1.Study of the removal difference in indoor particulate matter and volatile organic compounds through the application of plants.
Seung Han HONG ; Jiyeon HONG ; Jihyeon YU ; Youngwook LIM
Environmental Health and Toxicology 2017;32(1):e2017006-
This study was conducted to evaluate the ability of plants to purify indoor air by observing the effective reduction rate among pollutant types of particulate matter (PM) and volatile organic compounds (VOCs). PM and four types of VOCs were measured in a new building that is less than three years old and under three different conditions: before applying the plant, after applying the plant, and a room without a plant. The removal rate of each pollutant type due to the plant was also compared and analyzed. In the case of indoor PM, the removal effect was negligible because of outdoor influence. However, 9% of benzene, 75% of ethylbenzene, 72% of xylene, 75% of styrene, 50% of formaldehyde, 36% of acetaldehyde, 35% of acrolein with acetone, and 85% of toluene were reduced. The purification of indoor air by natural ventilation is meaningless because the ambient PM concentration has recently been high. However, contamination by gaseous materials such as VOCs can effectively be removed through the application of plants.
Acetaldehyde
;
Acetone
;
Acrolein
;
Benzene
;
Formaldehyde
;
Particulate Matter*
;
Plants
;
Styrene
;
Toluene
;
Ventilation
;
Volatile Organic Compounds*
;
Xylenes
2.Study of the removal difference in indoor particulate matter and volatile organic compounds through the application of plants
Seung Han HONG ; Jiyeon HONG ; Jihyeon YU ; Youngwook LIM
Environmental Health and Toxicology 2017;32(1):2017006-
This study was conducted to evaluate the ability of plants to purify indoor air by observing the effective reduction rate among pollutant types of particulate matter (PM) and volatile organic compounds (VOCs). PM and four types of VOCs were measured in a new building that is less than three years old and under three different conditions: before applying the plant, after applying the plant, and a room without a plant. The removal rate of each pollutant type due to the plant was also compared and analyzed. In the case of indoor PM, the removal effect was negligible because of outdoor influence. However, 9% of benzene, 75% of ethylbenzene, 72% of xylene, 75% of styrene, 50% of formaldehyde, 36% of acetaldehyde, 35% of acrolein with acetone, and 85% of toluene were reduced. The purification of indoor air by natural ventilation is meaningless because the ambient PM concentration has recently been high. However, contamination by gaseous materials such as VOCs can effectively be removed through the application of plants.
Acetaldehyde
;
Acetone
;
Acrolein
;
Benzene
;
Formaldehyde
;
Particulate Matter
;
Plants
;
Styrene
;
Toluene
;
Ventilation
;
Volatile Organic Compounds
;
Xylenes
3.Notable mutations of porcine parvovirus 1 and 4 circulating in commercial pig farms in South Korea
Beom Soo PARK ; Jihyeon HONG ; Jongsu JUN ; An Kook CHOI ; Choi Kyu PARK ; Young Soo LYOO
Korean Journal of Veterinary Research 2024;64(1):e4-
In this study, almost complete genomic sequences of PPV1 and PPV4 circulating in commercial pig farms in South Korea were obtained and analyzed. Important mutations that may be precursors to host changes, such as premature stop codons of PPV1 and frameshift mutations of PPV4, were observed in these sequences. A 27a-like strain of PPV1, known to show a lack of cross-neutralization against existing commercial vaccine strains, was identified by phylogenetic analysis. Given the active genetic evolution, the additional precursors to host changes and emerging new genotypes of PPVs need to be monitored through continuous sampling and genetic analysis.