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The use of the cavitation effect in the mitigation of CaCO [sub] 3 deposits

机译:空化作用在减轻CaCO [sub] 3沉积物中的用途

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摘要

Hard mineral scale fouling results in significant economic losses both industrially and domestically. Recently, attempts have been made to use ultrasound to mitigate scale formation and its removal based on the phenomena of cavitation. Cavitation erosion is the removal of material from a solid surface by pressure shock waves associated with the formation and collapse of bubbles. This paper reviews the literature on cavitation erosion of brittle crystalline materials in an attempt to better understand the relationship between the material properties of CaCO3 scale deposits and its potential removal by cavitation. The study finds that from a materials perspective cavitation erosion is intimately associated to both a materials bulk properties and importantly to its microstructure. The situation is further complicated because the macro and micro-properties of CaCO3 scale are dependent on many factors relating to its depositional environment. The type of scale formed will affect how it is removed by cavitation.
机译:坚硬的矿物垢结垢在工业上和国内都会造成巨大的经济损失。近来,已经尝试使用超声波来减轻基于水蚀现象的水垢形成及其去除。空化侵蚀是通过与气泡形成和破裂相关的压力冲击波从固体表面去除材料。本文回顾了有关脆性晶体材料空化侵蚀的文献,以试图更好地理解CaCO3垢沉积物的材料特性与其通过空化去除的潜力之间的关系。该研究发现,从材料的角度来看,空化侵蚀与材料的整体性能密切相关,并且与材料的微观结构也很重要。由于CaCO3垢的宏观和微观性质取决于与其沉积环境有关的许多因素,因此情况更加复杂。形成的水垢的类型将影响通过气蚀将其去除的方式。

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