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Mechanism Underlying the Emission of Gases during the Low-Temperature Oxidation of Bituminous and Lignite Coal Piles: The Involvement of Radicals

机译:在沥青和褐煤煤桩的低温氧化过程中,气体排放的机制:激进的参与

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Coal is one of the major fuels for power generation, and it will continue in this capacity for the next several decades. Two types of coal are mainly used: lignite and bituminous coals. When exposed to air, post-mining, the coal surface undergoes LTO (low-temperature oxidation) at RT-150 °C according to the atmospheric oxygen level. The LTO process decreases the calorific value of the coal, and consequently, different gases are released [mainly carbon oxides (CO, CO_(2)), water vapor, hydrogen (H_(2)), and also some low molecular-weight organic gases (C_(1–5))]. Some of these gases are toxic and flammable. In extreme cases, fires erupt. The mechanism by which the molecular oxygen oxidizes the coal macromolecule at the temperature range of 30–150 °C (LTO process) is complex and also involves a chain of radical reactions that take place; however, the exact underlying mechanism is not yet clear. The LTO process was studied in detail by simulating the processes occurring in the coal piles by using two coal types: an American Bailey coal, used in Israeli coal-fired utilities and a German Hambach lignite, used in German utilities. The mechanism underlying the LTO process and the radical reactions that are involved are discussed in detail.
机译:煤炭是发电的主要燃料之一,它将在未来几十年中持续这种能力。主要使用两种煤:褐煤和沥青煤。当暴露于空气时,挖掘后,根据大气氧水平,煤表面在室温-150℃下进行LTO(低温氧化)。 LTO过程降低了煤的热值,因此,不同的气体被释放[主要是碳氧化物(CO,CO_(2)),水蒸气,氢气(H_(2)),以及一些低分子量有机物气体(C_(1-5))]]。其中一些气体有毒和易燃。在极端情况下,火灾爆发了。分子氧在30-150℃(LTO工艺)的温度范围内氧化煤大分子的机理是复杂的,并且还涉及发生的基团反应链;但是,确切的基础机制尚不清楚。通过使用两种煤炭类型模拟煤桩中发生的过程进行了详细研究了LTO工艺:美国贝利煤炭,用于以色列燃煤公用事业和德国汉堡褐煤,用于德国公用事业。详细讨论了LTO过程的基础和所涉及的自由基反应的机制。

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