一种吸附-反应-储存一体化水合物固态储氢装置及方法

By utilizing an integrated adsorption-reaction-storage hydrate solid hydrogen storage device, which employs MOFs composite hydrogen storage materials and a multi-layer composite structure, the problems of high hydrogen permeability and significant safety hazards have been solved, achieving efficient and safe hydrogen storage and transportation.

CN116447511BActive Publication Date: 2026-07-17ZHENGZHOU UNIVERSITY OF LIGHT INDUSTRY

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
ZHENGZHOU UNIVERSITY OF LIGHT INDUSTRY
Filing Date
2023-04-19
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

Existing hydrogen storage technologies suffer from high hydrogen permeability, significant safety risks, and high storage costs, and are unable to meet the needs of large-scale, long-distance hydrogen storage and transportation.

Method used

An integrated adsorption-reaction-storage hydrate solid hydrogen storage device is adopted, which utilizes MOFs composite hydrogen storage materials and multi-layer composite structures, combined with pre-cooling treatment and refrigerant liquid convective heat transfer, to achieve pre-cooling, adsorption and reaction of hydrogen to generate hydrates, thereby improving the hydrogen storage rate and enhancing safety.

Benefits of technology

It significantly improves the storage rate and safety of hydrogen, reduces the cost of hydrogen storage, meets the needs of large-scale, long-distance hydrogen storage and transportation, and increases the hydrate formation rate and hydrogen storage density.

✦ Generated by Eureka AI based on patent content.

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Abstract

本发明公开了一种吸附‑反应‑储存一体化水合物固态储氢装置及方法,包括:箱体,所述箱体为多层复合结构,所述多层复合结构外层为铝合金材料、中层为聚丙稀材料及内层为聚烯烃材料,所述箱体外壁设置有输液管和输气管;罐体,一个或多个所述罐体可拆卸地设置在所述箱体内部,所述罐体内部填充基于碳基材料穿插的MOFs复合储氢材料;预冷盘管,所述预冷盘管设置在所述箱体内壁;进气口,所述进气口与所述预冷盘管相连通。本发明结合吸附储氢和水合物储氢两种技术,其显著提高了氢气的储存率,降低了储氢成本,提高了储氢的安全性,能够满足大规模、长距离的氢气储运需求,有利于氢能在工业应用中推广。
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