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Trends of exergy costs and ore grade in global mining

机译:全球矿业挖掘成本和矿石等级的趋势

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This paper appraises the energy requirements for mineral production through an exergy approach taking into account the long-term decline in ore grades. In this context, the exergy required for restoring resources from the dispersed state of the so called Crepuscular Earth into the physical and chemical conditions in which it was delivered by the ecosystems in light of the available technology, is known as exergy cost. The exergy cost is the point of reference in order to evaluate in a single variable, characteristics such as composition, concentration (ore grade) and the state of technology. The ratio between the exergy cost and the minimum thermodynamic cost required to accomplish the same process is called unit exergy cost and provides a measure of the irreversibility of the analyzed processes. Otherwise, the ore grade is one of the main issues which affects directly the costs associated with mining the ore. Hence, the unit exergy costs to produce minerals from progressively lower ores grades by the current technology is analyzed. The unit exergy cost curves are presented for some important minerals such as aluminium, chromium, cobalt, copper, gold, lead, manganese, nickel and zinc, in order to know the trend when the ore grade decreases.
机译:本文通过出于出境的方法来考虑到矿石等级的长期下降,评价矿产生产的能源要求。在这种情况下,从So所谓的乳糜料地球的分散状态恢复资源所需的驱动器在鉴于可用技术,所谓的物理和化学条件,被称为漏洞成本。漏洞成本是参考点,以便在单一变量中评估组成,浓度(矿石等级)和技术状态。漏洞成本与实现相同过程所需的最小热力学成本之间的比率称为单位漏洞成本,并提供了分析过程的不可逆转性的量度。否则,矿石等级是直接影响与开采矿石相关的成本的主要问题之一。因此,分析了通过目前技术从逐步降低矿石等级生产矿物质的单位暴风成本。对于一些重要的矿物,诸如铝,铬,钴,铜,金,铅,锰,镍和锌等一些重要的矿物,以了解该单位漏洞成本曲线,以了解矿石等级降低时的趋势。

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