Teploelektrogeneratsiya agro-industrial complex

 

(57) Abstract:

The invention relates to techniques for disposal selhozorganov with production of heat and electricity and can be applied on a pig breeding enterprises of the agroindustrial complex (AIC) in the Far North. When proportioning the flow of methane Trinitarianism hydrogen at temperature 280 - 320oC and the combustion in the arc at a temperature of 2500 - 3000oC formed plasma, which takes the form of spirals due to the conditions of its withdrawal through concentric holes opposite the end wall. Vortex moving plasma crossing the lithium-beryllium rods, triggers them current, i.e., converts thermal energy of the electrons and high-energy ions into electrical energy. Evaporation of the substance from the surface of the spirals performs reactive preload to the linear pulse discharge between electrodes of the capacitor battery. High-energy ions and neutrons affect the material of lithium and beryllium shells and produce tritium, which replaces the protium in methane, ie, a reproduction of tritium. At the opposite wall plasma transferred in pairs, not the second cooling plasma. The repeated implosions in arc arc electrodes by evaporation of lithium with a high frequency of small explosions, provide a supply of methane, ensures the reproduction of tritium. Fast neutrons arising from the fusion of tritium, with high penetrating ability affects lithium and beryllium shells of the heat exchanger. Consumable material low-temperature nuclear reactions are arc electrodes. The invention allows for APK warmth and heat. 1 Il.

The invention relates to techniques for disposal selhozorganov (SAS) with production of heat and electricity and can be used on a pig farm agricultural enterprises.

A known TAG, including housing, in the inner cavity of which has a pulse electrodes provided with the capacitor Bank /Fig.1.8, S. 15, HP Kokorev, centuries Kharitonov. Direct conversion of energy in fusion power plants. M., 1980/ in which a low degree of conversion, which reduces its effectiveness.

The purpose of the invention is the increased efficiency is achieved by concentric with the axis of the pulsed electrode has a heat exchanger, the cooled methane, iskopaemye lithium-beryllium rods, communicated with the manifold of the motor, and between the front end wall of the housing and pulsed electrode posted by arc electrodes, with shrunk them in powdered lithium, mounted for movement toward each other when increasing the gap between them, and the gap between the arc electrodes is in communication with the axial bore in the front end wall of the housing, periodically blocked by a flap with heat exchanger heating the methane trimipramine hydrogen atoms, and the rear end wall of the housing provided with a cooling circuit made with concentric holes, communicated with the hole of the drive hub and stroeven pump condenser water vapor and collections of CO2He and water.

The rationale for the achievement of the objectives of the invention are listed in the job description TAG APK, schematically shown in the drawing in the form of a longitudinal slit.

TAG APK includes a housing 1, in the inner cavity 2 which has a pulse electrodes 3 and 4 provided with the capacitor Bank 5. Concentric with the axis of the pulse electrodes 3 and 4 has a heat exchanger 6, the cooled methane from lithium 7, berillievoi 8, graphite 9 shells, and between the axis of the s with the collector 11 of the motor 12, and between the front end wall 13 of the housing 1 and the pulse electrode 3 posted by arc electrodes 14 and 15 with shrunk them in powdered lithium, mounted for movement towards each other with increasing gap 16 between them, and the gap 16 between the arc electrodes 14 and 15 is communicated with the axial hole 17 in the front wall 13 of the housing 1, the overlapped periodically valve 18, with the heat exchanger 19 is heated with methane trimipramine hydrogen atoms /ST4/ and the rear end wall 20 of the housing 1, as reported by the cooling circuit 21 with the heat exchanger 22, is made with concentric holes 23 provided with a hole 24 of the drive hub 25 and stroeven pump 26 to the condenser 27 water vapor and collections of CO2He and H2O, respectively 28 and 29. The heat exchanger 6 reported path 30 to the heat exchanger 31 and the heat exchanger 19 is heated with methane trimipramine hydrogen atoms. The circuit 30 reported methane with globaloperations 32, digester 33, a collection of 34 corporate farms pig breeding enterprise /SOP/ 35. The heat exchanger 31 is communicated circuit 36 to the separator 37, the circulation path 38 which includes a steam turbine 39 drive an electric generator 40, a capacitor 41 the environment disposal of SAS SOP is as follows.

The water wash and hydroplanes drains pig farm enterprise 1 in the amount of 35-40 litres per head per day come in a collection of SAS 34, which is correct due to the introduction of compost /CP/ of solid-phase enzyme /not shown/, so that the amount of carbon in 20 times the nitrogen content. Runoff is fermented in the digester 33, the output of which the concentration of methane in the biogas does not exceed 75-80%. For the exhaustion of carbon dioxide and hydrogen sulfide in chlorellaceae 32 use Chlorella and ceramictile, which allows to obtain almost pure methane /CH4/ that circulates through the path 30 between the heat exchanger 6 and the heat exchanger 31. Under the influence of neutrons in the shells 7 and 8 are allocated tritium, replacing the atoms of protium in methane atoms of tritium. Criminalising the methane is fed into the heat exchanger 19 and is heated to a temperature 280-320oC and portions through the valve 18 from the actuator 42 is injected into the gap 16 between the arc electrodes 14 and 15. At a temperature of 2500-3000oC methane gas into a plasma and burns with formation of plasma from water vapor and carbon monoxide. In the gap 16 of the electric arc in the plasma is injected lithium from the materials of the electrodes 14 and 15. Enter the plasma from methane through hole is s in the form of spirals and linear field of electric current discharge between the electrodes 3 and 4. According to the law of conservation of pulses the interaction of high-energy ion-surface lithium shell 7 gives the reaction played in lithium-beryllium rods in the form of electric current discharged to the manifold 11 of the motor 12.

The repeated implosions in arc arc electrodes 14 and 15 provides a reproduction of tritium from lithium-7 and beryllium 8 shells. Tritium in focus arcing gap 16 is transferred into the plasma and the plasma torch is thrown in the direction of the pulsed discharge from the battery 5. By evaporation of the substance from the surface of the plasma coils are compressed coils and ignition of a pulsed thermonuclear reactions at relatively low temperatures with increasing plasma density due to the introduction of lithium in the arc electrodes 14 and 15 and the combustion products of methane in the form of CO2. Vortex electric field in the plasma spirals caused by the conditions of allotment of plasma through holes 23 communicated with the hole 24 of the drive hub 25.

The flying-off the pump 26 generates in the cavity 2 of the housing 1 of the vacuum, providing the movement of the plasma from the wall 13 to the wall 20, in which due to the cooling circuit 21 of the heat exchanger 22, the plasma goes into pairs. On the inside of the plasma. In the circuit 38 of the pair of separator 37 in the steam turbine 39 generator 40 generates electricity.

Simple in design and reliable in operation TAG APK solve the problem of providing heat and electricity with the reproduction of tritium in the form of criminalising methane. Consumable component recycling SAS are arc electrodes 14 and 15. Particularly significant is the use of TAG agriculture in the Far North, in which the delivery of fuel is difficult due to the distances travelled.

Teploelektrogeneratsiya agro-industrial complex that includes a housing, an internal cavity which has a pulse electrodes provided with the capacitor Bank, wherein the concentric axis pulse electrodes installed the heat exchanger, the cooled methane, lithium, berillievoi, graphite rings, and between the axis of the pulse of the electrodes and the heat exchanger tokopriemnye lithium-beryllium rods, communicated with the manifold of the motor, and between the front end stable housing and pulsed electrode posted by arc electrodes with shrunk them in powdered lithium, mounted for movement toward each other when the end wall of the housing, overlapped periodically damper, heat exchanger heating the methane trimipramine hydrogen atoms (CL4), and the rear end wall of the housing facing the cooling circuit with a heat exchanger with concentric holes communicated with the holes of the drive hub and stroeven pump condenser water vapor and collections of CO2and Not.

 

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FIELD: analytical methods in veterinary.

SUBSTANCE: invention provides device for testing animal body fluid for presence of disease in tested animal, which device comprises container, measuring rod, and luminometer. End of measuring rod is made such that it can be immersed into fluid sample in a manner to fix a specified amount of fluid to the rod for taking part in chemical reaction (within container) generating light emission. The latter comes into luminometer to be converted into bacterial level indicative of the presence of a disease.

EFFECT: enabled fast and accurate reveal of mastitis in cows.

13 cl, 3 dwg

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