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Application of Heat of Wetting for Determination of Soil-Specific Characteristics of Fine-Grained Soils

机译:湿热法在测定细粒土的土壤特性中的应用

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摘要

Conventionally, particle size distribution characteristics and consistency limits have been used to characterize fine-grained soils. However, these schemes of soil characterization are devoid of several other soil-specific parameters (viz., specific surface area, specific gravity, weight loss during heating, heat produced during the interaction of soil with water, chemical and mineralogical composition, zeta potential, cation-exchange capacity, and reactivity) that imbibe in them physical, chemical, mineralogical, and thermal characteristics or, in short, the "overall characteristics" of the soil. These characteristics are also useful to define soils with pollutants and contaminants, which result from rapid and indiscriminate industrialization. Hence, characterization of the soil based on its "heat of wetting," which imbibes the specific characteristics of the soil and is measured by the percentage increase in temperature (PIT) when soil-water interaction occurs, appears to be quite prudent and a novel idea or hypothesis. With this in view and to develop a soil characterization scheme, soils of completely different characteristics were allowed to interact with water in a calorimeter, and the PIT was measured precisely by employing a thermocouple. The PIT and various soil-specific parameters when correlated with each other yielded well-defined relationships. Utility of these relationships for a quick and easy characterization of fine-grained soils has also been demonstrated in this study.
机译:常规地,已经使用粒度分布特征和稠度极限来表征细粒土壤。但是,这些土壤表征方案没有其他几个特定于土壤的参数(比表面积,比重,加热过程中的重量损失,土壤与水相互作用时产生的热量,化学和矿物组成,ζ电位,阳离子交换能力和反应性)吸收了它们的物理,化学,矿物学和热学特性,或者简而言之,就是土壤的“总体特性”。这些特征对于定义污染物和污染物的土壤也很有用,这些污染物是由于快速而随意的工业化而产生的。因此,基于土壤的“湿热”对土壤进行表征非常谨慎和新颖,该表征吸收了土壤的特定特征,并通过当土壤与水发生相互作用时的温度升高百分比(PIT)进行测量。想法或假设。考虑到这一点并开发了一种土壤表征方案,允许性质完全不同的土壤与热量计中的水相互作用,并通过使用热电偶精确测量PIT。当相互关联时,PIT和各种土壤特定参数产生了明确定义的关系。在这项研究中还证明了这些关系对于快速,轻松地表征细粒土壤的效用。

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