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Scaling-Up Catalytic Depolymerisation of Lignin: Performance Criteria for Industrial Operation

机译:木质素的缩放催化解聚:工业运作绩效标准

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摘要

Much scientific research has been carried to convert lignin into valuable biobased chemicals or fuels. Most of these studies had the objective to develop active and selective catalysts for effective lignin depolymerization; this with little regard for the parameters that are necessary for later commercialization of these technologies. In this work, we have chosen as a case study a process that has been extensively studied and reported on earlier by our group. This process converts (technical) lignin into mainly aromatic compounds, using supercritical ethanol and a Cu–Mg–Al mixed oxide catalyst. Here, we investigate the impact of scaling up this process from lab to bench scale. More specifically, we study the influence of higher lignin loadings than previously reported on, amongst other parameters, monomer yield, solvent losses and catalyst fouling; all of which being critical performance parameters for industrial operation. After we examined the technical feasibility of our process at 4?L scale, we further looked into the economic viability of this technology, by introducing two performance criteria, both of which being a function of lignin monomer yield. The ratios (g/g) of yield over total feed, and yield over ethanol losses are presented as qualitative indicators for capital expenditure (CAPEX) and operational expenditure (OPEX), respectively. This exercise sheds some much needed light on the trade-off between yield optimization and cost minimization.
机译:携带许多科学研究将木质素转化为有价值的生物化的化学品或燃料。这些研究中的大多数都有目的是为有效的木质素解解化产生活性和选择性催化剂;这几乎没有考虑到这些技术的稍后商业化所必需的参数。在这项工作中,我们选择了一个案例研究,这一过程在我们的小组之前已经过广泛研究过。该方法将(技术)木质素转化为主要是芳族化合物,使用超临界乙醇和Cu-Mg-Al混合氧化物催化剂。在这里,我们调查将该过程从实验室扩展到长凳规模的影响。更具体地说,我们研究比以前报道的高等木质素载荷的影响,在其他参数,单体产量,溶剂损失和催化剂结垢中;所有这些都是工业操作的关键性能参数。在我们审查了我们的过程的技术可行性,我们进一步研究了这项技术的经济可行性,通过引入两个性能标准,这两种性能标准是木质素单体产量的函数。总饲料产量的比率(G / g),以及乙醇损失的产量分别作为资本支出(CAPEX)和业务支出(OPEX)的定性指标。这项练习在收益率优化和成本最小化之间进行了一些需要的折衷。

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