ANALISA KEBUTUHAN DAN SPESIFIKASI TEKNIS POMPA UMPAN HYDROLIZER PADA PUSRI EFFLUENT TREATMENT PLANT

Main Article Content

Richard Marbun

Abstract

PT Pupuk Sriwidjaja Palembang has a plant effluent treatment facility called Pusri Effluent Treatment (PET) Plant. The effluent streams come from Urea and Ammonia plants and are fed to PET using Effluent Hydrolizer Feed Pump GA-701. The objective of this analysis is to obtain the relevant and optimum pump’s technical requirements and specifications for accommodating the plant operating requirement. Using literature research, field research, and technical discussions, the optimal specifications of the GA-701 pump can be determined. The rated design point of the pump is 55 m3/hour at a head of 260.8 m, with an efficiency greater than 52.9% and an NPSHr less than 9.6 m. For reliability, the pump construction type is a between-bearing multistage type with SS316 material for the wetted parts and supported by the use of a mechanical seal with API Flush Plan 32.

Downloads

Download data is not yet available.

Article Details

How to Cite
Marbun, R. (2023). ANALISA KEBUTUHAN DAN SPESIFIKASI TEKNIS POMPA UMPAN HYDROLIZER PADA PUSRI EFFLUENT TREATMENT PLANT. MACHINERY: Jurnal Teknologi Terapan, 4(2), 109–119. https://doi.org/10.5281/zenodo.8085547
Section
Articles

References

Al-Shaye, A., Al-Shuhail, Y. and others (2013) ‘Exploring Alternative Designs to Integrally Geared High Speed Pumps-Case Study’, in Middle East Turbomachinery Symposia. 2013 Proceedings.

American Petroleum Institute (2010) API 610: Centrifugal pumps for petroleum, petrochemical and natural gas industries. 11th edn. Washington, D.C.: American Petroleum Institute.

American Petroleum Institute (2014) API 682: Shaft sealing systems for centrifugal and rotary pumps. 5th edn. Washington, D.C.: American Petroleum Institute.

Bidmus, H., Chau, J. and Dechant, K. (2019) ‘Absolute roughness of pipes from different manufacturing and treatment methods and impact on pipeline design’, in PSIG Annual Meeting.

Branan, C. (1994) Rules of Thumb for Chemical Engineers: A Manual of Quick, Accurate Solutions to Everyday Process Engineering Problems. Gulf Publishing Company.

Co, C. (1988) Flow of fluids through valves, fittings, and pipe. Crane Company.

Company, K. (2021) ‘Pressure Drop Chart; Fabricated Temporary Cone/Basket Strainers’. Available at: https://www.keckley.com/assets/files/3-5_fab-temp-strainers/TC-TB Pressure Drop Chart.pdf.

Departemen Reliability Pusri (2022) Laporan Pemeriksaan GA 701 PET-IV No. 455 /DD502.LA/2022. Palembang.

Forsthoffer, W.E. (2005) 2. Forsthoffer’s Rotating Equipment Handbooks: Pumps. Elsevier Science (Forsthoffer’s Rotating Equipment Handbooks). Available at: https://books.google.co.id/books?id=XRkU0vc5osEC.

Hirschberger, M., James, I. and others (2009) ‘A Review Of NSS Limitations: New Opportunities’, in Proceedings of the 25th International Pump Users Symposium.

Karassik, I. et al. (2000) Pump Handbook. McGraw-Hill Education (McGraw-Hill handbooks). Available at: https://books.google.co.id/books?id=d29fFd0kiSgC.

Raza, A. (2013) ‘Sizing, Specifying and Selecting Centrifugal Pumps’, Chemical Engineering, 120(2), p. 43.

Toyo Engineering Corporation (1993) PET PRO TECHNICAL BOOK PET TEC NO OM-050001-01. Chiba, Japan.

Undang-undang Nomor 32 Tahun 2009 tentang Perlindungan dan Penegakan Hukum Lingkungan.

Permen KLH No.5 Tahun 2014 tentang baku mutu air limbah