Balanced broad learning prediction model for carbon emissions of integrated energy systems considering distributed ground source heat pump heat storage systems and carbon capture & storage
Author:
Funder
National Natural Science Foundation of China
Natural Science Foundation of Guangxi Province
Publisher
Elsevier BV
Subject
Management, Monitoring, Policy and Law,Mechanical Engineering,General Energy,Building and Construction
Reference48 articles.
1. Dynamic interactive effects of urban land-use efficiency, industrial transformation, and carbon emissions;Dong;J Cleaner Prod,2020
2. China can reach carbon neutrality before 2050 by improving economic development quality;Xu;Energy,2022
3. Does carbon emissions trading promote green technology innovation in China?;Zhang;Appl Energy,2022
4. Development of an SBM-ML model for the measurement of green total factor productivity: The case of pearl river delta urban agglomeration;Li;Renew Sustain Energy Rev,2021
5. Security of supply, strategic storage and Covid19: Which lessons learnt for renewable and recycled carbon fuels, and their future role in decarbonizing transport?;Chiaramonti;Appl Energy,2020
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