首页> 外文期刊>Applied Catalysis, B. Environmental: An International Journal Devoted to Catalytic Science and Its Applications >Synergistic co-processing of an acidic hardwood derived pyrolysis bio-oil with alkaline Red Mud bauxite mining waste as a sacrificial upgrading catalyst
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Synergistic co-processing of an acidic hardwood derived pyrolysis bio-oil with alkaline Red Mud bauxite mining waste as a sacrificial upgrading catalyst

机译:酸性硬木衍生的热解生物油与碱性赤泥铝土矿开采废料作为牺牲性升级催化剂的协同共处理

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摘要

In this proof-of-concept study we demonstrate that co-processing of an acidic bio-oil (pH <3) produced by the fast pyrolysis of sawmill residue hardwood chips with alkaline (pH >12) Red Mud bauxite mining waste originating from the Bayer process can lead to a synergistic upgrading and value addition to both feed materials. The co-processing reaction is carried out in a pressure reactor at 365 °C and yields a stabilized, much less acidic and more energy-dense bio-oil with an oxygen content of 3.5% and heating value of 34 kJ/g compared to 43.1 % and 12 kJ/g, respectively, for the crude oil. In the same reaction the Red Mud acts as a sacrificial catalyst and is converted into a partially reduced magnetic neutral gray material with a carbon content of ~33% (w/w). This neutralized material may have possible use as an iron ore, iron ore pelletization binder or soil additive. The co-processing of the two waste streams - one derived from forestry by-products, the other from bauxite mining and processing operations - may thus offer attractive economic and ecologic synergies. Two principle possible scenarios for an actual realization for such a process on a larger scale are discussed.
机译:在此概念验证研究中,我们证明了通过将锯木厂残留硬木屑与碱(pH> 12)的红色泥铝土矿开采废料快速热解而产生的酸性生物油(pH <3)的共处理过程。拜耳法可以导致两种饲料原料的协同升级和增值。协同处理反应在365°C的压力反应器中进行,得到稳定的,酸性更低,能量密度更高的生物油,氧含量为3.5%,热值为34 kJ / g(相比之下,为43.1)原油分别为5%和12 kJ / g。在同一反应中,红色泥浆用作牺牲催化剂,并转化为碳含量约为33%(w / w)的部分还原的磁性中性灰色材料。该中和的材料可以用作铁矿石,铁矿石造粒粘合剂或土壤添加剂。因此,两种废物流的共同处理(一种来自林业副产品,另一种来自铝土矿开采和加工操作)可以提供有吸引力的经济和生态协同作用。讨论了针对这种过程的大规模实际实现的两种主要可能方案。

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