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An Evaluation of the Mechanical and Chemical Dispersion Methods for a Tropical Old Alluvium

机译:热带旧冲积层力学和化学分散方法的评价

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Resulting from tropical weathering, the old alluvium in San Juan, Puerto Rico contains Fe-oxides, which cause the formation of aggregates through both cementation and aggregation, and hence, is not readily dispersible in water. Various methods of sample preparation were adopted to disperse this deposit, consisting of mechanical remolding, varying dispersant type and quantity, and drying. The resultant degree of dispersion was evaluated by particle size analysis. Results reveal that both mechanical and chemical dispersion is required in order to obtain a completely dispersed and stable suspension, and chemical dispersion alone is not effective in disintegrating the aggregates caused by cementation. Drying usually includes mechanical, physico-chemical, and chemical reactions and can either disperse a soil or produce more aggregates, depending on drying temperature and a soil's chemistiy and composition. Air-drying disperses this soil more than oven-drying. This investigation also indirectly evaluated the applicability of the ASTM standard test method for particle size analysis to this deposit.
机译:由于热带风化,波多黎各圣胡安的旧冲积层含有铁氧化物,这些氧化物通过胶结作用和聚集作用而形成聚集体,因此不易分散在水中。采用各种样品制备方法分散沉积物,包括机械重塑,改变分散剂的种类和数量以及干燥。通过粒度分析评价所得的分散度。结果表明,要获得完全分散和稳定的悬浮液,既需要机械分散,也需要化学分散,而单独的化学分散并不能有效地分解由胶结作用引起的聚集体。干燥通常包括机械,物理化学和化学反应,并且可以分散土壤或产生更多的聚集体,具体取决于干燥温度以及土壤的化学性质和组成。空气干燥比烤箱干燥更能分散土壤。该研究还间接评估了ASTM标准测试方法对这种沉积物进行粒度分析的适用性。

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