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A non-linear irreversible thermodynamic perspective on organic pigment proliferation and biological evolution

机译:有机颜料增殖和生物进化的非线性不可逆热力学透视

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The most important thermodynamic work performed by life today is the dissipation of the solar photon flux into heat through organic pigments in water.From this thermodynamic perspective,biological evolution is thus just the dispersal of organic pigments and water throughout Earth's surface,while adjusting the gases of Earth's atmosphere to allow the most intense part of the solar spectrum to penetrate the atmosphere and reach the surface to be intercepted by these pigments.The covalent bonding of atoms in organic pigments provides excited levels compatible with the energies of these photons.Internal conversion through vibrational relaxation to the ground state of these excited molecules when in water leads to rapid dissipation of the solar photons into heat,and this is the major source of entropy production on Earth.A non-linear irreversible thermodynamic analysis shows that the proliferation of organic pigments on Earth is a direct consequence of the pigments catalytic properties in dissipating the solar photon flux.A small part of the energy of the photon goes into the production of more organic pigments and supporting biomass,while most of the energy is dissipated and channeled into the hydrological cycle through the latent heat of vaporization of surface water.By dissipating the surface to atmosphere temperature gradient,the hydrological cycle further increases the entropy production of Earth.This thermodynamic perspective of solar photon dissipation by life has implications to the possibility of finding extra-terrestrial life in our solar system and the Universe.
机译:今天的生活中最重要的热力学工作是通过水中有机颜料耗散太阳能光子通量在热量中的热量。这是这种热力学的角度来看,生物进化只是在地球表面的有机颜料和水的分散,同时调整气体允许太阳光谱最强烈的部分渗透到大气层并到达这些颜料截取的表面的大气层。原子在有机颜料中的共价键合提供与这些光子的能量相容的激发水平。可以通过当在水中导致太阳能光子的快速散热时,振动弛豫对这些激发分子的地位,这是地球上熵产生的主要来源。非线性不可逆热力学分析表明有机颜料的增殖在地球上是颜料催化性质的直接后果签发太阳能光子磁通。光子的一小部分能量进入生产更多有机颜料和支撑生物质,而大多数能量通过地表水的蒸发热量散发并引导到水文循环中。通过将表面散发到大气温度梯度,水文循环进一步增加了地球的熵产生。这种热力学的光子耗散的热力学视角,生命对我们在太阳系和宇宙中找到了陆地生活的可能性具有影响。

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