Management of sewage sludge energy use with the application of bi-functional bioreactor as an element of pure production in industry

The increase in sewage sludge makes it necessary to improve the direction of sewage sludge management policy and disposal, which requires a larger amount of incineration or land reclamation. It was shown that the result of methane fermentation, which is a more complex process of extracting energy co...

Full description

Bibliographic Details
Main Authors: Ciuła Józef, Gaska Krzysztof, Siedlarz Dariusz, Koval Viktor
Format: Article
Language:English
Published: EDP Sciences 2019-01-01
Series:E3S Web of Conferences
Online Access:https://www.e3s-conferences.org/articles/e3sconf/pdf/2019/49/e3sconf_usme2019_01016.pdf
id doaj-be2b2d2f5a2a4d22af60cf7714432742
record_format Article
spelling doaj-be2b2d2f5a2a4d22af60cf77144327422021-04-02T14:10:38ZengEDP SciencesE3S Web of Conferences2267-12422019-01-011230101610.1051/e3sconf/201912301016e3sconf_usme2019_01016Management of sewage sludge energy use with the application of bi-functional bioreactor as an element of pure production in industryCiuła Józef0Gaska Krzysztof1Siedlarz Dariusz2Koval Viktor3State University of Applied Sciences in Nowy Sącz, Institute of TechnologyInstitute of Water and Wastewater Engineering, Silesian University of TechnologyWater Networks CompanyOdesa Institute of Trade and Economics of Kyiv National University of Trade and EconomicsThe increase in sewage sludge makes it necessary to improve the direction of sewage sludge management policy and disposal, which requires a larger amount of incineration or land reclamation. It was shown that the result of methane fermentation, which is a more complex process of extracting energy contained in waste. High costs of implementation of sludge processing technology and low efficiency of sewage treatment plants in which sewage sludge is insufficient to recover energy from them, have a negative impact on the development of energy generation from sediments. The model waste system for energy is characterized, which includes two stages. The proposed solution can be applied to small wastewater treatment plants and it is justifiable to use the concept of bi-functional bioreactors in which anaerobic and aerobic processes can be carried out with much lower construction and maintenance costs. The use of bioreactors allows to exclude the energy demand needed to stabilize sewage sludge at a low cost compared to the expenditure that is currently incurred by disposal. The proposed solution works perfectly with industrial plants, due to the possibility of their creation in the time of the creation and application of a circular economy.https://www.e3s-conferences.org/articles/e3sconf/pdf/2019/49/e3sconf_usme2019_01016.pdf
collection DOAJ
language English
format Article
sources DOAJ
author Ciuła Józef
Gaska Krzysztof
Siedlarz Dariusz
Koval Viktor
spellingShingle Ciuła Józef
Gaska Krzysztof
Siedlarz Dariusz
Koval Viktor
Management of sewage sludge energy use with the application of bi-functional bioreactor as an element of pure production in industry
E3S Web of Conferences
author_facet Ciuła Józef
Gaska Krzysztof
Siedlarz Dariusz
Koval Viktor
author_sort Ciuła Józef
title Management of sewage sludge energy use with the application of bi-functional bioreactor as an element of pure production in industry
title_short Management of sewage sludge energy use with the application of bi-functional bioreactor as an element of pure production in industry
title_full Management of sewage sludge energy use with the application of bi-functional bioreactor as an element of pure production in industry
title_fullStr Management of sewage sludge energy use with the application of bi-functional bioreactor as an element of pure production in industry
title_full_unstemmed Management of sewage sludge energy use with the application of bi-functional bioreactor as an element of pure production in industry
title_sort management of sewage sludge energy use with the application of bi-functional bioreactor as an element of pure production in industry
publisher EDP Sciences
series E3S Web of Conferences
issn 2267-1242
publishDate 2019-01-01
description The increase in sewage sludge makes it necessary to improve the direction of sewage sludge management policy and disposal, which requires a larger amount of incineration or land reclamation. It was shown that the result of methane fermentation, which is a more complex process of extracting energy contained in waste. High costs of implementation of sludge processing technology and low efficiency of sewage treatment plants in which sewage sludge is insufficient to recover energy from them, have a negative impact on the development of energy generation from sediments. The model waste system for energy is characterized, which includes two stages. The proposed solution can be applied to small wastewater treatment plants and it is justifiable to use the concept of bi-functional bioreactors in which anaerobic and aerobic processes can be carried out with much lower construction and maintenance costs. The use of bioreactors allows to exclude the energy demand needed to stabilize sewage sludge at a low cost compared to the expenditure that is currently incurred by disposal. The proposed solution works perfectly with industrial plants, due to the possibility of their creation in the time of the creation and application of a circular economy.
url https://www.e3s-conferences.org/articles/e3sconf/pdf/2019/49/e3sconf_usme2019_01016.pdf
work_keys_str_mv AT ciułajozef managementofsewagesludgeenergyusewiththeapplicationofbifunctionalbioreactorasanelementofpureproductioninindustry
AT gaskakrzysztof managementofsewagesludgeenergyusewiththeapplicationofbifunctionalbioreactorasanelementofpureproductioninindustry
AT siedlarzdariusz managementofsewagesludgeenergyusewiththeapplicationofbifunctionalbioreactorasanelementofpureproductioninindustry
AT kovalviktor managementofsewagesludgeenergyusewiththeapplicationofbifunctionalbioreactorasanelementofpureproductioninindustry
_version_ 1721562984704114688