Utilization of Oak (Quercus petreae (Matt.) Liebl.) Bark for Anaerobic Digested Biogas Production

Q4 Agricultural and Biological Sciences
Ádám Nándor Makk, T. Rétfalvi, T. Hofmann
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引用次数: 2

Abstract

Abstract Fossil fuel depletion has led to an increasing number of research studies and applications focusing on renewable energy, such as different types of biomass. Lignocellulosic biomass represents an abundant source of biomass suitable for energy production in various forms. The present research investigates the application possibility of pedunculate oak bark (Quercus petrea (Matt.) Liebl.) for the production of biogas via anaerobic digestion. This research has significant novelty, as only a few examples on the utilization of tree bark wastes for the production of biogas can be found in the scientific literature. One of the key factors of increasing biogas yield is the efficient hydrolysis of the basic material, which is achieved by different pretreatment methods. In this study, oak bark was pretreated by microwave energy, by extraction, and by the combination of these two methods. The semi-continuous thermophylic anaerobic digestion of untreated oak bark resulted a 76.3 ml/g volatile solid specific methane yield over a 50-day period, which was not significantly lower than methane yield gained from pretreated basic material. Results indicated that oak bark is suitable for the production of biogas even without the application of the investigated pretreatment techniques. As extraction of oak bark does not impair biogas production, the complex biorefinery utilization of oak bark in the form of extraction bark polyphenols and the subsequent anaerobic fermentation of lignocellulosic residue can be accomplished in the future.
栎(Quercus petreae)的利用Liebl)。树皮用于厌氧消化沼气生产
化石燃料的枯竭导致越来越多的研究和应用集中在可再生能源,如不同类型的生物质。木质纤维素生物质代表了丰富的生物质来源,适合各种形式的能源生产。本研究探讨了带梗橡树皮(Quercus petrea)的应用可能性。(Liebl.)通过厌氧消化生产沼气。这项研究具有显著的新颖性,因为在科学文献中只有少数关于利用树皮废物生产沼气的例子。提高沼气产率的关键因素之一是基础原料的有效水解,不同的预处理方法可以实现有效的水解。本研究采用微波能法、萃取法和两种方法相结合的方法对橡树皮进行预处理。对未经处理的橡树皮进行半连续热源厌氧消化,50 d的挥发性固体甲烷比产率为76.3 ml/g,不显著低于预处理基础材料的甲烷产率。结果表明,即使不采用所研究的预处理技术,橡树皮也适合生产沼气。由于橡树皮的提取不影响沼气的生产,因此未来可以以提取树皮多酚的形式对橡树皮进行复杂的生物炼制利用,并随后对木质纤维素残渣进行厌氧发酵。
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来源期刊
Acta Silvatica et Lignaria Hungarica
Acta Silvatica et Lignaria Hungarica Agricultural and Biological Sciences-Forestry
CiteScore
0.90
自引率
0.00%
发文量
0
审稿时长
12 weeks
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