Control of biogas production process by enzymatic and fluorescent image analysis

The process of methanogenesis, which is in the essence of the widely distributed technologies for biogas production, is slow, has multiple steps and occurs under anaerobic conditions. These factors make the control and the management of the anaerobic digestion difficult and impose the testing and im...

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Main Authors: Nora Dinova, Mihaela Belouhova, Irina Schneider, Jelyaz Rangelov, Yana Topalova
Format: Article
Language:English
Published: Taylor & Francis Group 2018-03-01
Series:Biotechnology & Biotechnological Equipment
Subjects:
Online Access:http://dx.doi.org/10.1080/13102818.2018.1425637
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spelling doaj-c98d7381b78b48bfa65481376d90483e2020-11-25T01:50:32ZengTaylor & Francis GroupBiotechnology & Biotechnological Equipment1310-28181314-35302018-03-0132236637510.1080/13102818.2018.14256371425637Control of biogas production process by enzymatic and fluorescent image analysisNora Dinova0Mihaela Belouhova1Irina Schneider2Jelyaz Rangelov3Yana Topalova4Sofia University ‘St. Kliment Ohridski’Sofia University ‘St. Kliment Ohridski’Sofia University ‘St. Kliment Ohridski’‘Sofiyska voda’ ADSofia University ‘St. Kliment Ohridski’The process of methanogenesis, which is in the essence of the widely distributed technologies for biogas production, is slow, has multiple steps and occurs under anaerobic conditions. These factors make the control and the management of the anaerobic digestion difficult and impose the testing and implementation of new indicators for control which are fast and focused on the activity and functioning of the methanogenic community in addition to the traditionally used technological parameters. In this study, the biogas production process in wastewater treatment plant ‘Kubratovo’ was analysed in two different seasonal situations and a correlation was made between the studied parameters for control. The complex methodological arsenal included the activities of aerobic and anaerobic dehydrogenase, fluorescent image analysis and key chemical and technological indicators. The correlation analysis showed that the fluorescent image analysis parameters (number/mean size of clusters; fluorescence intensity; area) had the strongest relationship with the biogas production. Based on these results, we propose a fluorescent indicative system for control of the biogas production technologies. It is a fast tool for assessment the effectiveness of the process of anaerobic digestion. Its focus on the activity and functioning of the biological system could contribute to the optimization of the whole performance of these technologies and could serve as a prediction tool for potential problems in the future.http://dx.doi.org/10.1080/13102818.2018.1425637Anaerobic digestionbiogascontrolenzymatic activitiesimage analysisfluorescence
collection DOAJ
language English
format Article
sources DOAJ
author Nora Dinova
Mihaela Belouhova
Irina Schneider
Jelyaz Rangelov
Yana Topalova
spellingShingle Nora Dinova
Mihaela Belouhova
Irina Schneider
Jelyaz Rangelov
Yana Topalova
Control of biogas production process by enzymatic and fluorescent image analysis
Biotechnology & Biotechnological Equipment
Anaerobic digestion
biogas
control
enzymatic activities
image analysis
fluorescence
author_facet Nora Dinova
Mihaela Belouhova
Irina Schneider
Jelyaz Rangelov
Yana Topalova
author_sort Nora Dinova
title Control of biogas production process by enzymatic and fluorescent image analysis
title_short Control of biogas production process by enzymatic and fluorescent image analysis
title_full Control of biogas production process by enzymatic and fluorescent image analysis
title_fullStr Control of biogas production process by enzymatic and fluorescent image analysis
title_full_unstemmed Control of biogas production process by enzymatic and fluorescent image analysis
title_sort control of biogas production process by enzymatic and fluorescent image analysis
publisher Taylor & Francis Group
series Biotechnology & Biotechnological Equipment
issn 1310-2818
1314-3530
publishDate 2018-03-01
description The process of methanogenesis, which is in the essence of the widely distributed technologies for biogas production, is slow, has multiple steps and occurs under anaerobic conditions. These factors make the control and the management of the anaerobic digestion difficult and impose the testing and implementation of new indicators for control which are fast and focused on the activity and functioning of the methanogenic community in addition to the traditionally used technological parameters. In this study, the biogas production process in wastewater treatment plant ‘Kubratovo’ was analysed in two different seasonal situations and a correlation was made between the studied parameters for control. The complex methodological arsenal included the activities of aerobic and anaerobic dehydrogenase, fluorescent image analysis and key chemical and technological indicators. The correlation analysis showed that the fluorescent image analysis parameters (number/mean size of clusters; fluorescence intensity; area) had the strongest relationship with the biogas production. Based on these results, we propose a fluorescent indicative system for control of the biogas production technologies. It is a fast tool for assessment the effectiveness of the process of anaerobic digestion. Its focus on the activity and functioning of the biological system could contribute to the optimization of the whole performance of these technologies and could serve as a prediction tool for potential problems in the future.
topic Anaerobic digestion
biogas
control
enzymatic activities
image analysis
fluorescence
url http://dx.doi.org/10.1080/13102818.2018.1425637
work_keys_str_mv AT noradinova controlofbiogasproductionprocessbyenzymaticandfluorescentimageanalysis
AT mihaelabelouhova controlofbiogasproductionprocessbyenzymaticandfluorescentimageanalysis
AT irinaschneider controlofbiogasproductionprocessbyenzymaticandfluorescentimageanalysis
AT jelyazrangelov controlofbiogasproductionprocessbyenzymaticandfluorescentimageanalysis
AT yanatopalova controlofbiogasproductionprocessbyenzymaticandfluorescentimageanalysis
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