磁流体在交变磁场中的热效应
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卫生部科学研究基金资助项目(98-1-101).


The Heat Effect of Magnetic Fluid Under an Alternating Magnetic Field
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    摘要:

    以大豆卵磷脂为表面活性剂制备Fe3O4平均粒径为20 nm的磁流体,在10 kW,100 kHz的磁场中研究该磁流体的热效应.用温度计测量不同Fe3O4含量的水、琼脂的温度变化值,探讨Fe3O4含量和介质对温度的影响,为磁流体用于肿瘤热疗提供实验依据.实验结果表明,脂质磁流体在交变磁场作用下使周围升温,升温速度及平稳时的温度和Fe3O4的含量、磁场强度及周围介质有关,含量高,场强大,平稳温度值高,介质流动性好,加快热传递,升温快.通过调节磁场强度和磁流体的量可达到所需温度值.

    Abstract:

    Magnetic fileld was made of Fe3O4 particles and soybean licithin which was only 20 nm in diameter. The heat effect was studied under 10 kW, 100 kHz magnetic field. The temperature change was measured by a glass thermometer (±0.1℃) in agarose gel and distilled water with different Fe3O4 content respectively. The effect of magnetic intensity was discussed. This was an experimental basis for hyperthermia treatment tumors. The results indicated that the tempereature raised quickly as the increase of Fe3O4 concentrations and the magnetic field intensity. The tempereature finally remained constant due to the balance of heat generation and heat transfer to the surroundings. When Fe3O4 concentration were 1 g/L and 2 g/L, the balance temperature were respectively 41.9℃ and 47.5℃ as the magnetic field was 2.78×104 A/m. In 1 g/L Fe3O4 concentration, the magnetic field intensity were 2.78×104 A/m and 1.11×104 A/m, the temperature plateaus were at 41.9℃ and 30.7℃ respectively. The heat transfer faster in water than in agarose gel.

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施锋,吴敏.磁流体在交变磁场中的热效应[J].生物化学与生物物理进展,2000,27(3):281-283

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  • 收稿日期:1999-04-05
  • 最后修改日期:1999-08-02
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