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PENGARUH STAPHYLOCOCCUS AUREUS DALAM RUANGAN TERHADAP SICK BUILDING SYNDROME (SBS) DI PT UNILAB PERDANA, JAKARTA SELATAN Hendro Wiguno; Nurhayati; Hening Darpito
JURNAL TECHLINK Vol. 4 No. 1 (2020)
Publisher : FT-USNI

Show Abstract | Download Original | Original Source | Check in Google Scholar | Full PDF (275.364 KB) | DOI: 10.59134/jtnk.v4i1.64

Abstract

This study aims to obtain information and determine the effect of Staphylococcus aureus in the room against sick building syndrome (SBS) on front office employees and operational space at PT Unilab Perdana, South Jakarta. The location of the study was conducted at PT Unilab Perdana, South Jakarta. When the study was conducted in March to July 2019. The results showed that: the influence of SBS symptoms at the front office location were 44 people, an average of 9 colonies of staphylococcus aureus bacteria. While the influence of SBS symptoms in the operational space location was 64 people, with an average of 18.3 colonies of staphylococcus aureus bacteria. The number of employees in the operational room experienced a frequency of Sick Building Syndrome (SBS) complaints dominated by headaches, fatigue, difficulty concentrating and nausea and dizziness with a category 1-3 times as many as 8 people (53.33%). The cause of the number of employees who are in the operational room experiences the frequency of Sick Building Syndrome (SBS) complaints because of the large number of employees who are in the operational space location, and employee activities are centralized in the operational space. Thus, there is an effect of the number ofstaphylococcus aureus bacterial colonies in the room on Sick Building Syndrome (SBS) in front office employees and the operating room of PT Unilab Perdana, South Jakarta. The dominance of symptomsand frequency of Sick Building Syndrome (SBS) complaints occurred in employees in the operatingroom of PT Unilab Perdana, South Jakarta
PERANCANGAN SISTEM PLAMBING PADA BANGUNAN WISMA MESS SEPOLWAN CIPUTAT Ayo Pahpayungi; Hening Darpito; Mudarisin
JURNAL TECHLINK Vol. 6 No. 02 (2022)
Publisher : FT-USNI

Show Abstract | Download Original | Original Source | Check in Google Scholar | Full PDF (1162.49 KB) | DOI: 10.59134/jtnk.v6i02.176

Abstract

The construction of high-rise buildings in big cities is currently increasing rapidly, before the building is built, it is necessary to plan a plumbing system to meet the needs of water supply for daily needs in buildings and waste water disposal. In planning the plumbing of Wisma Mess Sepolwan 3 floors, the need for clean water is 28.92 m3/day, the GWT (Ground Water Tank) bottom tank capacity is 6.5 m3/day, the top tank capacity (Roof Tank) is 5.4 m3/day and the sewer tank 25 m3/day.The transfer of clean water from the ground water tank to the top water tank (roof tank) uses a transfer pump with a capacity of 5.4 m3/minute, pump head of 39.64 m. Fordistribution of clean water on 3 floors using a pressure booster pump with a capacity of 0.16 m3/minute and a pump head of 10.3 m.Transfer of clean water from the bottom water tank (Ground Water Tank) to the top water tank (Roof Tank) using a pipe size of 40 mm. The design of the diameter of the clean water distribution pipe for each floor gets a size of 150 mm diameter of the main pipe / water main pipe and 50 mm per floor.The design of the diameter of the sewerage pipe from (closet and toilet) size to the standpipe for each floor is 100 mm and the diameter of the riser standpipe is 150 mm. The design of the diameter of the waste water pipe from (hand sinks and traps) to the size of the standpipe for each floor is 80 mm and the diameter of the riser standpipe is 100 mm. The design of the vent pipe diameter for the size of the standpipe for each floor is 50 mm and the diameter of the riser standpipe is 80 mm