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地壳能量守恒与气候变化。

Energy conservation in the earth's crust and climate change.

机构信息

College of Life and Environment Sciences, Shanghai Normal University, Shanghai, China.

出版信息

J Air Waste Manag Assoc. 2013 Feb;63(2):150-60. doi: 10.1080/10962247.2012.739501.

Abstract

UNLABELLED

Among various matters which make up the earth's crust, the thermal conductivity of coal, oil, and oil-gas, which are formed over a long period of geological time, is extremely low. This is significant to prevent transferring the internal heat of the earth to the thermal insulation of the surface, cooling the surface of the earth, stimulating biological evolution, and maintaining natural ecological balance as well. Fossil energy is thermal insulating layer in the earth's crust. Just like the function of the thermal isolation of subcutaneous fatty tissue under the dermis of human skin, it keeps the internal heat within the organism so it won't be transferred to the skin's surface and be lost maintaining body temperature at low temperatures. Coal, oil, oil-gas, and fat belong to the same hydrocarbons, and the functions of their thermal insulation are exactly the same. That is to say, coal, oil, and oil-gas are just like the earth's "subcutaneous fatty tissue" and objectively formed the insulation protection on earth's surface. This paper argues that the human large-scale extraction of fossil energy leads to damage of the earth's crust heat-resistant sealing, increasing terrestrial heat flow, or the heat flow as it is called, transferring the internal heat of the earth to Earth's surface excessively, and causing geotemperature and sea temperature to rise, thus giving rise to global warming. The reason for climate warming is not due to the expansion of greenhouse gases but to the wide exploitation of fossil energy, which destroyed the heat insulation of the earth's crust, making more heat from the interior of the earth be released to the atmosphere. Based on the energy conservation principle, the measurement of the increase of the average global temperature that was caused by the increase of terrestrial heat flow since the Industrial Revolution is consistent with practical data.

IMPLICATIONS

This paper illustrates "pathogenesis" of climate change using medical knowledge. The mathematical verification is based on the principle of energy conservation. The central idea or clou in this paper is that fossil energy is a thermal insulating layer in the earth's crust, the thermal insulating layer was destroyed after human large-scale mining of fossil energy, and the internal heat of the earth was excessively released to the surface so as to cause climate change.

摘要

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在构成地壳的各种物质中,经过长时间的地质作用形成的煤、石油和油气的导热系数极低。这对于防止地球内部热量传递到地表隔热,冷却地球表面,刺激生物进化以及维持自然生态平衡非常重要。化石能源是地壳中的隔热层。就像真皮下皮下脂肪组织在人体皮肤中的隔热功能一样,它可以保持生物体内部的热量,不会转移到皮肤表面,从而在低温下维持体温。煤、石油、油气和脂肪都属于同类型的碳氢化合物,其隔热功能完全相同。也就是说,煤、石油和油气就像是地球的“皮下脂肪组织”,客观上在地球表面形成了隔热保护。本文认为,人类大规模开采化石能源会导致地壳耐热密封层受损,增加陆地热流,或称为热流量,从而过度将地球内部的热量传递到地球表面,导致地温和海水温度上升,从而引发全球变暖。气候变暖的原因不是温室气体的膨胀,而是化石能源的广泛开采,破坏了地球外壳的隔热功能,使更多来自地球内部的热量释放到大气中。基于能量守恒原理,自工业革命以来,由于陆地热流增加而导致全球平均温度升高的测量结果与实际数据一致。

意义

本文用医学知识来说明气候变化的“发病机制”。数学验证基于能量守恒原理。本文的核心思想或要点是,化石能源是地壳中的隔热层,人类大规模开采化石能源后,隔热层被破坏,地球内部的热量过度释放到地表,从而导致气候变化。

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