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基于清洁器项目中钙循环膳食的熟料。

Clinker based on calcium looped meals from the Cleanker Project.

作者信息

Gastaldi Daniela, Canonico Fulvio, Merlo Valentino, Magli Francesco

机构信息

Built - Buzzi Innovation Lab and Technology, Vercelli, Italy.

Buzzi SpA, Casale Monferrato, Alessandria, Italy.

出版信息

J Microsc. 2024 May;294(2):90-104. doi: 10.1111/jmi.13243. Epub 2023 Nov 14.

Abstract

The Cleanker (CLEAN clinKER production by Calcium Looping process) project, financed in the framework of Horizon 2020 EU funding program, has demonstrated the feasibility of the integrated CaL concept at industrial scale in a new demo system realised in the Buzzi Unicem cement plant in Vernasca (IT). The Calcium Looping (CaL) CO capture process exploits the reversible reaction of limestone calcination/carbonation (CaCO ↔ CaO + CO). The Cleanker pilot plant consists of the coupling of a carbonator and an oxyfuel calciner. When the flue gases from kiln (containing CO) flow through the carbonator together with calcined meal, which acts as a CO sorbent, carbonation takes place and CO is fixed in calcium carbonate. CaO is then regenerated in the calciner, where the opposite reaction takes place, and the captured CO is released. When the lime/limestone looping is carried out through a carbonator and a calciner operated in oxyfuel, a concentrated CO stream is obtained that can be efficiently addressed towards CCS or CCUS processes. In the Cleanker Project, the possibility to use raw meal for clinker production has been exploited and the meals sampled at the outlet of the oxyfuel calciner have been characterised and used for producing clinker at a lab scale. Calcium looped (CaL) meals collected at different sampling point during the operation of the CaL plant were characterised by means of X-ray fluorescence spectroscopy, X-ray diffraction and particle size distribution. Electron scanning microscopy revealed significant differences in the surface of particles of the looped meals with respect to the original one, resulting from the loading and unloading of CO during the looping cycles. The meals were burnt in a laboratory furnace and the obtained clinkers have been characterised on a chemical, mineralogical and microscopical point of view, revealing the good burnability of all the meals and attesting the possibility to reintegrate the materials in the clinker production process. A lower alite/belite ratio in the clinker produced from the looped meals was observed: actually, the depletion of calcium during the recirculation of the meal in the calciner/carbonator system led to a reduction of the lime saturation factor influencing the mineralogical composition of the product.

摘要

“清洁器(通过钙循环工艺生产清洁熟料)”项目由欧盟“地平线2020”资助计划提供资金支持,已在位于意大利韦尔纳斯卡的布兹奇尼水泥公司新建的示范系统中,在工业规模上证明了集成钙循环概念的可行性。钙循环(CaL)二氧化碳捕集工艺利用石灰石煅烧/碳酸化的可逆反应(CaCO₃ ↔ CaO + CO₂)。“清洁器”中试装置由一个碳酸化器和一个富氧煅烧炉组成。当窑炉产生的含有CO的烟气与作为CO吸附剂的煅烧粉一起流经碳酸化器时,会发生碳酸化反应,CO被固定在碳酸钙中。然后CaO在煅烧炉中再生,发生相反的反应,并释放出捕获的CO。当通过在富氧条件下运行的碳酸化器和煅烧炉进行石灰/石灰石循环时,会获得一股浓缩的CO气流,可有效地用于CCS或CCUS工艺。在“清洁器”项目中,已探索了将生料用于熟料生产的可能性,并对富氧煅烧炉出口处采集的生料进行了表征,并用于实验室规模的熟料生产。在CaL工厂运行期间,在不同采样点收集的钙循环(CaL)生料通过X射线荧光光谱、X射线衍射和粒度分布进行了表征。电子扫描显微镜显示,循环生料颗粒表面与原始生料相比存在显著差异,这是由于在循环过程中CO的加载和卸载所致。这些生料在实验室炉中燃烧,所得熟料已从化学、矿物学和显微镜角度进行了表征,结果表明所有生料都具有良好的易烧性,并证明了将这些材料重新整合到熟料生产过程中的可能性。观察到由循环生料生产的熟料中阿利特/贝利特比例较低:实际上,生料在煅烧炉/碳酸化器系统中循环时钙的消耗导致石灰饱和系数降低,从而影响了产品的矿物组成。

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