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Recent process improvements for the ammonia fiber expansion (AFEX) process and resulting reductions in minimum ethanol selling price

机译:氨纤维膨胀(AFEX)工艺的最新工艺改进,从而降低了最低乙醇销售价格

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The ammonia fiber expansion (AFEX) process has been shown to be an effective pretreatment for lignocellulosic biomass. Technological advances in AFEX have been made since previous cost estimates were developed for this process. Recent research has enabled lower overall ammonia requirements, reduced ammonia concentrations, and reduced enzyme loadings while still maintaining high conversions of glucan and xylan to monomeric sugars. A new ammonia recovery approach has also been developed. Capital and operating costs for the AFEX process, as part of an overall biorefining system producing fuel ethanol from biomass have been developed based on these new research results. These new cost estimates are presented and compared to previous estimates. Two biological processing options within the overall biorefinery are also compared, namely consolidated bioprocessing (CBP) and enzymatic hydrolysis followed by fermentation. Using updated parameters and ammonia recovery configurations, the cos: of ethanol production utilizing AFEX is calculated. These calculations indicate that the minimum ethanol selling price (MESP) has been reduced from
机译:氨纤维膨胀(AFEX)工艺已被证明是木质纤维素生物质的有效预处理。自从为此过程开发了以前的成本估算以来,AFEX取得了技术进步。最近的研究已使总氨需求降低,氨浓度降低和酶负荷降低,同时仍保持了葡聚糖和木聚糖向单体糖的高转化率。还开发了一种新的氨回收方法。基于这些新的研究成果,已经开发了AFEX工艺的资本和运营成本,作为整个生物精制系统的一部分,该系统由生物质生产燃料乙醇。提出这些新的成本估算并将其与以前的估算进行比较。还比较了整个生物精炼厂中的两个生物处理选项,即合并生物处理(CBP)和酶促水解后进行发酵。使用更新的参数和氨回收配置,可计算出利用AFEX生产乙醇的成本。这些计算表明,最低乙醇销售价格(MESP)已从

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