDE AG
    • LEITGEB PAULWIESSNER FRANKHUTTER RUDOLFHOENIG CHRISTIAN
    • B01D53/04B01D53/02B01J8/02C01B21/04
    • PROBLEM TO BE SOLVED: To suppress the deterioration of the adsorbing capability of an adsorbent and improve yield by arranging at least one displacement structure which displaces most of a spatial volume in a spatial area for a gas supply or a gas exhaust to be formed inside an inner cage, with a volume in the spatial area. SOLUTION: An introduction gas is introduced into the lower space 13 of a reaction vessel from an inlet 10 and then is guided into an outer ring-like spatial area 14 between an outer shell 2 and an outer cage 5 after changing its direction on the lower face of a bottom plate 6. Further, the gas is subjected to a reaction treatment while being caused to pass through a wire mesh set in the perforations of an outer cage 5 and a reaction layer 3 inside in the radial direction. After that, the gas is introduced into a spatial area 15 inside the inner cage 4 after passing through a wire mesh set in the perforations of the inner cage 4. In addition, a displacement structure 18 which displaces most of the spatial volume of the inner spatical area 15 with a volume is concentrically arranged in the area 15. The gas flowing into a ringed clearance 15 from the reaction layer 3 is conducted into a treatment installation outside the reaction vessel through a guide outlet 11 connected to an opening in the center part of the bottom pate 6. Thus it is possible to reduce the volume of a space not filled with an active substance to diminish a gas loss and increase the yield.
    • 33. 发明专利
    • HYDROSTATIC DRIVING SYSTEM FOR CONSUMPTION APPARATUS OPERATED IN OPEN CIRCUIT
    • JPH10339302A
    • 1998-12-22
    • JP60898
    • 1998-01-06
    • LINDE AG
    • KRAFT WOLFGANG
    • B60T10/04F15B11/00
    • PROBLEM TO BE SOLVED: To improve rear suction with slight costs on a construction, and effectively avoid generation of a cavitation by arranging a valve for connecting a delivery side to a feed side of a consumption apparatus in an opening condi tion, on an after suction device. SOLUTION: A rear suction device provided with a valve 300b is arranged on a control brake valve 5b operated as a brake valve. The valve 300b is loaded on an opening position by brake pressure shut out in a spool inner casing when pressure in a forcibly feed leading pipe 8a, namely, in an annular passage is lower than a pressure in the spool inner casing, namely in the forcibly feed leading pipe 8b of a delivery side. A pressure medium flows from the leading pipe 8b to the leading pipe 8a bypassing the valve 300b, namely, it flows from the delivery side B to a feeding side A of a consumption apparatus. Therefore, a pressure balance 320b in the spool inner casing of the brake valve is operated as a check valve on braking, and thereby, return pressure is improved so as to improve an after suction condition.
    • 36. 发明专利
    • METHOD AND DEVICE FOR MEASURING LIQUID MATERIAL
    • JPH06207844A
    • 1994-07-26
    • JP21690293
    • 1993-08-10
    • LINDE AG
    • DEIITAA DEYURU
    • B67D7/08B01J4/00G01F11/00G01F13/00G05D7/06B67D5/08
    • PURPOSE: To form a liquid drop having an uniform density and a constant particle size and improve the precision of volume measurement by generating an electric field in the outflow port of a liquid material supplying member to regulate the particle size of the liquid drop. CONSTITUTION: An outflow port 3 for a liquid maternal 13 formed into a nozzle having a diameter of about 1.5mm by use of an electric conductive material, so that a specified number of liquid drops are guided into a vessel situated under the outflow port 3 according to a desired liquid quantity. A nozzle 2 having the outflow port 3 is electrically connected to the first electrode 5 of a high voltage source 7, the second electrode 6 of the power source 7 is connected to a metal grid electrode 4 provided opposite to the outflow port 3 to generate a strong electric field within the range of the outflow port 3, and the particle size and mass of a liquid drop 8 is controlled by the high voltage applied to the outflow port 3 and the electrode 4. According to such a structure, when the voltage is enhanced to about 10kV' per 1cm distance between the outflow port 3 and the electrode 4, the liquid drop diameter can be reduced less than 1mm.
    • 37. 发明专利
    • HYDROSTATIC TYPE DRIVING SYSTEM
    • JPH06193602A
    • 1994-07-15
    • JP26343993
    • 1993-10-21
    • LINDE AG
    • BUARUTAA KUROTSUPU
    • F15B11/00E02F9/22F15B11/16
    • PURPOSE: To adjust the limit of force or rotary moment by providing a plurality of consumers connected to a pump, and enabling a signal difference between the pressure compensators of the consumers to be adjusted in the direction for controlling through-flow across the pressure compensators by means of signals outputted from a control valve. CONSTITUTION: A delivered volume adjustable pump 1 is controlled in terms of its delivered volume by a cylinder-piston arrangement 3 loaded by a flow regulator 2 and its delivery line 4 is connected to a first consumer 6 and a second consumer 8 via directional control valves 5, 7. The outlet of a control valve 20 is connected to a line 11 which opens in front of the closing-direction control surface of a pressure compensator 9 and one of the inlets of the control valve 20 is connected to an LS line 12 connected to the flow regulator 2 while the other inlet is connected to the branch line 4a of the delivery line 4, so that the control valve 20 is moved between two positions, one for connecting the LS line 12 to the line 11, and the other for connecting the line 4a to the line 11. Thus, a signal difference between the load pressure signal and the delivery pressure signal of the pressure compensator 9 of the consumer 6 is controlled by signals outputted from the control valve 20.