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Efficiency of monolayers in evaporation suppression from water surface considering meteorological parameters

메타 데이터

바이오화학분류
    • 바이오정밀화학
      1. 용매
    • 화장품용 기능성소재
      1. 보습재
      2. 계면활성제⁄증점제
    • 의료용 화학소재
      1. 치료제
논문

Efficiency of monolayers in evaporation suppression from water surface considering meteorological parameters

학술지

Environmental science and pollution research international

저자명

Karimzadeh, Mehrdad; Zahiri, Javad; Nobakht, Valiollah

초록

The evaporation from water reservoirs has become a global issue due to climate change, limited water resources, and population growth. In this research, three emulsions of octadecanol/Brij-35 (4:1), hexadecanol/Brij-35 (4:1), and a combination of the alcohols with Brij-35, octadecanol/hexadecanol/Brij-35 (2:2:1), were used in water. One-way ANOVA was applied to compare the mean of evaporation in different chemical and physical methods, and factorial ANOVA was used to investigate the main and interactional effects of different meteorological parameters on the rate of evaporation. Results showed that two physical methods of the canopy and shade balls performed better than the chemical methods, with reductions of 60 and 56% in evaporation, respectively. Among the chemical methods, the octadecanol/Brij-35 emulsion had a better performance with 36% of reduction in evaporation. One-way ANOVA results showed that among the chemical methods, only the octadecanol/Brij-35 had no significant difference with shade balls with a 99% probability level (P < 0.01). On the other hand, factorial ANOVA showed that the temperature and relative humidity had the highest effect on evaporation. Octadecanol/Brij-35 monolayer had a lower performance than two physical methods at low temperatures, but after increasing the temperature, its performance improved. This monolayer had a good performance at low wind speed compared to physical methods; however, with increasing wind speed, its performance was severely affected. For temperatures of over 37 °C, the evaporation rate increased more than 50% when the wind speed had changed from 3.5 m/s to more than 8.7 m/s.

발행연도

2023

발행기관

Springer-Verlag

ISSN

0944-1344

ISSN

1614-7499

30

17

페이지

pp.50783-50794

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1 2023-12-11

논문; 2023-04-01

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