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Consolidation theory applied to the Capillary Suction Time (cst) apparatus

机译:固结理论在毛细抽吸时间(cst)仪器中的应用

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The Capillary Suction Time-method was introduced in 1967, and was designed for establishing the dewaterability of sludge samples. The CST-test was developed as an alternative to the more cumbersome filtration tests using vacuum pumps. Over the years, extensive research has been conducted on models describing the dewatering process in this apparatus. Most of these models have been based on traditional filtration theory, comprising an assumed average cake filtration resistance. An alternative theory which has not been investigated in this respect before is the large-strain consolidation model proposed by Gibson (1967). When this particular consolidation theory is applied to the CST-apparatus, it can be shown that from measurements with the CST-test, conducted on a series of samples of a certain sludge or soil with different initial void ratios (or water contents), the coefficient of consolidation of the soil can be deduced. The benefits of this approach are multifold. BY describing the dewatering of a sludge with the consolidation theory, e.g. in a lagoon, filter press, centrifugal pumps and so forth, the dry matter content can be predicted with respect to time using the coefficient of consolidation found with the CST-test. Also, the influence of polyelectrolytes added to the sludge to improve the dewaterability can be measured quantitatively as an increase of the coefficient of consolidation. (C) 1998 IAWQ. Published by Elsevier Science Ltd. [References: 16]
机译:毛细抽吸时间法于1967年引入,旨在确定污泥样品的脱水能力。开发CST测试是使用真空泵进行更繁琐的过滤测试的替代方法。多年来,已经对描述该设备中脱水过程的模型进行了广泛的研究。这些模型大多数基于传统的过滤理论,包括假定的平均滤饼过滤阻力。 Gibson(1967)提出的大应变固结模型是之前尚未在这方面进行研究的另一种理论。当将这种特殊的固结理论应用于CST设备时,可以证明,通过CST测试对一系列具有不同初始空隙率(或水含量)的污泥或土壤样品进行的测量,可以推算出土壤的固结系数。这种方法的好处是多方面的。用固结理论描述污泥的脱水在泻湖,压滤机,离心泵等设备中,可以使用CST测试得出的固结系数来预测随时间变化的干物质含量。另外,随着固结系数的增加,可以定量地测量添加到污泥中的聚电解质对改善脱水性的影响。 (C)1998 IAWQ。由Elsevier Science Ltd.发布[参考文献:16]

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