Publication result detail

Sorptively Active Natural Based Composites for Improvement of the Internal Environment Stability

PETERKOVÁ, J.; KORJENIC, A.; ZACH, J.; NOVÁK, V.; SLÁVIK, R.

Original Title

Sorptively Active Natural Based Composites for Improvement of the Internal Environment Stability

English Title

Sorptively Active Natural Based Composites for Improvement of the Internal Environment Stability

Type

Paper in proceedings (conference paper)

Original Abstract

The quality of the indoor environment of buildings is one of the key properties of buildings and has a significant impact on the health of people and all living organisms. Currently, in EU countries, the issue of low quality of the indoor microclimate of buildings is associated primarily with insufficient ventilation and high levels of CO2. Low or too high relative humidity also has a negative effect. Stabilization of the indoor environment can generally be carried out by targeted forced air exchange and treatment using air conditioning and humidification units, but this process is relatively energy-intensive, and the environment created in buildings does not always have a completely positive effect on the human body. One option is to use building materials/elements in the interior that have the ability to bind and release moisture into their structure, thereby actively influencing the indoor environment of buildings. The ideal relative humidity of the environment from a health perspective ranges from 40 to 60%. The aim of this paper is to present the results of research focused on studying the hygroaccumulation effect of natural-based materials and their influence on the humidity stability of the indoor environment of buildings. To stabilize the indoor environment of buildings, environmentally friendly, sorption-active materials on a natural basis were selected - clay material with natural fibers. The article presents the results of a study that focused primarily on the sorption/desorption activity and moisture behavior of the developed materials, in order to optimize the indoor microclimate.

English abstract

The quality of the indoor environment of buildings is one of the key properties of buildings and has a significant impact on the health of people and all living organisms. Currently, in EU countries, the issue of low quality of the indoor microclimate of buildings is associated primarily with insufficient ventilation and high levels of CO2. Low or too high relative humidity also has a negative effect. Stabilization of the indoor environment can generally be carried out by targeted forced air exchange and treatment using air conditioning and humidification units, but this process is relatively energy-intensive, and the environment created in buildings does not always have a completely positive effect on the human body. One option is to use building materials/elements in the interior that have the ability to bind and release moisture into their structure, thereby actively influencing the indoor environment of buildings. The ideal relative humidity of the environment from a health perspective ranges from 40 to 60%. The aim of this paper is to present the results of research focused on studying the hygroaccumulation effect of natural-based materials and their influence on the humidity stability of the indoor environment of buildings. To stabilize the indoor environment of buildings, environmentally friendly, sorption-active materials on a natural basis were selected - clay material with natural fibers. The article presents the results of a study that focused primarily on the sorption/desorption activity and moisture behavior of the developed materials, in order to optimize the indoor microclimate.

Keywords

Microclimate, clay, natural fibers, sorption/desorption characteristics, moisture buffering capacity

Key words in English

Microclimate, clay, natural fibers, sorption/desorption characteristics, moisture buffering capacity

Authors

PETERKOVÁ, J.; KORJENIC, A.; ZACH, J.; NOVÁK, V.; SLÁVIK, R.

Released

30.01.2026

Publisher

Springer Nature Switzerland

Location

Cham

ISBN

9783032140104

Book

Lecture Notes in Civil Engineering, Proceedings of CESBP 2025 - 6th Central European Symposium on Building Physics

Periodical

Lecture Notes in Civil Engineering

Volume

1

Number

1

State

Swiss Confederation

Pages from

642

Pages to

654

Pages count

13

BibTex

@inproceedings{BUT201086,
  author="Jitka {Peterková} and  {} and Jiří {Zach} and Vítězslav {Novák} and Richard {Slávik}",
  title="Sorptively Active Natural Based Composites for Improvement of the Internal Environment Stability",
  booktitle="Lecture Notes in Civil Engineering, Proceedings of CESBP 2025 - 6th Central European Symposium on Building Physics",
  year="2026",
  journal="Lecture Notes in Civil Engineering",
  volume="1",
  number="1",
  pages="642--654",
  publisher="Springer Nature Switzerland",
  address="Cham",
  doi="10.1007/978-3-032-14011-1\{_}52",
  isbn="9783032140104",
  issn="2366-2557"
}