New approaches in pretreatment methods of beech particles in enzymatic hydrolysis – effect of impregnation time and reactor selection

Q4 Agricultural and Biological Sciences Nova Biotechnologica et Chimica Pub Date : 2022-08-24 DOI:10.36547/nbc.1247
A. Pažitný, A. Russ, Š. Boháček, M. Halaj, Š. Šutý, Ida Skotnicová, V. Ihnát
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Abstract

Waste dendromass is one of the least used types of biomass and together with waste from the harvesting and processing of agricultural crops, belongs to the wastes that have a high potential for the second-generation ethanol production. Mass concentration of biofuel added to fossil fuels is established by law and this concentration is determined within the reference values for each year. For example, for 2021 it was 8.0 % and for years from 2022 to 2030 the value will increase to 8.2 %. Biofuels in the so-called reference value in the total fuel content have been mandatory since 2017, while the specific reference value is calculated from the energy content of the total amount of fuels placed on the market. This paper provides initial considerations and pilot results based on experimental data obtained in our workplace concerning the application potential of selected type of dendromass – beech particles from the point of view of their pretreatment by steam explosion and steam extrusion for potential production of liquid biofuels based on lignocellulosic biomass. We compared temperature courses of the mentioned pretreatment methods and pretreated samples were tested by enzymatic hydrolysis. Enzymatic hydrolysis results showed that steam explosion and steam extrusion led to concentration enhancement of fermentable monosaccharides compared to original samples depending on used pretreatment method.
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酶解山毛榉颗粒预处理方法的新探索——浸渍时间和反应器选择的影响
废树突是利用最少的生物质类型之一,与农作物收获和加工产生的废弃物一起,属于第二代乙醇生产潜力较大的废弃物。添加到化石燃料中的生物燃料的质量浓度由法律规定,该浓度在每年的参考值范围内确定。例如,2021年这一比例为8.0%,2022年至2030年这一比例将增至8.2%。自2017年以来,生物燃料中所谓的参考值在总燃料含量中已被强制执行,而具体参考值则是从投放市场的燃料总量的能量含量中计算出来的。本文提供了基于我们工作场所获得的实验数据的初步考虑和试点结果,从蒸汽爆炸和蒸汽挤压预处理的角度来看,所选类型的树突-山毛榉颗粒的应用潜力,用于基于木质纤维素生物质的液体生物燃料的潜在生产。我们比较了上述预处理方法的温度过程,并对预处理后的样品进行了酶解测试。酶解结果表明,根据不同的预处理方法,蒸汽爆炸和蒸汽挤压使可发酵单糖的浓度比原始样品有所提高。
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来源期刊
Nova Biotechnologica et Chimica
Nova Biotechnologica et Chimica Agricultural and Biological Sciences-Food Science
CiteScore
0.60
自引率
0.00%
发文量
47
审稿时长
24 weeks
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