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Reports

7 result(s) found

印度建筑的减排潜力

Report
English
Authors:
全球建筑最佳实践联盟 (The GBPN)

可靠证据表明,至2050年印度建筑领域会产生巨幅能源增长,基于此估测,本报告分析了印度目前建筑节能减排的政策框架及其节能潜力。

印度建筑的减排潜力

Report
English
Authors:
全球建筑最佳实践联盟 (The GBPN)

可靠证据表明,至2050年印度建筑领域会产生巨幅能源增长,基于此估测,本报告分析了印度目前建筑节能减排的政策框架及其节能潜力。

印度建筑的减排潜力

Report
English
Authors:
全球建筑最佳实践联盟 (The GBPN)

可靠证据表明,至2050年印度建筑领域会产生巨幅能源增长,基于此估测,本报告分析了印度目前建筑节能减排的政策框架及其节能潜力。

Mitigation Potential from India’s Buildings

Report
English
Authors:
GBPN

Technical Report

Demonstrating the enormity of the predicted energy growth in India's building sector up to 2050, this report explores the current political framework for energy efficient buildings and the potential for change. 

 

Beyond Technology: Demand-Side Solutions for Climate Change Mitigation

Text
English
Authors:
Felix Creutzig, Blanca Fernandez, Helmut Haberl,
Radhika Khosla, Yacob Mulugetta, Karen C. Seto

The assessment literature on climate change solutions to date has emphasized technologies and options based on cost-effectiveness analysis. However, many solutions to climate change mitigation misalign with such analytical frameworks. Here, we examine demand-side solutions, a crucial class of mitigation options that go beyond technological specification and cost-benefit analysis. To do so, we synthesize demand-side mitigation options in the urban, building, transport, and agricultural sectors. We also highlight the specific nature of demand-side solutions in the context of development.

Association of residential energy efficiency retrofits with indoor environmental quality, comfort, and health: A review of empirical data

Text
English
Authors:
William J. Fisk, Brett C. Singer, Wanyu R. Chan

This paper reviews empirical data from evaluations of the influence of residential energy efficiency retrofits on indoor environmental quality conditions and self-reported thermal comfort and health. Data were extracted from 36 studies described in 44 papers plus two reports. Nearly all reviewed studies were performed in Europe or United States. Most studies evaluated retrofits of homes with low-income occupants. Indoor radon and formaldehyde concentrations tended to increase after retrofits that did not add whole-house mechanical ventilation.

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