Actual Measurement and Evaluation of the Balance between Electricity Supply and Demand in Waste-Treatment Facilities and Development of Adjustment Methods

In Japan, breakthroughs to improve the share of renewable energy in the energy mix have become an urgent issue. However, the problem could not be solved by simply adding more power plants for various technical reasons, such as the unsuitability of using renewable energy as baseloads due to its inter...

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Autores principales: Daiki Yoshidome, Ryo Kikuchi, Yuki Okanoya, Andante Hadi Pandyaswargo, Hiroshi Onoda
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Lenguaje:EN
Publicado: MDPI AG 2021
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spelling oai:doaj.org-article:65fd5addbd77493cb03cbbabba0ea34f2021-11-25T16:37:15ZActual Measurement and Evaluation of the Balance between Electricity Supply and Demand in Waste-Treatment Facilities and Development of Adjustment Methods10.3390/app1122107472076-3417https://doaj.org/article/65fd5addbd77493cb03cbbabba0ea34f2021-11-01T00:00:00Zhttps://www.mdpi.com/2076-3417/11/22/10747https://doaj.org/toc/2076-3417In Japan, breakthroughs to improve the share of renewable energy in the energy mix have become an urgent issue. However, the problem could not be solved by simply adding more power plants for various technical reasons, such as the unsuitability of using renewable energy as baseloads due to its intermittency. Furthermore, establishing the required cooperative systems for regionally distributed power adjustment is also tricky. Based on these backgrounds, this paper constructs an operation plan that minimizes CO<sub>2</sub> emissions by correcting the generation and load patterns of the renewable energy of solar power, utilizing power generation from waste as a substitute for baseload power, and estimating the power demand of each facility. The result shows that by adjusting the operation plans, the model can reduce CO<sub>2</sub> emission by 20.95 and 8.30% in weeks with high and low solar power generation surpluses, respectively. Furthermore, these results show that it is possible to reduce CO<sub>2</sub> emissions in regions that have power sources with low CO<sub>2</sub> emission coefficients by forecasting the amount of power generation and power load in the region and appropriately planning the operation in advance.Daiki YoshidomeRyo KikuchiYuki OkanoyaAndante Hadi PandyaswargoHiroshi OnodaMDPI AGarticlewaste power generationenergy mixCO<sub>2</sub> emissionTechnologyTEngineering (General). Civil engineering (General)TA1-2040Biology (General)QH301-705.5PhysicsQC1-999ChemistryQD1-999ENApplied Sciences, Vol 11, Iss 10747, p 10747 (2021)
institution DOAJ
collection DOAJ
language EN
topic waste power generation
energy mix
CO<sub>2</sub> emission
Technology
T
Engineering (General). Civil engineering (General)
TA1-2040
Biology (General)
QH301-705.5
Physics
QC1-999
Chemistry
QD1-999
spellingShingle waste power generation
energy mix
CO<sub>2</sub> emission
Technology
T
Engineering (General). Civil engineering (General)
TA1-2040
Biology (General)
QH301-705.5
Physics
QC1-999
Chemistry
QD1-999
Daiki Yoshidome
Ryo Kikuchi
Yuki Okanoya
Andante Hadi Pandyaswargo
Hiroshi Onoda
Actual Measurement and Evaluation of the Balance between Electricity Supply and Demand in Waste-Treatment Facilities and Development of Adjustment Methods
description In Japan, breakthroughs to improve the share of renewable energy in the energy mix have become an urgent issue. However, the problem could not be solved by simply adding more power plants for various technical reasons, such as the unsuitability of using renewable energy as baseloads due to its intermittency. Furthermore, establishing the required cooperative systems for regionally distributed power adjustment is also tricky. Based on these backgrounds, this paper constructs an operation plan that minimizes CO<sub>2</sub> emissions by correcting the generation and load patterns of the renewable energy of solar power, utilizing power generation from waste as a substitute for baseload power, and estimating the power demand of each facility. The result shows that by adjusting the operation plans, the model can reduce CO<sub>2</sub> emission by 20.95 and 8.30% in weeks with high and low solar power generation surpluses, respectively. Furthermore, these results show that it is possible to reduce CO<sub>2</sub> emissions in regions that have power sources with low CO<sub>2</sub> emission coefficients by forecasting the amount of power generation and power load in the region and appropriately planning the operation in advance.
format article
author Daiki Yoshidome
Ryo Kikuchi
Yuki Okanoya
Andante Hadi Pandyaswargo
Hiroshi Onoda
author_facet Daiki Yoshidome
Ryo Kikuchi
Yuki Okanoya
Andante Hadi Pandyaswargo
Hiroshi Onoda
author_sort Daiki Yoshidome
title Actual Measurement and Evaluation of the Balance between Electricity Supply and Demand in Waste-Treatment Facilities and Development of Adjustment Methods
title_short Actual Measurement and Evaluation of the Balance between Electricity Supply and Demand in Waste-Treatment Facilities and Development of Adjustment Methods
title_full Actual Measurement and Evaluation of the Balance between Electricity Supply and Demand in Waste-Treatment Facilities and Development of Adjustment Methods
title_fullStr Actual Measurement and Evaluation of the Balance between Electricity Supply and Demand in Waste-Treatment Facilities and Development of Adjustment Methods
title_full_unstemmed Actual Measurement and Evaluation of the Balance between Electricity Supply and Demand in Waste-Treatment Facilities and Development of Adjustment Methods
title_sort actual measurement and evaluation of the balance between electricity supply and demand in waste-treatment facilities and development of adjustment methods
publisher MDPI AG
publishDate 2021
url https://doaj.org/article/65fd5addbd77493cb03cbbabba0ea34f
work_keys_str_mv AT daikiyoshidome actualmeasurementandevaluationofthebalancebetweenelectricitysupplyanddemandinwastetreatmentfacilitiesanddevelopmentofadjustmentmethods
AT ryokikuchi actualmeasurementandevaluationofthebalancebetweenelectricitysupplyanddemandinwastetreatmentfacilitiesanddevelopmentofadjustmentmethods
AT yukiokanoya actualmeasurementandevaluationofthebalancebetweenelectricitysupplyanddemandinwastetreatmentfacilitiesanddevelopmentofadjustmentmethods
AT andantehadipandyaswargo actualmeasurementandevaluationofthebalancebetweenelectricitysupplyanddemandinwastetreatmentfacilitiesanddevelopmentofadjustmentmethods
AT hiroshionoda actualmeasurementandevaluationofthebalancebetweenelectricitysupplyanddemandinwastetreatmentfacilitiesanddevelopmentofadjustmentmethods
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