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Finding New Catalysts and Process for the Production of Acrylic Acid from Propane

机译:寻找新的催化剂和生产丙烯酸丙烯酸的方法

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In our process of evaluating several different pathways from propane to acrylic acid, our approach was two-pronged: 1) Evaluate processes for technical feasibility and 2) Evaluate and develop catalysts which can be used in these processes. The constraints we had were to develop a process with favorable CO2 production balance versus existing processes (green chemistry) and to be economically favorable. We developed several alternative processes which were evaluated from a process perspective versus the known two-step production of propylene from propane and subsequent oxidation of propylene to acrylic acid. The current favorite process uses CO2 as an oxidant in addition to oxygen to form propylene (ODH reaction), followed by conventional oxidation of propylene to acrylic acid. This process possesses a favorable energy balance and high propane conversion potential. Catalysts for the involved ODH reaction with CO2 and oxygen as oxidants were found and are currently being optimized.
机译:在我们评估从丙烷的几种不同途径到丙烯酸的过程中,我们的方法是双推管:1)评估技术可行性和2)的方法,评价和开发可用于这些过程中的催化剂。我们所拥有的制约因素是开展有利的二氧化碳生产平衡与现有流程(绿色化学)的过程,并经济上有利。我们开发了几种替代方法,从过程视角与从丙烷的已知的两步生产和随后的丙烯氧化到丙烯酸的丙烯。除氧外,目前最喜欢的方法还使用CO 2作为氧化剂以形成丙烯(ODH反应),然后常规氧化丙烯至丙烯酸。该过程具有良好的能量平衡和高丙烷转换潜力。发现和作为氧化剂的CO 2和氧的相关ODH反应的催化剂并目前进行优化。

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