Mifbakhuddin Mifbakhuddin, Mifbakhuddin
Kesehatan Masyarakat Unimus

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Journal : Jurnal Kesehatan Masyarakat

Adsorption of Carbon Monoxide (CO) in a Room by Coconut Shell and Durian Skin Activated Carbons Nurullita, Ulfa; Mifbakhuddin, Mifbakhuddin
Jurnal Kesehatan Masyarakat Vol 12, No 1 (2016): JURNAL KESEHATAN MASYARAKAT (KEMAS) JULY 2016
Publisher : Jurusan Ilmu Kesehatan Masyarakat Fakultas Ilmu Keolahragaan

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.15294/kemas.v12i1.4029

Abstract

Cigarettes contain more than 4.000 elements, at least 200 of them are harmful to health. The main toxins are tar, nicotine, and carbon monoxide (CO). The purpose study was to know ability of coconut shell and durian skin activated carbon as adsorbent of CO. The study was pre-experimental with randomized control group only design. Independent variables are types of activated carbon, the dependent variable is concentration of CO. The results showed the lowest  in durian skin activated carbon that 29 ppm. The average CO decreased on coconut shell is 68,7  ppm, durian skin is 77,478 ppm. One way anova test to see the difference CO in various of activated carbon p value 0,0001, independent t test to see the difference CO reduction  between 2 types activated carbon with p value is 0,0001. Conclusion: there is a differences adsorbtion of CO between coconut shell and durian skin activated carbon.
Adsorption of Carbon Monoxide (CO) in a Room by Coconut Shell and Durian Skin Activated Carbons Nurullita, Ulfa; Mifbakhuddin, Mifbakhuddin
KEMAS: Jurnal Kesehatan Masyarakat Vol 12, No 1 (2016)
Publisher : Department of Public Health, Faculty of Sport Science, Universitas Negeri Semarang

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.15294/kemas.v12i1.4029

Abstract

Cigarettes contain more than 4.000 elements, at least 200 of them are harmful to health. The main toxins are tar, nicotine, and carbon monoxide (CO). The purpose study was to know ability of coconut shell and durian skin activated carbon as adsorbent of CO. The study was pre-experimental with randomized control group only design. Independent variables are types of activated carbon, the dependent variable is concentration of CO. The results showed the lowest  in durian skin activated carbon that 29 ppm. The average CO decreased on coconut shell is 68,7  ppm, durian skin is 77,478 ppm. One way anova test to see the difference CO in various of activated carbon p value 0,0001, independent t test to see the difference CO reduction  between 2 types activated carbon with p value is 0,0001. Conclusion: there is a differences adsorbtion of CO between coconut shell and durian skin activated carbon.