磁制冷
制冷
磁铁
液化
磁场
材料科学
钬
磁化
核工程
热力学
机械工程
物理
光学
激光器
量子力学
工程类
作者
Noriki Terada,Hiroaki Mamiya
标识
DOI:10.1038/s41467-021-21234-z
摘要
Abstract Magnetic refrigeration (MR) is a method of cooling matter using a magnetic field. Traditionally, it has been studied for use in refrigeration near room temperature; however, recently MR research has also focused on a target temperature as low as 20 K for hydrogen liquefaction. Most research to date has employed high magnetic fields (at least 5 T) to obtain a large entropy change, which requires a superconducting magnet and, therefore, incurs a large energy cost. Here we propose an alternative highly efficient cooling technique in which small magnetic field changes, Δ μ 0 H ≤ 0.4 T, can obtain a cooling efficiency of −Δ S M /Δ μ 0 H = 32 J kg −1 K −1 T −1 , which is one order of magnitude higher than what has been achieved using typical magnetocaloric materials. Our method uses holmium, which exhibits a steep magnetization change with varying temperature and magnetic field. The proposed technique can be implemented using permanent magnets, making it a suitable alternative to conventional gas compression–based cooling for hydrogen liquefaction.
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