Magnetic Treatment of Oily Waste Water

M. Yorizane, O. Tozawa
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引用次数: 3

Abstract

After the addition of potassium chloride (90g) and of various amounts of ferrofluid (0.5∼4.0ml) to 3, 000ml of a kerosene-in-water emulsion containing 1, 000ppm of kerosene, it was treated magnetically in a magnetic field of 462, 871 and 1, 480 Oe. The flow rate of the emulsion was varied from 100 to 600ml/min. The effects of the amount of ferrofluid added, the magnetic field and the flow rate of emulsion on the oil removal efficiency were studied. As a result, the oil removal efficiency increased as the amount of ferrofluid added and the strength of magnetic field increased, but it decreased as the flow rate of emulsion increased. Ferrofluid is a stable colloidal dispersion of magnetic particles (D<150A) whose carrier liquid is kerosene.An equation for oil removal efficiency was theoretically derived. The calculated and measured values of oil removal efficiency are shown.
含油废水的磁处理
将氯化钾(90g)和不同数量的铁磁流体(0.5 ~ 4.0ml)加入3000毫升含有1000 ppm煤油的水包煤油乳液中,在462,871和1480欧的磁场下进行磁处理。乳状液流速为100 ~ 600ml/min。研究了铁磁流体加入量、磁场和乳化液流速对除油效果的影响。结果表明,除油效率随着铁磁流体加入量和磁场强度的增加而增加,但随着乳化液流量的增加而降低。铁磁流体是磁性颗粒(D<150A)的稳定胶体分散体,其载液为煤油。从理论上推导了除油效率方程。给出了除油效率的计算值和实测值。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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