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The bentonite was found to be a better fluoride barrier than kaolin, especially when volumetric changes from swelling were minimised by clamping.
The CEC of natural bentonite was found to be 98.8 mmol/100 g of clay, and BENAEAPS was found to be 135.1 mmol/100 g of clay, as listed in Table 1.
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For the bentonite-based materials, it was found that thermal contraction also occurs at low OCR values, but this is suction dependent suction promotes thermal dilation.
Good agreement was found for the bentonite blocks supporting the canister.
It was found that the SAPC with bentonite clay exhibited the highest water absorption of approximately 730 g/g.
To stabilize the bore hole it was found that higher percentage of bentonite is required to achieve desired properties of fluid as compared to polymer as the required parameters suggested by the IS code for bentonite fluid.
A positive correlation was found between the free swell of the bentonites and the liquid limit of the bentonites and soil-bentonite mixtures.
Finally, the functionalized FA was found to be cost-effective over API-grade bentonite.
The hydraulic conductivity of the mixtures was found to be a function of the liquid limit of both bentonites and the soil-bentonite mixtures.
It was found that a weight proportion of 80% catalyst and 20% bentonite clay had well enough strength to use in the reactor during reaction without any breakage or loss in weight of the catalyst.
Compressibility was found to decrease with the addition of powdered coagulation aids such as bentonite and chitosan.
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