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Inequalities across cooling and heating in households: Energy equity gaps

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  • Huang, Luling
  • Nock, Destenie
  • Cong, Shuchen
  • Qiu, Yueming (Lucy)

Abstract

Understanding the degree of energy limiting behavior in low-income and vulnerable households is vital to eradicating energy poverty and associated negative health effects. We estimate the outdoor temperatures at which households turn on and off their electricity-based cooling and heating units under a cold climate in northern Illinois, USA (N = 418,255 for cooling; N = 22,628 for electric heating). We find that the cooling energy equity gap between low and high income groups is 3 °F (1.7 °C), while the electric-based heating energy equity gap is 6 °F (3.3 °C). The pattern of energy limiting behavior is found to be different between the cooling season and the heating season. Our metrics contribute to the policy design of home energy bill and weatherization assistance programs to identify vulnerable households in a cold climate: Among low-to-middle-income households, our metric identifies 19,001 households (20%) in the cooling sector and 1,290 households (24%) in the heating sector who may be neglected by the traditional income-based energy poverty measure. We also find that households living in black-majority census block groups have a cooling gap that is 17% wider than households living in white-majority census block groups. Policy design should focus on addressing the income inequality and other systematic inequalities that have impacted Black American households.

Suggested Citation

  • Huang, Luling & Nock, Destenie & Cong, Shuchen & Qiu, Yueming (Lucy), 2023. "Inequalities across cooling and heating in households: Energy equity gaps," Energy Policy, Elsevier, vol. 182(C).
  • Handle: RePEc:eee:enepol:v:182:y:2023:i:c:s0301421523003336
    DOI: 10.1016/j.enpol.2023.113748
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    References listed on IDEAS

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    4. Davillas, Apostolos & Burlinson, Andrew & Liu, Hui-Hsuan, 2022. "Getting warmer: Fuel poverty, objective and subjective health and well-being," Energy Economics, Elsevier, vol. 106(C).
    5. Liang, Jing & Qiu, Jiehong & Wang, Xiangrui & Wu, Jikai & Yang, Sansi & Zhou, You, 2024. "Examining energy inequality: The impact of household wealth on heterogeneous response to temperatures," Energy Policy, Elsevier, vol. 190(C).
    6. Huang, Luling & Nock, Destenie, 2024. "Estimating the income-related inequality aversion to energy limiting behavior in the United States," Energy Economics, Elsevier, vol. 136(C).
    7. Xinyu Yang & Siqi Yu & Xinling Jiang & Ping Jiang, 2025. "Addressing Health Inequities in Energy-Poor Households: Evidence from China’s Photovoltaic Poverty Alleviation Program," Energies, MDPI, vol. 18(10), pages 1-19, May.
    8. Shi, Han & Wang, Bo & Deng, Nana & Xu, Shuling & Wang, Zhaohua, 2025. "Examining energy poverty under high temperatures in China," Renewable and Sustainable Energy Reviews, Elsevier, vol. 215(C).
    9. Soto, Gonzalo H. & Martinez-Cobas, Xavier, 2025. "Energy poverty and the green energy transition's impact upon income inequality in Latin America," Structural Change and Economic Dynamics, Elsevier, vol. 72(C), pages 220-232.
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    11. Nojedehi, Pedram & Gunay, Burak & O'Brien, William & Papineau, Maya & Azar, Elie & Schweiker, Marcel & Ulukavak Harputlugil, Gülsu & Ganiç Saglam, Nese, 2024. "Examining disparities in energy poverty and indoor environmental quality satisfaction among Canadian households," Energy Policy, Elsevier, vol. 194(C).
    12. Xinyu Yang & Siqi Yu & Xinling Jiang & Zhongyao Cai & Ping Jiang, 2025. "The Impact of Different Types of Energy Transition Policies in China on Household Energy Poverty and Health Vulnerability," Energies, MDPI, vol. 18(8), pages 1-21, April.
    13. Jones, Andrew & Nock, Destenie & Samaras, Constantine & Qiu, Yueming (Lucy) & Xing, Bo, 2023. "Climate change impacts on future residential electricity consumption and energy burden: A case study in Phoenix, Arizona," Energy Policy, Elsevier, vol. 183(C).
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