Determining the thermal mode of bio-based raw materials composting process in a rotary-type chamber

One of the promising methods to dispose of agricultural bio-based raw materials is to produce compost by aerobic fermentation in rotary chambers. High efficiency of the composting process is achieved when a proper temperature mode is maintained at each phase of the process. Changes in temperature ar...

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Main Authors: Gennadii Golub, Ivan Grabar, Dmytro Derevyanko, Anna Нolubenko, Oleksandr Medvedskyi, Viacheslav Chuba, Oleksandr Solarov, Tamara Bilko, Maksym Pavlenko, Anatolii Saienko
Format: Article
Language:English
Published: PC Technology Center 2021-04-01
Series:Eastern-European Journal of Enterprise Technologies
Subjects:
Online Access:http://journals.uran.ua/eejet/article/view/230211
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spelling doaj-3faaddb47a1c48e1b77f739bf6be78052021-05-11T13:10:56ZengPC Technology CenterEastern-European Journal of Enterprise Technologies1729-37741729-40612021-04-0128 (110)415210.15587/1729-4061.2021.230211267783Determining the thermal mode of bio-based raw materials composting process in a rotary-type chamberGennadii Golub0https://orcid.org/0000-0002-2388-0405Ivan Grabar1https://orcid.org/0000-0002-7193-6960Dmytro Derevyanko2https://orcid.org/0000-0003-1408-6274Anna Нolubenko3https://orcid.org/0000-0001-5018-5312Oleksandr Medvedskyi4https://orcid.org/0000-0001-7458-5337Viacheslav Chuba5https://orcid.org/0000-0002-4119-0520Oleksandr Solarov6https://orcid.org/0000-0002-1485-0685Tamara Bilko7https://orcid.org/0000-0003-3164-3298Maksym Pavlenko8https://orcid.org/0000-0002-9344-4895Anatolii Saienko9https://orcid.org/0000-0003-1272-5298National University of Life and Environmental Sciences of UkrainePolissia National UniversityPolissia National UniversityPolissia National UniversityPolissia National UniversityNational University of Life and Environmental Sciences of UkraineSumy National Agrarian UniversityNational University of Life and Environmental Sciences of UkraineNational University of Life and Environmental Sciences of UkraineSumy National Agrarian UniversityOne of the promising methods to dispose of agricultural bio-based raw materials is to produce compost by aerobic fermentation in rotary chambers. High efficiency of the composting process is achieved when a proper temperature mode is maintained at each phase of the process. Changes in temperature are directly related to the effective transformation of organic substrates by microorganisms and are the reason for the low quality of produced compost in terms of its agrochemical and microbiological parameters. It was established that a high-temperature regime is achieved on the condition that the amount of heat released during the biodegradation of raw materials by microorganisms is greater than the heat loss associated with the substrate aeration and surface cooling. Therefore, the time during which the fermented mass remains warm depends entirely on the substrate's physical-chemical characteristics, the parameters of the equipment, and the modes of its operation. To describe the established conditions, based on the equation of thermal balance, a mathematical model has been built. The model relates the thermal costs necessary to maintain the optimal temperature regime of the process to the substrate's moisture content and specific active heat generation, as well as to such an important thermal physical parameter of the chamber as the coefficient of heat transfer of the wall material. A rotary chamber was manufactured to investigate the thermal mode of the bio-based raw materials composting process. It has been experimentally established that the chamber walls' heat transfer coefficient of 1.6 W/(m2·°C), a value of the substrate's specific active heat generation of 9.2 W/kg, and a moisture content of 58 % provide for the thermal needs for the process with the release of 140 MJ of excess heat. The reported study could be the basis for the modernized methodology of thermal calculations of the bio-based raw materials composting process in closed fermentation chambershttp://journals.uran.ua/eejet/article/view/230211heat transfer coefficientspecific active heat generationsubstratecompostingfermentationrotary chamber
collection DOAJ
language English
format Article
sources DOAJ
author Gennadii Golub
Ivan Grabar
Dmytro Derevyanko
Anna Нolubenko
Oleksandr Medvedskyi
Viacheslav Chuba
Oleksandr Solarov
Tamara Bilko
Maksym Pavlenko
Anatolii Saienko
spellingShingle Gennadii Golub
Ivan Grabar
Dmytro Derevyanko
Anna Нolubenko
Oleksandr Medvedskyi
Viacheslav Chuba
Oleksandr Solarov
Tamara Bilko
Maksym Pavlenko
Anatolii Saienko
Determining the thermal mode of bio-based raw materials composting process in a rotary-type chamber
Eastern-European Journal of Enterprise Technologies
heat transfer coefficient
specific active heat generation
substrate
composting
fermentation
rotary chamber
author_facet Gennadii Golub
Ivan Grabar
Dmytro Derevyanko
Anna Нolubenko
Oleksandr Medvedskyi
Viacheslav Chuba
Oleksandr Solarov
Tamara Bilko
Maksym Pavlenko
Anatolii Saienko
author_sort Gennadii Golub
title Determining the thermal mode of bio-based raw materials composting process in a rotary-type chamber
title_short Determining the thermal mode of bio-based raw materials composting process in a rotary-type chamber
title_full Determining the thermal mode of bio-based raw materials composting process in a rotary-type chamber
title_fullStr Determining the thermal mode of bio-based raw materials composting process in a rotary-type chamber
title_full_unstemmed Determining the thermal mode of bio-based raw materials composting process in a rotary-type chamber
title_sort determining the thermal mode of bio-based raw materials composting process in a rotary-type chamber
publisher PC Technology Center
series Eastern-European Journal of Enterprise Technologies
issn 1729-3774
1729-4061
publishDate 2021-04-01
description One of the promising methods to dispose of agricultural bio-based raw materials is to produce compost by aerobic fermentation in rotary chambers. High efficiency of the composting process is achieved when a proper temperature mode is maintained at each phase of the process. Changes in temperature are directly related to the effective transformation of organic substrates by microorganisms and are the reason for the low quality of produced compost in terms of its agrochemical and microbiological parameters. It was established that a high-temperature regime is achieved on the condition that the amount of heat released during the biodegradation of raw materials by microorganisms is greater than the heat loss associated with the substrate aeration and surface cooling. Therefore, the time during which the fermented mass remains warm depends entirely on the substrate's physical-chemical characteristics, the parameters of the equipment, and the modes of its operation. To describe the established conditions, based on the equation of thermal balance, a mathematical model has been built. The model relates the thermal costs necessary to maintain the optimal temperature regime of the process to the substrate's moisture content and specific active heat generation, as well as to such an important thermal physical parameter of the chamber as the coefficient of heat transfer of the wall material. A rotary chamber was manufactured to investigate the thermal mode of the bio-based raw materials composting process. It has been experimentally established that the chamber walls' heat transfer coefficient of 1.6 W/(m2·°C), a value of the substrate's specific active heat generation of 9.2 W/kg, and a moisture content of 58 % provide for the thermal needs for the process with the release of 140 MJ of excess heat. The reported study could be the basis for the modernized methodology of thermal calculations of the bio-based raw materials composting process in closed fermentation chambers
topic heat transfer coefficient
specific active heat generation
substrate
composting
fermentation
rotary chamber
url http://journals.uran.ua/eejet/article/view/230211
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