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青贮饲料中霉菌毒素对沼气生产的影响。

Effect of Mycotoxins in Silage on Biogas Production.

作者信息

Kintl Antonín, Vítěz Tomáš, Huňady Igor, Sobotková Julie, Hammerschmiedt Tereza, Vítězová Monika, Brtnický Martin, Holátko Jiří, Elbl Jakub

机构信息

Agricultural Research, Ltd., Zahradní 1, 664 41 Troubsko, Czech Republic.

Department of Agricultural, Food and Environmental Engineering, Faculty of AgriSciences, Mendel University in Brno, Zemědělská 1, 613 00 Brno, Czech Republic.

出版信息

Bioengineering (Basel). 2023 Dec 2;10(12):1387. doi: 10.3390/bioengineering10121387.

Abstract

Mycotoxins can pose a threat to biogas production as they can contaminate the feedstock used in biogas production, such as agricultural crops and other organic materials. This research study evaluated the contents of deoxynivalenol (DON), zearalenone (ZEA), fumonisin (FUM), and aflatoxin (AFL) mycotoxins in maize silage prior to it being processed in a biogas plant and in digestate produced at the end of the anaerobic digestion (AD) process. In the experiment, three samples of silage were collected from one silage warehouse: Variant 1 = low contamination, Variant 2 = medium contamination, and Variant 3 = heavy contamination, which were subjected to investigation. A significantly reduced biogas production was recorded that was proportional to the increasing contamination with molds, which was primarily due to the AD of silage caused by technologically erroneous silage treatment. The AD was connected with changes in silage composition expressed by the values of VS content, sugar content, lactic acid content, acetic acid content, and the ratio of lactic acid content to acetic acid content. The production of biogas and methane decreased with the increasing contents of NDF, ADF, CF, and lignin. The only exception was Variant 2, in which the content of ADF, CF, and lignin was lower (by 8-11%) than that in Variant 1, and only the content of NDF was higher (by 9%) than that in Variant 1. A secondary factor that also correlated with changes in the composition of the substrate was the development of undesirable organisms, which further contributed to its degradation and to the production of mycotoxins. It was also demonstrated in this study that during the AD process, the tested mycotoxins were degraded, and their content was reduced by 27-100%. Only the variant with low mold contamination showed a DON concentration increase of 27.8%.

摘要

霉菌毒素会对沼气生产构成威胁,因为它们会污染沼气生产中使用的原料,如农作物和其他有机材料。本研究评估了玉米青贮饲料在沼气厂加工前以及厌氧消化(AD)过程结束时产生的沼渣中脱氧雪腐镰刀菌烯醇(DON)、玉米赤霉烯酮(ZEA)、伏马菌素(FUM)和黄曲霉毒素(AFL)霉菌毒素的含量。在实验中,从一个青贮仓库收集了三个青贮饲料样本:变体1 = 低污染,变体2 = 中等污染,变体3 = 高污染,并对其进行了调查。记录到沼气产量显著降低,这与霉菌污染的增加成正比,这主要是由于青贮饲料处理技术错误导致的青贮饲料厌氧消化。厌氧消化与青贮饲料成分的变化有关,这些变化由挥发性固体(VS)含量、糖含量、乳酸含量、乙酸含量以及乳酸含量与乙酸含量的比值来表示。沼气和甲烷的产量随着中性洗涤纤维(NDF)、酸性洗涤纤维(ADF)、粗纤维(CF)和木质素含量的增加而降低。唯一的例外是变体2,其中ADF、CF和木质素的含量比变体1低(8 - 11%),只有NDF的含量比变体1高(9%)。与底物成分变化也相关的第二个因素是不良生物体的生长,这进一步促进了底物的降解和霉菌毒素的产生。本研究还表明,在厌氧消化过程中,所测试的霉菌毒素被降解,其含量降低了27 - 100%。只有霉菌污染低的变体显示DON浓度增加了27.8%。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b9f3/10740816/f805ea5a09f8/bioengineering-10-01387-g0A1.jpg

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5
Effect of carbon-enriched digestate on the microbial soil activity.
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6
Financial losses for Dutch stakeholders during the 2013 aflatoxin incident in Maize in Europe.
Mycotoxin Res. 2021 May;37(2):193-204. doi: 10.1007/s12550-021-00429-9. Epub 2021 Mar 30.
7
New insight into microbial degradation of mycotoxins during anaerobic digestion.
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8
Effect of the mycotoxin aflatoxin B1 on a semi-continuous anaerobic digestion process.
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Fate of mycotoxins and related fungi in the anaerobic digestion process.
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