工业电穿孔装置的研制

C. Schultheiß, H. Bluhm, H. Mayer, M. Kern
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引用次数: 1

摘要

生物细胞的电穿孔(EP)在生物技术领域具有越来越重要的意义。通过在水悬浮液中沿生物细胞施加外电场,细胞质变得极化。细胞质和悬浮液中的电荷位移导致高的跨膜电位,其数量级为几伏。在细胞膜上形成不可逆的大开口,细胞质流出和细胞死亡是预期的效果。本文的主题是i)报告在全作物EP系统中的实验。已经获得了甜菜、苹果、葡萄等的经验,ii)为工业EP生产装置提供设计研究。必须处理的植物材料的量约为1吨/分钟。由于作物植物,如甜菜,直径很大,在水中几乎没有重量(悬浮),EP反应器的大小必须很大,植物必须通过强制进料的方式连续移动。这需要非常高的电压脉冲来在30厘米的间隙内建立大约20千伏/厘米的反应堆场强,以及高脉冲重复率来满足功率需求。在卡尔斯鲁厄Forschungszentrum Karlsruhe,已经开发和测试了几种带有气体火花间隙的马克思发电机。它们的脉冲频率在20-30赫兹之间。脉冲幅值为300 W,脉冲长度为1 /spl mu/s,输入20负载的脉冲能量约为1 kJ。电气元件的寿命设计可承受至少2亿次放电循环(3个月的运行)。该系统由极压电抗器和输送装置组成,主要由介电材料构成,以避免在电抗器室区域产生不希望的电场屏蔽效应。然而,高压绝缘材料,如聚乙烯或聚丙烯,会增加机械磨损,这一点必须考虑在内。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Development of an industrial electroporation device
Electroporation (EP) of biological cells is of increasing importance in the area of bio-technology. By applying external electric fields along biological cells in a water suspension the cytoplasm becomes polarized. The charge displacement in the cytoplasm and in the suspension leads to high transmembrane potentials in the order of several volts. The build-up of large irreversible openings in the cell membrane, the flow-out of cytoplasm and the cell-perish are the desired effects. The subject of this paper is i) to report on experiments at an EP system with whole crop plants. Experiences have been gained already with sugar beets, apples, grapes, etc., ii) to present design studies for an industrial EP production device. The amount of plant material, which must be treated is in the order of 1 t/min. Since crop plants, such as sugar beets, are large in diameter and nearly weightless in water (suspension), the size of an EP reactor has to be large and the plants must be moved continuously by means of a forced feed-through. This requires very high voltage pulses to establish reactor field strengths of about 20 kV/cm in the 30 cm gap, as well as high pulse repetition rates to fulfill power demands. At the Forschungszentrum Karlsruhe several types of Marx generators with gas spark gaps have been developed and tested. They run with pulse frequencies in the order of 20-30 Hz. The pulse amplitude is 300 W, the pulse length is 1 /spl mu/s and the pulsed energy fed into a 20 load is about 1 kJ. The lifetime of the electric components is designed to withstand at least up to 200 million discharge cycles (3 month operation). The system consisting of the EP reactor plus conveyance is designed to be built up mainly of dielectric materials to avoid undesired shielding effects of the electric field in the area of the reactor chamber. However high voltage-proof dielectric materials such as polyethylene or polypropylene underlie enhanced mechanical wear which must be taken into account.
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