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45results about How to "Large hydrogen storage capacity" patented technology

Heat engine-hydrogen reaction bed combined circulating system

The invention relates to a heat engine-hydrogen reaction bed combined circulating system comprising a heat engine, a hydrogen compression unit, an intermediate reheater and an expansion machine. The hydrogen compression unit is provided with at least one set of hydrogen reaction beds, each set comprises the at least two hydrogen reaction beds, and the hydrogen reaction beds mutually communicate. The expansion machine adopts multiple stages, and a thermal medium outlet of the heat engine is connected to a tail gas discharging opening through the hydrogen reaction beds and the intermediate reheater. The hydrogen reaction beds of the hydrogen compression unit are connected to an inlet of the expansion machine, a first-stage outlet and / or a second-stage outlet of the expansion machine are / is connected with the intermediate reheater or the hydrogen compression unit, an outlet of the intermediate reheater or the hydrogen compression unit is connected with a next-stage inlet of the expansionmachine, and the outlets of the expansion machine are connected to the hydrogen reaction beds of the hydrogen compression unit. The heat engine and the hydrogen reaction beds of the hydrogen compression unit are combined, tail gas waste heat after the heat engine does work is fully utilized to heat metal hydride, high-pressure hydrogen is generated to promote the expansion machine to do work, andthus the thermal efficiency is advantageously improved.
Owner:SHANGHAI KELAIPU ENERGY TECH CO LTD

Magnesium-based complex phase hydrogen storage material and preparation thereof

The invention provides high-volume mg-based multiphase hydrogen storage material and a preparation method thereof. A fusion casting and ball milling method is adopted, which comprises the specific steps: (1) under vacuum or argon protection, Mg-Li-Al alloy ingot is melted and cast in an induction furnace; (2) the ingot is milled into fines with a milling machine and is thinning ground in a ball milling machine for 2-20 hours; (3) reaction milling is carried out under hydrogen atmosphere; the hydrogen pressure is 0.1-1 MPa; hydrogen is filled in a ball milling tank to the initial value of the hydrogen pressure at short intervals during the ball milling process; and the way of compulsory cooling is adopted to control the working temperature in the ball milling tank less than 50-60 DEG C; then the mg-based multiphase hydrogen storage material is prepared after argon packaging. The preparation process of the method and modification of the material are accomplished simultaneously. The initial hydrogen desorption peak temperature of the prepared hydrogen storage material is only 62 DEG C and the hydrogen storage amount is as high as 10.6wt percent. The hydrogen storage material is black nano-powder and has large hydrogen storage amount, low temperature and rapid speed for hydrogen desorption. The material can be used for hydrogen fuel vehicles, rechargeable batteries and fuel cells, etc. The method has moderate preparation condition, simple device and convenient operation.
Owner:CHONGQING UNIV

Manufacturing method of metal-hydride hydrogen storage tank

The invention relates to a manufacturing method of a metal-hydride hydrogen storage tank. The method includes the steps of machining of a tank body, machining of a flange cover, machining of foam copper elements, preparation of hydrogen storage alloy powder and assembly line assembling and production of the hydrogen storage tank. The hydrogen storage tank comprises parts including a round foam copper cover, a mat type copper net, a clamping sleeve type ball valve, an air pipe, a UJR joint, the flange cover, bolts, an O-shaped sealing ring, cooling fins, the tank body, the hydrogen storage alloy powder, a foam copper drum, a foam copper disk, a copper-water heating pipe, a foam copper cylinder and the like. The manufacturing method is high in production efficiency, high in yield and low inmanufacturing cost, the metal-hydride hydrogen storage tank manufactured with the method is simple in structure, high in space utilization rate, large in hydrogen storage amount, good in sealing performance, excellent in heat and mass transfer performance, high in hydrogen absorption and release speed and good in long-time use safety, breakage of the tank body due to hydrogen absorption expansionof a hydrogen storage material can be avoided, no cooling media are required to be introduced, repeated recycling can be realized, and the use cost is low.
Owner:YANGZHOU UNIV

Rare earth hydrogen storage material and preparation method thereof

ActiveCN111647773AGood reversible hydrogen absorption and desorption characteristicsImprove structural stabilityHydrogenArgon atmospherePhysical chemistry
The invention discloses a rare earth hydrogen storage material and a preparation method thereof, and relates to AB2-type yttrium-magnesium-nickel base rare earth hydrogen storage materials. The rare earth hydrogen storage material thereof is a yttrium-magnesium-nickel base hydrogen storage material having a general formula of YaAbMgcNixBy, and the material has a mixed-phase structure that regardsthe AB2-type (Y,A,Mg)(Ni,B)2 phase as a main phase, and contains the A2B4-type (Y,A)Mg(Ni,B)4 phase and AB3-type (Y,A,Mg)(Ni,B)3 phase at the same time. The preparation method thereof adopts a methodof induction melting, and anneals the obtained alloy ingot in a vacuum or argon atmosphere. In the AB2-type yttrium-magnesium-nickel base rare earth hydrogen storage material provided by the invention, A side is replaced by the Mg part, which can obviously improve the structural stability of AB2 phase in alloys and reduce hydrogen-induced amorphization and hydrogen-induced disproportionation of alloys; at the same time, Al, Mn and the like with a larger atomic radius are used to replace Ni elements to increase the unit cell volume of alloys, thereby increasing the hydrogen storage capacity ofalloys; and the material has good characteristic of reversible hydrogen absorption and desorption, and the maximum hydrogen storage capacity is greater than 1.6wt.%.
Owner:GRIMAT ENG INST CO LTD

Traction truck chassis platform suitable for fuel cell and traction truck

A traction truck chassis platform suitable for a fuel cell and a traction truck relate to the technical field of hydrogen energy automobiles and comprise a frame, an electric pile assembly, a hydrogen cylinder assembly, a motor assembly, a power cell, a super capacitor, a motor controller, a power supply distribution unit, a high-voltage distribution box and a driving assembly. The electric pile assembly, the power distribution unit and the high-voltage distribution box are all located on the front frame, the hydrogen bottle assembly, the motor assembly, the super capacitor and the motor controller are all located on the middle frame, and the power battery and the super capacitor are both located on the rear frame. The hydrogen bottle assembly is used for storing hydrogen and conveying the hydrogen to the electric pile assembly; the electric pile assembly is used for carrying out a fuel cell chemical reaction and transmitting generated electric energy to the super capacitor; and the super capacitor stores the electric energy generated by the electric pile assembly and provides the electric energy for the power battery. By designing a new chassis framework of the traction truck, arrangement and installation of different systems in the traction truck are achieved.
Owner:黄冈格罗夫氢能汽车有限公司

Magnesium, aluminum, boron and nickel-based hydrogen storage material and preparing method thereof

The invention discloses a magnesium, aluminum, boron and nickel-based hydrogen storage material. The chemical component of the magnesium, aluminum, boron and nickel-based hydrogen storage material is xAl-yB-zNi-(1-x-y-z)Mg, wherein the mass fraction, by weight, of x is larger than or equal to 1% and smaller than or equal to 5%, the mass fraction, by weight, of y is larger than or equal to 0.5% and smaller than or equal to 1%, and the mass fraction, by weight, of z is larger than or equal to 5% and smaller than or equal to 20%. A preparing method for the hydrogen storage material comprises the steps that magnesium powder, nickel powder, boron powder and aluminum powder are evenly mixed according to the composition and pressed into a cylinder with the diameter of 10 mm and the height of 8 mm; and then a cubic press is used for heat preservation and pressure maintaining for 30-60 min at 4-6 GPa and 1200-1800 DEG C; and liquid nitrogen is immediately used for cooling an alloy, and the magnesium, aluminum, boron and nickel-based hydrogen storage material is obtained. The preparing method is simple and short in production period, and the prepared hydrogen storage alloy has the good performance of being short in activation period, high in hydrogen absorbing and desorbing rate and the like.
Owner:YANSHAN UNIV

Ti-Cr-V solid solution alloy with high weight of hydrogen and low V content

The invention relates to a Ti-Cr-V solid solution alloy with high hydrogen storage capacity as well as low V content, which belongs to the new material field. The invention comprises a Ti element, a Cr element and a V element and is characterized in that the alloy is formed by the alloying of the a binary cluster Cr7Ti6 and the nearby composite by adding few V; the composite scope is (TiCry)(100 minus x)/(1 plus y)Vx, that is, V atom per centage scope x is equal to 2 minus 10at. per cent, and Cr/Ti atom per centage scope y is equal to 0.96 minus 1.44; the maximum hydrogen absorption capacity of the solid solution alloy Ti43.8Cr51.2V5 and Ti42.9Cr50V7.1 with maximum hydrogen uptake is 3.2wt. per cent (313K), which processes good hydriding and dehydriding kinetics performance; the solid solution alloy with low V content is processed by adopting the vacuum arc melting and the water-cooled copper mold method. The invention has the advantages that the invention defines the composite range of the low V content in accordance with the cluster, which overcomes the arbitrary composite selection. By adoption of the water-cooled copper mold method, the invention ensures the alloy is the V solid solution alloy structure with low V content, and simplies the process preparation; the invention is capable of replacing the solid solution alloy with V content, lowers the material cost and is capable of being used as fuel cell hydrogen source alloy.
Owner:DALIAN UNIV OF TECH

Method for preparing magnesium-based nanocomposite hydrogen storage material

The invention relates to a method for preparing a magnesium-based nanocomposite hydrogen storage material, and belongs to the technical field of hydrogen storage materials. In the method, carbon nanotubes are grown in situ on the surface of a molecular sieve to serve as a substrate, rare earth lanthanum is used as a target, a layer of lanthanum hydride film is formed on the surface of the substrate by sputtering to serve as a filler of the hydrogen storage material, and with magnesium hydride as a raw material, the magnesium-based nanocomposite hydrogen storage material is prepared by mechanical ball milling. When hydrogen molecules make contact with the material, the hydrogen molecules are adsorbed on the alloy surface, H-H bonds of the hydrogen molecules dissociate into atomic hydrogen,hydrogen atoms diffuse inwards from the material surface to be immersed into metal atoms with the radius much larger than that of the hydrogen atoms and among crystal lattices in the gaps of metal toform a solid solution, hydrogen solidly dissolved in the metal continues to diffuse inwards, the diffusion must have activation energy of conversion from chemical adsorption to dissolution, after thesolid solution is saturated by hydrogen, excess hydrogen atoms react with the solid solution to produce metal hydride, and thus the purpose of hydrogen storage is achieved.
Owner:深圳市亚环环保科技有限公司

Organic liquid material for hydrogen storage, catalytic hydrogen storage system and hydrogen storage method

PendingCN114497630AIncreased theoretical hydrogen storage capacityImprove liquidityReactant parameters controlDibenzyltoluenePtru catalyst
The invention discloses an organic liquid material for hydrogen storage, a catalytic hydrogen storage system and a hydrogen storage method.The organic liquid material is composed of a hydrogen storage raw material A and a hydrogen storage raw material B. The hydrogen storage raw material A is one or two of benzyl toluene and dibenzyl toluene, the mass content of the dibenzyl toluene is not larger than 80%, and the mass content of the hydrogen storage raw material B is not larger than 80%. The hydrogen storage raw material B is one or more of naphthalene, 1-methylnaphthalene and 2-methylnaphthalene. The catalytic hydrogen storage system comprises an organic liquid material for hydrogen storage and a hydrogen storage reaction catalyst, and the hydrogen storage reaction catalyst is a supported metal catalyst and comprises a catalyst carrier and a catalyst active metal component. The invention solves the problem of lack of hydrogen storage technology based on organic liquid materials in the technical field at present, and has the advantages of low raw material cost, large scale, low-temperature liquid property, low catalyst cost in the hydrogen storage process, large hydrogen storage capacity, relatively mild hydrogen storage conditions and the like.
Owner:DONGFANG HONGSHENG NEW ENERGY APPL TECH RES INST

Mobile intensive marine instant hydrogen production and hydrogenation integrated system

The invention relates to the technical field of hydrogen fuel cell ships, in particular to a mobile intensive marine instant hydrogen production and hydrogenation integrated system. The system comprises a container, a first container compartment, a second container compartment, a third container compartment and a fourth container compartment are arranged in the container, a photovoltaic power generation unit is arranged on the container, an ethanol dehydrogenation hydrogen production unit is arranged in the second container compartment, and a hydrogen purification unit is arranged in the third container compartment. And a hydrogen filling unit is arranged in the fourth container compartment. The movable intensive marine instant hydrogen production and hydrogenation integrated system is mounted on the deck of the guarantee ship, and the hydrogen is produced and used at present, so that maneuverability supply of the hydrogen fuel cell ship can be realized, the situation that the hydrogen fuel cell ship needs to frequently go back and forth to a fixed port base for hydrogen supply is avoided, and the working efficiency of the hydrogen fuel cell ship is improved.
Owner:CHINA SHIP SCIENTIFIC RESEARCH CENTER (THE 702 INSTITUTE OF CHINA SHIPBUILDING INDUSTRY CORPORATION)

Magnesium nickel-petroleum coke activated carbon composite hydrogen storage material and preparation method thereof

The invention relates to a magnesium nickel-petroleum coke activated carbon composite hydrogen storage material and a preparation method thereof, and belongs to the technical field of hydrogen storage alloy materials. The method comprises the following steps: 1, preparing petroleum coke activated carbon; 2, preparing Mg-Ni hydrogen storage alloy; and 3, loading the composite hydrogen storage material: 31) uniformly mixing the petroleum coke activated carbon prepared in the step 1 with the Mg-Ni hydrogen storage alloy prepared in the step 2, and then placing the mixture on a muffle furnace protected by an argon atmosphere for high-temperature sintering; 32) placing the sintered composite hydrogen storage material in a hydrogenation reactor for activating treatment; and (33) putting the activated composite hydrogen storage material into a tablet press, and extruding the composite hydrogen storage material into a cylindrical shape. The spherical cage effect can be generated by means of dense apertures and gaps of the petroleum coke activated carbon, discrete aggregation of the pulverized hydrogen storage alloy is efficiently limited, and the magnesium nickel-petroleum coke activated carbon composite hydrogen storage material has the advantages of being high in hydrogen storage capacity, high in hydrogen absorption and desorption rate, low in strain accumulation and the like.
Owner:SHANDONG UNIV

A kind of rare earth hydrogen storage material and its preparation method

ActiveCN111647773BGood reversible hydrogen absorption and desorption characteristicsImprove structural stabilityHydrogenArgon atmosphereIngot
A rare earth hydrogen storage material and preparation method thereof, involving an AB 2 Type yttrium-magnesium-nickel-based rare earth hydrogen storage materials. It is characterized in that its rare earth hydrogen storage material is composed of general formula Y a A b Mg c Ni x B y yttrium-magnesium-nickel-based hydrogen storage material; the material has a 2 Type (Y,A,Mg)(Ni,B) 2 The phase is the main phase and contains A at the same time 2 B 4 Type (Y,A)Mg(Ni,B) 4 Phase and AB 3 Type (Y,A,Mg)(Ni,B) 3 mixed-phase structure. The preparation method adopts the induction melting method, and the obtained alloy ingot is annealed under vacuum or argon atmosphere. An AB of the present invention 2 Type yttrium-magnesium-nickel-based rare earth hydrogen storage material, the A side is partially replaced by Mg, which can significantly improve the AB in the alloy 2 Phase structure stability, reducing hydrogen-induced amorphization and hydrogen-induced disproportionation of the alloy. At the same time, Al, Mn, etc. with a larger atomic radius are used to replace Ni elements to increase the unit cell volume of the alloy, thereby increasing the hydrogen storage capacity of the alloy. The material has good reversible hydrogen absorption and desorption characteristics, and the maximum hydrogen storage capacity is greater than 1.6wt.%. .
Owner:GRIMAT ENG INST CO LTD

A magnesium-based hydrogen storage alloy containing a long-period ordered stacking structure and its preparation method

A magnesium-based hydrogen storage alloy containing a long-period ordered stacking structure, its chemical formula is Mg‑aX‑bY‑cLi, X represents one of V or Co, a, b, and c represent mass percentages, 3% ≤a≤8%, 17%≤b≤19%, 0.5%≤c≤1%, and the balance is Mg; the preparation method of the above-mentioned magnesium-based hydrogen storage alloy is mainly to put the alloy particles of the above-mentioned composition into a ball mill tank, and press Add 4-6mm stainless steel grinding balls at a ball-to-material ratio of 15:1-20:1, rotate at a speed of 300-400r / min, stop for 10 minutes after running for 30 minutes, and obtain powder with an average particle size of 50-90nm after ball milling for 30-50 hours , placed in a vacuum high-temperature furnace, heated to 200°C in an argon atmosphere and kept at a temperature of 24 hours, to prepare a magnesium-based hydrogen storage alloy with a long-period ordered stacking structure. The process equipment of the invention is simple and easy to control, and the cost is low, the hydrogen absorption and desorption temperature of the prepared magnesium-based hydrogen storage alloy is moderate, and the hydrogen absorption and desorption kinetic performance is good.
Owner:YANSHAN UNIV

Application of metal nitrogen-based hydrogen storage material in hydrogen isotope separation and preparation method of metal nitride

The invention discloses application of a metal nitrogen-based hydrogen storage material in hydrogen isotope separation or enrichment and a preparation method of metal nitride. According to the application of the metal nitrogen-based hydrogen storage material in separation or enrichment of hydrogen isotopes, a gas mixture containing the hydrogen isotopes and the metal nitrogen-based hydrogen storage material are contacted and treated, so that the hydrogen isotopes are separated or enriched; the metal nitrogen-based hydrogen storage material comprises at least one of a metal nitride, a metal imino compound and a metal amino compound. The metal nitrogen-based hydrogen storage material provided by the invention has relatively good hydrogen isotope separation efficiency, and T2, D2 and H2 in hydrogen isotopes can be purified and separated or enriched and stored. The preparation method of the metal nitride is a mechanical ball milling method, is simple and low in energy consumption, can be used for large-scale synthesis, and can be used for preparing the high-purity powdery metal nitride without high temperature and high pressure.
Owner:DALIAN INST OF CHEM PHYSICS CHINESE ACAD OF SCI

Magnesium-based hydrogen storage alloy containing long-period ordered accumulation structure and preparation method of magnesium-based hydrogen storage alloy

The invention provides magnesium-based hydrogen storage alloy containing a long-period ordered accumulation structure. The chemical molecular formula of the magnesium-based hydrogen storage alloy is Mg-aX-bY-cLi, X represents one of V or Co, a, b and c represent mass percentage, a is larger than or equal to 3% and smaller than or equal to 8%, b is larger than or equal to 17% and smaller than or equal to 19%, c is larger than or equal to 0.5% and smaller than or equal to 1% and the balance Mg. The preparation method of the magnesium-based hydrogen storage alloy mainly includes the steps that alloy particles containing the above ingredients are put into a ball milling tank, stainless steel grinding balls with the size being 4-6 mm are added into the ball milling tank according to the ball material ratio of (15:1)-(20:1), the rotation speed is 300-400 r/min, rotation is stopped for 10 minutes after operation is performed for 30 minutes, powder with the average particle size being 50-90 nm is obtained after ball milling is performed for 30-50 hours and placed into a vacuum high-temperature furnace, the power is heated to 200 DEG C under an argon gas atmosphere, heat preservation is performed for 24 hours, and the magnesium-based hydrogen storage alloy containing the long-period ordered accumulation structure is prepared. According to the process, equipment is simple and easy to control, the cost is low, the hydrogenation and dehydrogenation temperature of the prepared magnesium-based hydrogen storage alloy is moderate, and hydrogenation and dehydrogenation dynamics performance is good.
Owner:YANSHAN UNIV
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