与室内空气质素认证及标签程序有关的室内空气质素指引

IF 1.4 Q4 GREEN & SUSTAINABLE SCIENCE & TECHNOLOGY
Klinta Luīze Sprūdža, Aneka Kļaviņa, Buka Bērziņa, Rūta Kauce, Ž. Martinsone
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引用次数: 1

摘要

世界领先的室内空气质量指南提供了基于最新经验测量的特定限值的某些参数的识别,然而,其中大多数没有法律覆盖,并且是自愿的。这导致对室内空气质量的评估不平等,因为在各种准则中规定的限值之间存在明显的差异。这些值将与应用特定参数的实验活动中获得的结果以及对其对人类健康的影响的解释有关。本室内空气质量指南和室内空气质量认证审查的目的是为北欧国家开发室内空气质量标签,并找到拉脱维亚政府建立的立法差距。室内空气质量标签的发展为维护和促进人体生理过程的最佳功能和建筑的可持续性提供了机会。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Indoor Air Quality Guidelines Connection to IAQ Certification and Labelling Process
Abstract The world’s leading indoor air quality guidelines provide for the identification of certain parameters with a specific limit value based on the latest empirical measurements, however, most of them do not have legal coverage and are voluntary. This leads to unequal assessment of indoor air quality, because there is an identifiable difference between the limit values set out in the various guidelines. And these values would be related to the results obtained during the experimental activities of the application of the specific parameters and the interpretation of their effects on human health. The aim of this IAQ guideline and IAQ certification review was to develop IAQ label for Nordic countries and to find gaps the legislation established by the Latvian government. The development of indoor air quality labels provides an opportunity to maintain and promote the optimal functionality of human physiological processes and the sustainability of the building.
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来源期刊
Environmental and Climate Technologies
Environmental and Climate Technologies GREEN & SUSTAINABLE SCIENCE & TECHNOLOGY-
CiteScore
3.10
自引率
28.60%
发文量
0
审稿时长
16 weeks
期刊介绍: Environmental and Climate Technologies provides a forum for information on innovation, research and development in the areas of environmental science, energy resources and processes, innovative technologies and energy efficiency. Authors are encouraged to submit manuscripts which cover the range from bioeconomy, sustainable technology development, life cycle analysis, eco-design, climate change mitigation, innovative solutions for pollution reduction to resilience, the energy efficiency of buildings, secure and sustainable energy supplies. The Journal ensures international publicity for original research and innovative work. A variety of themes are covered through a multi-disciplinary approach, one which integrates all aspects of environmental science: -Sustainability of technology development- Bioeconomy- Cleaner production, end of pipe production- Zero emission technologies- Eco-design- Life cycle analysis- Eco-efficiency- Environmental impact assessment- Environmental management systems- Resilience- Energy and carbon markets- Greenhouse gas emission reduction and climate technologies- Methodologies for the evaluation of sustainability- Renewable energy resources- Solar, wind, geothermal, hydro energy, biomass sources: algae, wood, straw, biogas, energetic plants and organic waste- Waste management- Quality of outdoor and indoor environment- Environmental monitoring and evaluation- Heat and power generation, including district heating and/or cooling- Energy efficiency.
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