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Determination of hand soil loading soil transfer and particle size variations after hand-pressing and hand-mouthing activities.

机译:确定手压和手打口活动后手的土壤负荷土壤转移和粒度变化。

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摘要

Hand-pressing trials and hand-to-mouth soil transfer experiments were conducted to better understand soil loadings, soil transfer ratios for three mouthing activities, and variations in particle size distributions under various conditions. Results indicated that sand caused higher soil loadings on the hand than clay. When the moisture level of clay soil exceeded its liquid limit, soil loadings also increased. Greater pressing pressures also led to larger clay loadings. Clay with a moisture content close to its plastic limit caused the smallest soil loadings due to strong soil cohesion. Particle sizes of the transferred clay were larger than that of the original clay, indicating that hand-pressing and the pressure exerted may have enhanced clay particles of larger sizes adhering onto the hand. Nevertheless, the sizes of most particles that adhered to the hand were still smaller than 150 μm. Higher pressing pressures and greater moisture contents resulted in larger soil loadings on the hand, and transfer ratios became smaller. Transfer ratios from palm-licking with clay particles were smaller than those from finger-mouthing, which may have been due to finer particles that more readily adhered to the skin of the palm and that were transferred from the hand to the mouth with greater difficulty.
机译:进行了手压试验和手到嘴的土壤迁移实验,以更好地了解土壤负荷,三种漱口活动的土壤迁移率以及各种条件下粒径分布的变化。结果表明,沙土造成的手部土壤负荷比粘土高。当粘土的水分含量超过其液体极限时,土壤负荷也增加。更大的压力也导致更大的粘土负载。水分含量接近其塑性极限的粘土由于强大的土壤内聚力而使土壤负荷最小。转移的粘土的颗粒尺寸大于原始粘土的颗粒尺寸,表明手压和施加的压力可能会使更大尺寸的增强的粘土颗粒粘附到手上。尽管如此,大多数粘附在手上的颗粒的尺寸仍小于150μm。较高的压制压力和较高的水分含量导致手上的土壤负荷增加,并且传递比变小。来自用粘土颗粒舔手掌的传递比率小于来自手指吹口的传递比率,这可能是由于更细的颗粒更易于粘附在手掌皮肤上,并且从手到口腔的传递难度更大。

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