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Study of HCl Absorption by CaO at High Temperature

机译:CaO在高温下吸收HCl的研究

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The reaction of CaO with HC1 was investigated in a fixed-bed reactor fabricated of quartz glass at high temperatures (600-800 ℃). The inlet HC1 concentration was 2000 ppm. Two sorbents with mean particle sizes of 163 and 465 μm were obtained by calcination of CaCO_3. The reaction rate constant was achieved by a deactivation model. The results show that sorbent S1 with small particle size has the higher reactivity and is insensitive to the reaction temperature. In this study, two sorbents have the highest capacity for binding HCI at 650 ℃. The breakthrough time of sorbent SI with a small particle size is longer than that of S2 with a large particle size. A quantity of CaCl_2 is evaporated at high temperatures, and it is one of main causes that the outlet HCI concentration does not increase sharply due to the formation of the CaCl_2 product layer. Possible mechanisms are proposed to explain the decrease of the chemical reaction rate with increasing temperature.
机译:在高温(600-800℃)石英玻璃固定床反应器中研究了CaO与HCl的反应。入口HCl浓度为2000 ppm。通过CaCO_3的煅烧获得了两种平均粒径分别为163和465μm的吸附剂。通过失活模型获得反应速率常数。结果表明,粒径小的吸附剂S1具有较高的反应活性,并且对反应温度不敏感。在这项研究中,两种吸附剂在650℃时具有最高的结合HCl的能力。小粒径吸附剂S1的穿透时间比大粒径吸附剂S2的穿透时间长。 CaCl_2的量在高温下蒸发,并且是由于形成CaCl_2产物层而导致出口HCl浓度没有急剧增加的主要原因之一。提出了可能的机理来解释化学反应速率随温度升高而降低。

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