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Effect of Ash on Oxygen Carriers for the Application of Chemical Looping Combustion to a High Carbon Char

机译:灰分对高碳焦炭化学循环燃烧中氧气载体的影响

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The application of Chemical Looping Combustion (CLC) to solid fuels is being investigated at the University of Kentucky, Center for Applied Energy Research (CAER) with the aim of the development of a Pressurized Chemical Looping Combustion/Gasification (PCLC/G) process for the generation of electricity from coal. One important aspect of the CLC of solid fuel is the understanding of the effect of ash on the reactivity of Oxygen Carriers (OCs). The effect of ash on the redox capabilities of two different iron oxide OCs and on their ability to oxidize coal char was studied. To determine the effect of ash on the reactivity and recycle of the OCs through multiple redox cycles, fly ash from a coal-fired power plant was used. These experiments were performed in a TGMS system using 500 mg of ash/OC mixtures containing different ash concentrations up to 75%. The reducing gas was composed of 10% H2, 15% CO, 20% CO2, and a balance of Ar and the oxidizing gas was 20% O2 in Ar. Oxidation/reductions were carried to near completion. The ash was found to contain OC activity related to inherent iron present in the ash confirmed by XRD. This resulted in increased weight gain/loss on oxidation/reduction. The rate of oxidation/reduction increased with ash concentration due to increased porosity of the OCIash mixture and better access of the reactive gases to the OC target sites. The two OCs were then used to combust a beneficiated coal char in the TGMS with the only oxygen supplied by an iron oxide OC. The starting mixture was 10% char and 90% of one of two OCs studied. The spent material containing reduced OC and ash was re-oxidized and 10% more char was added for a second reduction of the OC and oxidation of the added char. This procedure was repeated for 5 cycles increasing the ash concentrations from 5 to 25% in the charlashlOC mixture. Carbon removal was 92 to 97.8 and 97.3 to 99.7% for the two different iron oxide OCs tested. Ash was not detrimental to the activity of the OCs and both OCs performed well. The results were promising for the application of CLC directly to solid fuels.
机译:肯塔基大学应用能源研究中心(CAER)正在研究化学循环燃烧(CLC)在固体燃料中的应用,目的是开发一种用于化学循环燃烧/气化(PCLC / G)的方法煤炭发电。固体燃料CLC的一个重要方面是了解灰分对氧气载体(OCs)反应性的影响。研究了灰分对两种不同的氧化铁OC的氧化还原能力及其氧化煤焦能力的影响。为了确定灰分通过多个氧化还原循环对OC的反应性和再循环的影响,使用了来自燃煤电厂的飞灰。这些实验是在TGMS系统中使用500 mg含灰分浓度最高为75%的灰分/ OC混合物进行的。还原性气体由10%的H 2,15%的CO,20%的CO 2以及Ar的余量构成,并且氧化气体为Ar中的20%的O 2。氧化/还原进行到接近完成。发现该灰烬含有与XRD证实的灰烬中固有铁有关的OC活性。这导致增加的重量增加/氧化/还原损失。氧化/还原速率随灰分浓度的增加而增加,这是由于OCIash混合物的孔隙率增加以及反应性气体更好地进入OC目标位点所致。然后,使用这两种OC在TGMS中燃烧精选的煤焦,其中唯一的氧气由氧化铁OC提供。起始混合物为10%的炭和90%的两种OC之一。将含有还原的OC和灰分的废料重新氧化,并添加10%以上的炭,以进一步降低OC和氧化所添加的炭。重复该过程5个循环,以将夏拉10OC混合物中的灰分浓度从5%增加至25%。对于测试的两种不同的氧化铁OC,碳去除率为92%至97.8%和97.3%至99.7%。灰分对OC的活性无害,并且两个OC都表现良好。该结果对于将CLC直接应用于固体燃料是有希望的。

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