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Preventing biofouling in heat exchangers : an experimental assessment of the effects of water velocity and inorganic particles on deposit detachment

机译:防止热交换器中的生物积垢:水流速和无机颗粒对沉积物脱离的影响的实验评估

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摘要

Biofouling is a costly problem in heat exchangers. Biocides can be used to minimize the formation of biofilms, but they are not always effective and, moreover, they are generally deleterious to the environment. The use of proper liquid velocities or of water jets in the exchanger tubes is also a means to prevent the build up of fouling deposits or to clean the surface once they are formed. Often, biofilms incorporate inorganic particles which modify the physical properties of the deposit and, thus, affect the effectiveness of anti-fouling measures. This paper presents experimental data that show the effects of the water velocity and of the presence of clay particles on the accumulation of biofilms and on their mechanical resistance to detachment caused by hydrodynamic forces. The results indicate that the fraction of dry biomass (micro-organisms plus extracellular biopolymers) in biofilms increases with the liquid velocity and that the deposits formed under higher hydrodynamic forces are more resistant to detachment. The resistance to detachment is even greater when the biofilms incorporate small (20 micrometer) clay particles.
机译:生物结垢是热交换器中的昂贵问题。可以使用杀生物剂来最小化生物膜的形成,但是它们并不总是有效的,而且,它们通常对环境有害。在交换器管中使用适当的液体速度或水射流也是防止结垢沉积物积聚或一旦形成结垢并对其进行清洁的一种手段。通常,生物膜会掺入无机颗粒,这些颗粒会改变沉积物的物理性能,从而影响防污措施的有效性。本文提供的实验数据表明水速和粘土颗粒的存在对生物膜积累及其对由水动力引起的脱离的机械阻力的影响。结果表明,生物膜中干燥生物质(微生物和细胞外生物聚合物)的比例随液速的增加而增加,并且在较高的水动力作用下形成的沉积物更易于分离。当生物膜掺入小的(20微米)粘土颗粒时,其抗分离性甚至更高。

著录项

  • 作者

    Vieira M. J.; Melo L. F.;

  • 作者单位
  • 年度 1997
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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