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Biophysical Viscosity: Thermodynamic Principles ofPer Capita Chemical Potentials in Human Populations

机译:生物物理粘度:热力学原理人均化学势

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摘要

Dynamic viscosity has been used to describe molecular resistance to flow under an applied force. This study introduces the theory of biophysical viscosity, the resistance of a region to molecular flow under environmental force to define the rates of per capita anthropogenic chemical efflux into the environment. Biophysical viscosity is an important intermediate quantity, in that it can be used to calculate the chemical potentials of single molecules for individuals in a population. Nonhypothetical emission data was combined with chemical potentials of anthropogenic tracers, to demonstrate that thermodynamic quantities can be used as parameters to directly compare energies associated with individual chemical emissions across geographic regions. These results indicate that population density is not the only factor in the determination of population-level chemical efflux and that biophysical viscosity is a useful tool in determining the per capita chemical potentials of anthropogenic chemicals for environmental risk assessment.
机译:动态粘度已用于描述分子在施加力下的流动阻力。这项研究介绍了生物物理粘度的理论,即在环境力作用下一个区域对分子流的抵抗力,以定义人均人为化学物质向环境中的外排率。生物物理粘度是一个重要的中间量,因为它可以用于计算单个分子对人群中个体的化学势。非假设排放数据与人为示踪剂的化学势相结合,证明了热力学量可以用作参数,以直接比较与跨地理区域的单个化学排放有关的能量。这些结果表明,人口密度不是确定人口水平化学物质外流的唯一因素,并且生物物理粘度是确定人为化学物质的人均化学势以进行环境风险评估的有用工具。

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