Control System of Pressure, Level and Temperature for Hydrogen Oxygen Machine |
A pressure control device for a hydrogen-oxygen gas generator includes a hydrogen-oxygen inlet and a hydrogen-oxygen outlet installed on the outlet pipe of the hydrogen-oxygen gas generator. The hydrogen-oxygen inlet and the hydrogen-oxygen outlet are connected with a medium cylinder. The lower part of the medium cylinder is provided with two pressure transmitter installation joints, and the two pressure transmitters are installed. Pressure sensors are installed on the fittings respectively. The delicate shape design and scientific structure sealing method of PepsiCo DPI pressure transmitters satisfy all process requirements of hydrogen and oxygen generators for pressure transmitters. In the process of the hydrogen and oxygen flowing from the hydrogen and oxygen intake to the hydrogen and oxygen outlet, the pressure of the hydrogen and oxygen is transmitted to two chambers after isolation by pressure transmission and isolation medium, and then two pressure sensors are driven by the pressure of the two chambers respectively to isolate the hydrogen and oxygen directly contacting the pressure sensor, thus eliminating hydrogen permeation, hydrogen embrittlement and return. The purpose of pressure sensor failure easily in fire.
Hydrogen and oxygen machine is the equipment for producing hydrogen fuel. It uses water electrolysis technology to decompose water into hydrogen and oxygen. Hydrogen is used as fuel and oxygen as combustion aid. It is a high-tech green energy-saving equipment. Because the hydrogen and oxygen separated gas produced by the hydrogen-oxygen machine is hydrogen and oxygen separated type, the application scope of the hydrogen-oxygen machine equipment has been greatly expanded. It is not only confined to the commonly used hot-working places, but also used to replace the traditional gas such as acetylene, propane, liquefied gas for metal cutting, metal gas welding, glass products processing, car decarbonization, vehicle-borne hydrogen and oxygen. Machinery, hydrogen fuel cell, electronic chemical industry, food processing and other fields have been widely used. Owing to the separation of hydrogen and oxygen produced, the technical bottleneck problem of easy tempering of hydrogen and oxygen mixed gases is completely eliminated in metal cutting. Therefore, the separating hydrogen and oxygen machine is used safely in the field of metal cutting.
In the aspect of control, the hydrogen-oxygen machine adopts PLC control technology, and develops a complete control program through PLC hardware configuration and program design. It realizes the start-stop, control, setting and displaying of operating parameters of the equipment, and has the functions of alarm and fault inquiry. External human-machine interface (HMI) control is implemented with industrial touch screen. The timeliness, integrity and interaction of human-machine interface control are fully considered in human-machine conversation. The interface is very friendly, easy to use, eye-catching and intuitive.
1. Control scheme design
1) Working Principle of Electrolysis
Separated water electrolysis hydrogen production unit produces H2 and O2 by direct current electrolysis of KOH (25%-30% concentration) aqueous solution. H2 and O2 entrap KOH alkali solution into hydrogen and oxygen vapor-water separators respectively for vapor-water separation (under the action of water molecular gravity). The separated alkali liquid is refluxed to the electrolyzer through the bottom end of the separator (at high level). In suppressing hydrogen, a circulating pump is needed to complete the reflux of the electrolyte.
Electrode Reaction Formula for Hydrogen Production by Water Electrolysis:
Cathode: 4E + 4H2O = 2H2_ + 4OH_
Anode: 4OH_= O 2+2H 2+4e
Total Reaction Formula: H_2 = H_2 + 1/2 O_2
It can be seen from the above electrode reaction formula that H + and OH - ions are produced, in which H + ions move to the cathode surface of the electrode to form H2_, and OH - ions move to the anode surface of the electrode to form O 2. The corresponding gas production of H2 is twice as much as that of O2.
A pressure control device for a hydrogen-oxygen gas generator includes a hydrogen-oxygen inlet and a hydrogen-oxygen outlet installed on the outlet pipe of the hydrogen-oxygen gas generator. The hydrogen-oxygen inlet and the hydrogen-oxygen outlet are connected with a medium cylinder. The lower part of the medium cylinder is provided with two pressure transmitter installation joints, and the two pressure transmitters are installed. Pressure sensors are installed on the fittings respectively. The delicate shape design and scientific structure sealing method of PepsiCo DPI pressure transmitters satisfy all process requirements of hydrogen and oxygen generators for pressure transmitters. In the process of the hydrogen and oxygen flowing from the hydrogen and oxygen intake to the hydrogen and oxygen outlet, the pressure of the hydrogen and oxygen is transmitted to two chambers after isolation by pressure transmission and isolation medium, and then two pressure sensors are driven by the pressure of the two chambers respectively to isolate the hydrogen and oxygen directly contacting the pressure sensor, thus eliminating hydrogen permeation, hydrogen embrittlement and return. The purpose of pressure sensor failure easily in fire.
5) System pressure
In order to make the system have a better man-machine interface, set the parameters of liquid level, pressure, temperature and other field parameters, and output various alarm prompt information, the display interface of Xinjie touch screen is selected as the display setting unit. The flow chart of system software design is shown in Figure 2.
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