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Sewage sludge ash as an alternative low-cost oxygen carrier for chemical looping combustion

机译:污水污泥灰作为化学循环燃烧的替代低成本氧气载体

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In this paper, novel low-cost oxygen carriers containing Fe_2O_3 are evaluated for use in chemical looping combustion. Sewage sludge ashes and reference samples were prepared and used in cyclic reduction and oxidation experiments in a thermogravimetric analyzer (TG). A gaseous (3 % H_2) fuel and a solid fuel (hard coal) were tested. Three-cycle CLC tests were carried out in the 600–800 ℃ temperature range and long-term testing was performed at 950 ℃. A reactivity study showed that the natural sewage sludge ash sample was stable during the cycling TG tests when hydrogen was used as a fuel at all of the temperatures investigated. Strong temperature effects on the oxygen transport capacity were observed. An onecycle test at 900 ℃ showed also that the sewage sludge ash successfully reacted with coal. The oxygen released was fully used for coal combustion, with appreciable reaction rate at temperature of ~750–800 ℃, that is significantly lower than that obtained for pure Fe_2O_3-based oxygen carrier. The oxidation reaction was much faster than the reduction reaction. Moreover, the sewage sludge ash showed a low tendency toward agglomeration in the cyclic test, which was superior to the behavior of synthetic materials. The sewage sludge ash exhibited also high mechanical strength, an attrition index of 1 % and a hightemperature resistance of 1,170 ℃ in a reducing atmosphere. We conclude that sewage sludge ash can be effectively used as a low-cost, valuable oxygen carrier in practical application in chemical looping combustion technology for power generation.
机译:在本文中,评估了新型廉价的含Fe_2O_3的氧气载体在化学循环燃烧中的应用。制备了污泥灰和参考样品,并在热重分析仪(TG)中用于循环还原和氧化实验。测试了气态(3%H_2)燃料和固态燃料(硬煤)。在600–800℃的温度范围内进行了三周期CLC测试,并在950℃下进行了长期测试。反应性研究表明,当在所有调查温度下使用氢气作为燃料时,循环TG试验中的天然污水污泥灰分样品是稳定的。观察到强烈的温度对氧气传输能力的影响。 900℃的单周期试验也表明污水污泥灰与煤成功反应。释放出的氧气可充分用于燃煤,在约750-800℃的温度下可观的反应速率,明显低于纯Fe_2O_3基氧气载体的反应速率。氧化反应比还原反应快得多。此外,在循环试验中,污水污泥的灰分不易结块,优于合成材料。污水污泥灰还具有较高的机械强度,在还原性气氛中的磨损指数为1%,耐高温性为1,170℃。我们的结论是,污水污泥灰可以有效地用作低成本,有价值的氧气载体,用于实际的发电化学循环燃烧技术。

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