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CuMgFeO 型尖晶石作为废木质生物质燃烧用潜在氧载体。

CuMgFeO-type spinels as potential oxygen carriers for waste wooden biomass combustion.

机构信息

Department of Engineering and Technology of Chemical Processes, Wroclaw University of Science and Technology, 7/9 Gdanska, 50-344 Wroclaw, Poland.

Department of Engineering and Technology of Chemical Processes, Wroclaw University of Science and Technology, 7/9 Gdanska, 50-344 Wroclaw, Poland.

出版信息

Waste Manag. 2024 Mar 1;175:146-156. doi: 10.1016/j.wasman.2023.12.057. Epub 2024 Jan 9.

DOI:10.1016/j.wasman.2023.12.057
PMID:38199169
Abstract

Waste wood biomass is considered a renewable energy source. Combining biomass combustion with emerging clean combustion technologies such as chemical looping combustion (CLC) can yield effective and affordable carbon capture and, consequently, lead to negative net emissions of greenhouse gases. Oxygen carrier (OC) is a crucial material in CLC technology that must exhibit certain properties, such as high durability, good chemical stability during numerous red-ox cycles and, important for the combustion of solid fuels, the capability of spontaneously releasing oxygen in a process referred to as chemical looping with oxygen uncoupling (CLOU). In this work, a series of nine CuMgFeO spinel-based materials were synthetized and evaluated for the first time as potential OCs for a waste biomass combustion. Their properties, such as oxygen transport capacity and reactivity with biomass (wood chips) as a fuel, were evaluated in a function of temperature (900-1000 °C). Tested oxygen carriers were characterized with an excellent oxygen transport capacity in CLOU process (up to 2.78 wt%) and good reaction rates with the fuel (up to 1.19 wt. %/min), and regeneration rates (up to 3.8 wt. %/min). High conversion of the waste biomass was also achieved (98.9 %). Moreover, new findings revealed a strong positive effect of magnesium addition on mechanical strength (crushing strength > 4 N for samples with Mg content above 0.5).

摘要

废木材生物质被认为是一种可再生能源。将生物质燃烧与新兴的清洁燃烧技术(如化学循环燃烧(CLC))相结合,可以实现有效的、经济实惠的碳捕获,从而导致温室气体的净负排放。氧载体(OC)是 CLC 技术中的关键材料,必须具有某些特性,例如在多次氧化还原循环中具有高耐久性、良好的化学稳定性,并且对于固体燃料的燃烧而言,重要的是能够在称为化学循环氧气解耦(CLOU)的过程中自发释放氧气。在这项工作中,首次合成了一系列九种基于 CuMgFeO 的尖晶石材料,并将其评估为废生物质燃烧的潜在 OC。评估了它们的性能,例如在温度(900-1000°C)范围内的氧气传输能力和与生物质(木屑)作为燃料的反应性。测试的氧载体在 CLOU 过程中具有出色的氧气传输能力(高达 2.78wt%)和与燃料的良好反应速率(高达 1.19wt.%/min)和再生速率(高达 3.8wt.%/min)。废生物质的转化率也很高(98.9%)。此外,新的发现揭示了镁的添加对机械强度(镁含量高于 0.5 的样品的破碎强度>4N)具有很强的积极影响。

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