Dew Formation and Anaerobiosis in Anaerobic Jars

IF 0.1 4区 医学 Q4 INFECTIOUS DISEASES Southeast Asian Journal of Tropical Medicine and Public Health Pub Date : 2023-09-12 DOI:10.9734/ajmah/2023/v21i10912
Akhmad Sudibya, Indah Widyaningsih
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Abstract

Introduction: This study aimed to prove whether the palladium catalyst affects the dew formation time in the anaerobic cover and whether anaerobiosis can be achieved without a palladium catalyst. Materials and Methods: This research is a laboratory experimental study with a non-randomized control group design. In this study, replication was carried out. The amount of replication used is 10. The palladium catalyst was used in 10 experiments, whereas it was not used in ten other experiments. Results: The growths of Pseudomonas aeruginosa, Clostridium tetani, and Bacteroides fragilis were observed after 48-hour incubation. The time of appearance of water condensate was observed until 24-hour incubation. The time of appearance of water condensate in the palladium-contained anaerobic jar varied between 1.37 minutes and 3.33 minutes. On the other hand, water condensate did not appear in the without-palladium anaerobic jar. No growth of Pseudomonas aeruginosa was observed in the palladium-contained anaerobic jar; on the contrary, there were ten growths in the anaerobic jar without palladium. Eight growths of Clostridium tetani were observed in the palladium-contained anaerobic jar, whereas there was no growth without palladium. No growth of Bacteroides fragilis was observed in the without-palladium anaerobic jar, whereas seven growths were observed in the anaerobic jar containing palladium. The time of appearance of water condensate in the palladium-contained anaerobic jar was different from that in the anaerobic jar without palladium. Significant differences (p < 0,01) in anaerobiosis creation between the palladium-contained anaerobic jar and the without-palladium anaerobic jar were also clearly observed.
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厌氧罐中的结露与厌氧作用
简介:本研究旨在证明钯催化剂是否影响厌氧盖内结露时间,以及无钯催化剂是否可以厌氧。 材料与方法:本研究为实验室实验研究,采用非随机对照组设计。在本研究中,进行了重复研究。使用的复制数量为10。在10个实验中使用了钯催化剂,而在另外10个实验中没有使用钯催化剂。结果:孵育48 h后,观察到铜绿假单胞菌、破伤风梭菌和脆弱拟杆菌的生长。观察凝结水出现的时间,直至孵育24小时。含钯厌氧罐冷凝水出现时间在1.37 ~ 3.33分钟之间。另一方面,无钯厌氧罐不出现冷凝水现象。含钯厌氧罐中未见铜绿假单胞菌生长;相反,在无钯的厌氧罐中有10个生长。在含钯厌氧瓶中观察到8株破伤风梭菌的生长,而在无钯厌氧瓶中没有生长。在无钯厌氧瓶中未观察到脆弱拟杆菌的生长,而在含钯厌氧瓶中观察到7个生长。含钯厌氧罐中冷凝水出现的时间与不含钯厌氧罐中不同。显著差异(p <在含钯厌氧罐和不含钯厌氧罐之间厌氧产生的差异也很明显。
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来源期刊
Southeast Asian Journal of Tropical Medicine and Public Health
Southeast Asian Journal of Tropical Medicine and Public Health PUBLIC, ENVIRONMENTAL & OCCUPATIONAL HEALTH-INFECTIOUS DISEASES
CiteScore
0.40
自引率
0.00%
发文量
0
审稿时长
3-8 weeks
期刊介绍: The SEAMEO* Regional Tropical Medicine and Public Health Project was established in 1967 to help improve the health and standard of living of the peoples of Southeast Asia by pooling manpower resources of the participating SEAMEO member countries in a cooperative endeavor to develop and upgrade the research and training capabilities of the existing facilities in these countries. By promoting effective regional cooperation among the participating national centers, it is hoped to minimize waste in duplication of programs and activities. In 1992 the Project was renamed the SEAMEO Regional Tropical Medicine and Public Health Network.
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