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铁、石灰和多孔陶瓷粉末添加剂对厌氧消化过程中啤酒糟产甲烷的影响。

Effects of Iron, Lime, and Porous Ceramic Powder Additives on Methane Production from Brewer's Spent Grain in the Anaerobic Digestion Process.

作者信息

Syguła Ewa, Rasaq Waheed A, Świechowski Kacper

机构信息

Department of Applied Bioeconomy, Wrocław University of Environmental and Life Sciences, 37a Chełmońskiego Str., 51-630 Wrocław, Poland.

出版信息

Materials (Basel). 2023 Jul 26;16(15):5245. doi: 10.3390/ma16155245.

Abstract

The process of anaerobic digestion used for methane production can be enhanced by dosing various additive materials. The effects of these materials are dependent on various factors, including the processed substrate, process conditions, and the type and amount of the additive material. As part of the study, three different materials-iron powder, lime, and milled porous ceramic-were added to the 30-day anaerobic digestion of the brewer's spent grain to improve its performance. Different doses ranging from 0.2 to 2.3 g × L were tested, and methane production kinetics were determined using the first-order model. The results showed that the methane yield ranged from 281.4 ± 8.0 to 326.1 ± 9.3 mL × g, while substrate biodegradation ranged from 56.0 ± 1.6 to 68.1 ± 0.7%. The addition of lime reduced the methane yield at almost all doses by -6.7% to -3.3%, while the addition of iron powder increased the methane yield from 0.8% to 9.8%. The addition of ceramic powder resulted in a methane yield change ranging from -2.6% to 4.6%. These findings suggest that the use of additive materials should be approached with caution, as even slight changes in the amount used can impact methane production.

摘要

用于甲烷生产的厌氧消化过程可通过添加各种添加剂材料来增强。这些材料的效果取决于多种因素,包括处理的底物、工艺条件以及添加剂材料的类型和用量。作为研究的一部分,将三种不同的材料——铁粉、石灰和研磨的多孔陶瓷——添加到啤酒糟的30天厌氧消化过程中,以改善其性能。测试了0.2至2.3 g×L的不同剂量,并使用一级模型确定了甲烷生产动力学。结果表明,甲烷产量在281.4±8.0至326.1±9.3 mL×g之间,而底物生物降解率在56.0±1.6至68.1±0.7%之间。添加石灰几乎在所有剂量下都会使甲烷产量降低6.7%至3.3%,而添加铁粉会使甲烷产量提高0.8%至9.8%。添加陶瓷粉导致甲烷产量变化范围为-2.6%至4.6%。这些发现表明,使用添加剂材料时应谨慎,因为即使使用量的微小变化也会影响甲烷产量。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4990/10420120/75bd80f0a22e/materials-16-05245-g0A1.jpg

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