MONITORING ACTIVITY OF THE CO2 EMISSION OBJECTS SYSTEM COMPONENTS IN FORMATION OF THE AIR MASS IN INDIVIDUAL CLOSED PREMISES

Authors

DOI:

https://doi.org/10.26906/znp.2019.53.1907

Keywords:

room air, CO2 concentration, adaptive microclimate support systems, CO2 emission sources

Abstract

According to the developed methodology of the experiment and with the use of electronic devices for measuring the content
of carbon dioxide (CO2
) in the air and using a set of special laboratory tools, the following were studied on the example of a
school audience: a) the variety of interactions of the external environment and the subsystem - classroom air; b) the activity
of constituent internal objects (present students, plants, absorbent surfaces of structural elements and the interior) in release
and absorption of CO2
, depending on conditions and variation in the action of dominant factors; c) their manifestation and influence on forming the composition and content of the air mass, and therefore the internal microclimate of the classroom,
which quality directly affects the health and performance of the present people.

References

ISO 16000-1: 2004. Indoor air - Part 1: General aspects of sampling strategy.

Naumov, A.L., Kapko, D.V. (2011). Adaptive ventilation systems: promising areas of development. АВОК. 7. 30- 36.

Schulte, R., Bridges, B., Grimsrud, D. (2005). Continuous monitoring of indoor air quality in school buildings.

АВОК. 8. 29-35.

Balikhin, I.L., Berestenko, V.I., Domashnev, I.A. et al. Photo-catalytic element for cleaning and disinfecting of air

and water and the method of its manufacturing. Patent RU

C2. Moscow.

Dryuchko, O., Storozhenko, D., Vigdorchik, A., Bunyakina, N., Ivanytska, I., Kytayhora, К., Khanyukov, V.

(2019). Features of transformations in REE-containing systems of nitrate precursors in preparatory processes of formation of multifunctional oxide materials. Molecular Crystals and Liquid Crystals, 672(1), 199-214. https://doi.org/10.1080/15421406.2018.1542066

Zhang Xianhong, Zhang Anji, Zhang Haiyin et al. Preparation and application of a hydrophilic self-cleaning

coating with photocatalytic activity. Patent CN 102382490 A. China.

Lachhaba, F., Bakhouyaa, M., Ouladsinea, R. & Essaaidi, M. (2018). Towards an Intelligent Approach for Ventilation Systems Control using IoT and Big Data Technologies. Procedia Computer Science, 130, 926–931.

ANSI/ASHRAE Standard 62.1-2007. Ventilation for

Acceptable Air Quality.

EN 13779: 2007. Ventilation for non-residential buildings – performance requirements for ventilation and roomconditioning systems.

EN 15251:2007. Indoor environmental input parameters for design and assessment of energy performance of

buildings addressing indoor air quality, thermal environment, lighting and acoustics.

DSTU B EN 15251: 2011. (2012). Estimated microclimate parameters of premises for the design and evaluation

of the energy performance of buildings in relation to air

quality, thermal comfort, lighting and acoustics (EN 15251:

, IDT). Кyiv: Ministry of Regional Development of

Ukraine.

Litvinova, N.A. (2019). Purification of indoor air

from pollutants using an air supply valve with a photocatalytic filter. Environmental safety of construction and

urban economy, 3. 81-87.

https://doi.org/10.24411/1816-1863-2019-13081

Rymarov, A.G. (2016). A study of the use of air valves

in an apartment in a residential building in the cold season.

Plumbing, heating, air conditioning. Access Mode:

https://www.c-o-k.ru

Shikai Zhang, Anlan Ding, Xiuguo Zou et alt. (2019).

Simulation Analysis of a Ventilation System in a Smart

Chamber Based on Computational. Atmosphere, 315(10),

-17.

Masters, I.V. (2005). Ventilation. St. Petersburg:

DILIA.

Litvinova, N.A. (2019). Ventilation and air quality in

urban buildings. Moscow: Infra-M.

Monk, B. (2019). Air Quality in Airports. ABOК, 4,

-74.

Smagin, A.V. (2015). Kinetic assessment of gas exchange between soil and atmosphere using the chamberstatic method. Soil science, 7, 824-831.

https://doi.org/10.7868/S0032180X15070102

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Published

2019-10-31

How to Cite

Storozhenko, D., Dryuchko О., Golik, Y., Kytayhora К., Gornitsky, I., & Misko, A. (2019). MONITORING ACTIVITY OF THE CO2 EMISSION OBJECTS SYSTEM COMPONENTS IN FORMATION OF THE AIR MASS IN INDIVIDUAL CLOSED PREMISES. Збірник наукових праць Галузеве машинобудування будівництво Academic Journal Industrial Machine Building Civil Engineering, 2(53), 157–170. https://doi.org/10.26906/znp.2019.53.1907