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Synthesis and Testing of Zeolite from Industrial-Waste Coal Fly Ash as Sorbent For Water Adsorption from Ethanol Solution

机译:以工业废粉煤灰为原料的乙醇溶液吸附剂的合成及测试

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In the present work, zeolite was prepared from industrial-waste coal fired ash (CFA) by fusion technique with and without acid-washing pretreatment under various conditions. The synthesized materials were then tested for water adsorption from bioethanol solution with an aim to produce a high purity ethanol (>99.5%) for later utilization in gasohol production manufacturing. From our studies, it was found that the impurities (i.e., Fe2O3, TiO2, MgO, CaO, K2O and SO3) in CFA could be efficiently removed by acid-washing pretreatment. Among three different acids studied (i.e. HCl, HNO3, and H2SO4), HCl exhibited the highest pretreatment performance, while the most suitable pretreatment conditions to enhance high purity raw material (up to 85% purity) were by using 20%HCl with the acid to CFA ratio of 25 mlHCl/gCFA at 80°C for 3 h. After fusion at 550oC with NaOH/CFA mass ratio of 2.25 and further crystallization at 90oC for 4 h, the pretreated CFA was converted to zeolite; from which the main phases were sodium aluminum silicate hydrate (1.08Na2O?Al2O3?1.68SiO2?1.8H2O) and faujasite-Na (Na2Al2Si2.4O8.8?6.7H2O). Regarding water adsorption testing, the synthesized zeolite provided comparable adsorption performance with the commercial grade molecular sieve. Under three adsorption cycles testing at 85oC, high ethanol purity (99.8%) could be achieved without deactivation being observed. (29 views)
机译:在目前的工作中,通过在不同条件下进行酸洗预处理和不进行酸洗预处理的熔融技术,由工业废煤粉(CFA)制备沸石。然后测试合成材料从生物乙醇溶液中的吸水率,目的是生产高纯度乙醇(> 99.5%),以便以后用于生产汽油。从我们的研究中发现,通过酸洗预处理可以有效地去除CFA中的杂质(即Fe2O3,TiO2,MgO,CaO,K2O和SO3)。在研究的三种不同的酸(即HCl,HNO3和H2SO4)中,HCl表现出最高的预处理性能,而增强高纯度原料(最高达85%的纯度)的最合适的预处理条件是使用20%的HCl在80°C下酸与CFA的比例为25 mlHCl / gCFA,持续3 h。在550oC下,NaOH / CFA质量比为2.25熔融,并在90oC下进一步结晶4小时后,预处理的CFA转化为沸石。从中主要相为水合硅酸钠铝(1.08Na2O2Al2O3→1.68SiO2→1.8H2O)和八面沸石Na(Na2Al2Si2.4O8.8→6.7H2O)。关于水吸附测试,合成沸石提供了与商业级分子筛相当的吸附性能。在85oC的三个吸附循环测试下,可以实现高乙醇纯度(99.8%),而没有观察到失活。 (29观看次数)

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