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CO2 capture of calcium based sorbents developed by sol-gel technique in the presence of steam

机译:蒸汽存在下通过溶胶-凝胶技术开发的钙基吸附剂的二氧化碳捕集

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摘要

The carbonation-calcination of CaO is considered one of the promising technologies for capturing CO2 from fossil fuel power plants. The problem of this technology is the decay in reactivity of the sorbent over multiple cycles. CaO sorbents were synthesized by the sol-gel process to improve CO2 capture capacity and sintering resistant of the sorbents. The focus of this paper is to investigate the influence of steam, which will be present in flue gases, on the reactivity of the sorbents synthesized by the sol-gel process. Steam in carbonation or calcination atmosphere only enhanced CO2 capture capacity of the synthesized sorbents, with greater influence presenting in carbonation atmosphere of 15% CO2/10% H2O/N-2 balance. The further enhanced positive effect of steam on carbonation of sorbents is presented with 5% steam in carbonation and 10% steam in calcination atmosphere. The synthesized sorbents demonstrate high and relatively stable reactivity, even under the severe but more realistic conditions, enabling a conversion of 0.79 and 0.76 for CaO-MgO and CaO-MnO2 respectively after 50 cycles. Relatively stable pore volume and excellent pore size distribution of the synthesized sorbents under these conditions accounts for the high carbonation conversion. (C) 2016 Elsevier B.V. All rights reserved.
机译:CaO的碳化煅烧被认为是从化石燃料发电厂捕获CO2的有前途的技术之一。该技术的问题是在多个循环中吸附剂的反应性下降。通过溶胶-凝胶法合成了CaO吸附剂,以提高CO2捕获能力和吸附剂的抗烧结性。本文的重点是研究烟气中将存在的蒸汽对通过溶胶-凝胶法合成的吸附剂的反应性的影响。在碳酸化或煅烧气氛中的蒸汽仅增强了合成吸附剂的CO 2捕集能力,而在碳酸化气氛中以15%CO 2/10%H 2 O / N-2平衡存在更大的影响。在碳酸气中有5%的蒸汽和在煅烧气氛中有10%的蒸汽时,蒸汽对吸附剂碳化的积极作用进一步增强。合成的吸附剂即使在严峻但更现实的条件下也显示出较高且相对稳定的反应性,在50个循环后,CaO-MgO和CaO-MnO2的转化率分别为0.79和0.76。在这些条件下合成吸附剂的相对稳定的孔体积和出色的孔径分布说明了高碳酸化转化率。 (C)2016 Elsevier B.V.保留所有权利。

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