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Eggshell as a potential CO_2 sorbent in the calcium looping gasification of biomass

机译:蛋壳作为生物质钙循环气化中潜在的CO_2吸附剂

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This work presents an investigation into the potential use of eggshell as a CO2 sorbent in the calcium looping gasification of biomass to enhance carbon negativity. Calcination reaction was studied in a quartz wool matrix reactor and a thermogravimetric analyser coupled with a Fourier transform infrared spectroscopy. The resulting sorbent was characterised with a scanning electron microscope, colourimeter, inductively coupled plasma optical emission spectroscopy, and nitrogen sorption analyser. The pore structures of the samples are of Type II isotherm. Results show that increasing the calcination temperature enhances decomposition and improves the calcium content and specific surface area of the sorbent. As compared to nitrogen, calcination in a CO2 environment is not effective due to the increased CO2 partial pressure. Samples with low particle size displayed higher carbonation conversion. Increasing the carbonation temperature to an extent enhances the carbonation conversion. The carbonation conversion by the sorbent in multiple calcination-carbonation cycles was also studied. Initial CO2 uptake by the sorbent was highly encouraging. A conversion of 76.41% was realized after the first cycle, but due to sintering and attrition, the conversion reduced with increasing cycle. The sorbent exhibited a low conversion of 18% after the seventh cycle and this corresponds to a decay extent of 76.65%. (C) 2018 Elsevier Ltd. All rights reserved.
机译:这项工作提出了对蛋壳作为CO2吸附剂在生物质的钙环化气化中增强碳负性的潜在用途的研究。在石英棉基质反应器和热重分析仪中结合傅里叶变换红外光谱对煅烧反应进行了研究。用扫描电子显微镜,比色计,感应耦合等离子体发射光谱法和氮吸附分析仪对所得的吸附剂进行表征。样品的孔结构属于II型等温线。结果表明,提高煅烧温度可促进分解并改善钙含量和吸附剂的比表面积。与氮气相比,由于增加的CO2分压,在CO2环境中煅烧无效。低粒径样品显示更高的碳酸化转化率。将碳化温度提高到一定程度可提高碳酸转化率。还研究了在多个煅烧-碳酸化循环中吸附剂的碳酸化转化率。吸附剂最初吸收二氧化碳的能力令人鼓舞。在第一个循环后实现了76.41%的转化率,但是由于烧结和磨损,转化率随循环次数的增加而降低。在第七个循环之后,吸附剂表现出18%的低转化率,这相当于76.65%的衰减程度。 (C)2018 Elsevier Ltd.保留所有权利。

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