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首页> 外文期刊>Chemical Engineering Communications >A Procedure for the Development of a Low-Cost Treatment Technology of Raw Biogas for Application in a Gas Engine. A Case of Sizing a Carbon Dioxide Removal Unit
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A Procedure for the Development of a Low-Cost Treatment Technology of Raw Biogas for Application in a Gas Engine. A Case of Sizing a Carbon Dioxide Removal Unit

机译:开发用于燃气发动机的原始沼气的低成本处理技术的程序。调整二氧化碳去除装置尺寸的情况

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A test laboratory (lab) for carbon dioxide (CO2) adsorption from raw biogas onto a novel adsorbent was used to size a CO2 removal unit in the development of a low-cost biogas treatment technology. The novel adsorbent was made out of clay and burnt maize cob particles, impregnated with hot natural alkaline solution of pH 10 +/- 0.5, degassed, and then activated at a temperature of 250 degrees C, thereby making it low cost. The activated absorbents were spherical balls of average diameter 17mm, density 410 kg/m(3), and surface area 128m(2)/g, and contained exchangeable ions due to the presence of clay and increased pore sizes due to impregnation, degassing, and activation. The effect of pressure drops on CO2 removal, the breakthrough curve, and the absorption isotherm were studied. As a result, reduced pressure drops enhanced CO2 removal and 102 Pa/m was the suitable pressure drop; pressure drops less than 102 Pa/m were impractical because the biogas did not exit. The breakthrough curve was in typical s-shape and thus satisfied its use for determining the adsorption rate constant (k(1)) to be 0.0019521/mg s and the maximum percent of CO2 removal to be 87.8% at 102 Pa/m pressure drop and temperatures ranging from 20 to 28 degrees C. The isotherm was found to closely conform to the definition of the Freundlich equation with the Freundlich coefficient of 0.01809 (l/g)(n), where n = 1.37 at the same temperature range. Therefore, the determined k1 and fitted Freundlich isotherm can be used to size the CO2 adsorption unit under these conditions.
机译:在开发低成本沼气处理技术的过程中,利用测试实验室(实验室)将原始沼气中的二氧化碳(CO2)吸附到新型吸附剂上,以确定脱碳单元的大小。该新型吸附剂是由粘土和燃烧的玉米芯颗粒制成的,用pH 10 +/- 0.5的热天然碱性溶液浸渍,脱气,然后在250摄氏度的温度下活化,从而使其成本低廉。活化的吸收剂是平均直径17mm,密度410 kg / m(3)和表面积128m(2)/ g的球形球,由于存在粘土而含有可交换离子,并且由于浸渍,脱气,和激活。研究了压降对CO 2去除,穿透曲线和吸收等温线的影响。结果,降低的压降提高了CO2的去除率,102 Pa / m是合适的压降。压降低于102 Pa / m是不切实际的,因为沼气没有排出。穿透曲线呈典型的s形,因此满足其用于确定吸附速率常数(k(1))为0.0019521 / mg s和在102 Pa / m压降下最大CO2去除百分比为87.8%的要求。等温线非常符合Freundlich方程的定义,其Freundlich系数为0.01809(l / g)(n),其中在相同温度范围内n = 1.37。因此,在这些条件下,可以使用确定的k1和拟合的Freundlich等温线确定CO2吸附单元的尺寸。

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