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Technoeconomic analysis of continuous biodrying process in conjunction with gasification process at pulp and paper mills

机译:与纸浆纸厂的气化过程结合恒生生物水平工艺的技术经济分析

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In the biorefinery context, thermochemical processes have attracted a significant attention in recent years. Such processes generally consist of three main steps: pretreatment, thermochemical treatment, and post-treatment. In these developing processes, drying and feeding of biomass feedstock remain a significant and costly challenge. The moisture content of biomass feedstock must be decreased to an economic level at pretreatment step otherwise it has to have a detrimental effect on the process efficiency and quality of products. This work addresses the drying of biomass feedstock using novel but practical technology, called biodrying. It is a green technology that offers an opportunity for biomass drying without using an external heat source or fossil fuels, since drying energy is generated through exothermic microbial activity in the biomass that enhances the drying rate. This paper focuses on technoeconomic assessment of continuous biodrying technology integrated to gasification-based biorefinery and investigates the conditions that make such novel technology viable in conjunction with gasification process. Fixed capital investment and operating cost of different biodrying scenarios were estimated as M$4.3-21 and M$0.85/y-3.6/y, respectively, and potential benefits (sludge landfilling cost, energy savings, and carbon credit) from integration of the continuous biodrying system in gasification process implemented in pulp and paper mill were calculated, and ultimately economic performances of the scenarios were assessed. Furthermore, the viable biodrying conditions were specified as 4-day residence time and the major viability risk was found to be bound moisture of biomass.
机译:在生物遗产背景下,近年来,热化学过程引起了重大关注。这些方法通常由三个主要步骤组成:预处理,热化学处理和后处理。在这些开发过程中,生物质原料的干燥和饲料仍然是显着且昂贵的挑战。生物质原料的水分含量必须在预处理步骤中的经济水平降低,否则它必须对产品的工艺效率和产品质量产生不利影响。这项工作解决了使用新颖但实用的技术的生物量原料的干燥,称为生物晶。它是一种绿色技术,提供生物质干燥的机会而不使用外部热源或化石燃料,因为通过生物质中的放热微生物活性产生干燥能量,这提高了干燥速率。本文重点介绍了持续基于气化的生物遗炼的连续生物水合技术的技术经济评估,并研究了与气化过程一起使用这种新技术的条件。不同生物素描方案的固定资本投资和运营成本分别估计为4.3-21美元和0.85美元/ y-3.6 / y,潜在的益处(污泥填埋成本,节能和碳信用)免于连续的生物晶计算了在纸浆和造纸厂实施的气化过程中的系统,并评估了这种情况的经济性能。此外,可行的生物水洗条件被规定为4天停留时间,发现主要的活力风险被发现是含糊的生物质的水分。

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