Analisis Pengaruh Coating Zirconium Silicate/Polytetrafluoroetilena (ZrSiO4/PTFE) Terhadap Perilaku Korosi Pipa Api 5L Grade B Pada Sistem Pipa Reinjeksi Geothermal

Khaerul, Rifky (2026) Analisis Pengaruh Coating Zirconium Silicate/Polytetrafluoroetilena (ZrSiO4/PTFE) Terhadap Perilaku Korosi Pipa Api 5L Grade B Pada Sistem Pipa Reinjeksi Geothermal. Other thesis, Institut Teknologi Sepuluh Nopember.

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Abstract

Energi panas bumi merupakan salah satu sumber energi terbarukan yang potensial bagi Indonesia, sejalan dengan target pemerintah untuk mencapai bauran energi terbarukan sebesar 23% pada tahun 2025 dan 31% pada tahun 2050. Namun demikian, korosi pada pipa reinjeksi geothermal menjadi tantangan serius yang mengancam keandalan sistem, terutama pada pipa API 5L Grade B yang umum digunakan namun memiliki ketahanan korosi relatif rendah terhadap fluida kondensat yang bersifat korosif. Penelitian ini menganalisis pengaruh coating ZrSiO4/PTFE terhadap perilaku korosi pipa API 5L Grade B pada sistem reinjeksi geothermal menggunakan pengujian weightloss, SEM-EDX, XRD, EIS, dan pull-off adhesion, dengan variasi konsentrasi filler ZrSiO4 (5, 10, dan 15 Wt%) dan suhu fluida kondensat (40, 60, dan 80 °C) selama 14 hari. Substrat tanpa coating mengalami korosi pitting kategori severe berdasarkan NACE SP0775-2013 dengan laju korosi tertinggi 3,7412 mmpy pada 80°C dan produk korosi Fe3O4, CaCO3, dan Fe2O3. Penambahan coating secara signifikan menurunkan laju korosi; performa terbaik pada 40°C diperoleh dari PTFE + ZrSiO4 15wt% (efisiensi 96,44%, 0,07 mmpy), sedangkan pada 60°C dan 80°C, PTFE tanpa filler memberikan hasil optimal dengan efisiensi masing-masing 95,24% dan 92,93%. Kenaikan laju korosi pada penambahan filler di suhu tinggi disebabkan ketidakselarasan Coefficient of Linier Thermal Expansion (CLTE) antara matriks PTFE (100 ppm/°C) dan ZrSiO4 (4–6 ppm/°C) yang memicu microcracking dan delaminasi. Analisis XRD mengkonfirmasi fasa produk korosi Fe3O4, CaCO3, dan Fe2O3 pada tanpa coating, kemudian FeO dan Fe3O4 setelah penambahan coating.
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Geothermal energy is a potential renewable energy source for Indonesia, aligning with the government's target to achieve a renewable energy mix of 23% by 2025 and 31% by 2050. However, corrosion in geothermal reinjection pipelines poses a serious challenge that threatens system reliability, particularly in commonly used API 5L Grade B pipes, which exhibit relatively low corrosion resistance against corrosive condensate fluids. This study investigates the effect of ZrSiO4/PTFE coatings on the corrosion behavior of API 5L Grade B pipes in a geothermal reinjection system using weight loss testing, SEM-EDX, XRD, EIS, and pull-off adhesion tests, with variations in ZrSiO4 filler concentration (5, 10, and 15 wt%) and condensate fluid temperature (40, 60, and 80 °C) over a 14-day immersion period. The uncoated substrate experienced severe pitting corrosion based on the NACE SP0775-2013 standard, with a peak corrosion rate of 3.7412 mmpy at 80 °C and corrosion products consisting of Fe3O4, CaCO3, and Fe2O3. The application of the coating significantly reduced the corrosion rate; the highest performance at 40 °C was achieved by PTFE + ZrSiO4 15 wt% (efficiency of 96.44%, 0.07 mmpy), whereas at 60 °C and 80 °C, neat PTFE (without filler) yielded optimal results with efficiencies of 95.24% and 92.93%, respectively. The increased corrosion rate observed with filler addition at elevated temperatures was attributed to the Coefficient of Linear Thermal Expansion (CLTE) mismatch between the PTFE matrix (100 ppm/°C) and the ZrSiO4 filler (4–6 ppm/°C), which induced microcracking and delamination. XRD analysis confirmed the presence of Fe3O4, CaCO3, and Fe2O3 corrosion product phases on the uncoated substrate, shifting to FeO and Fe3O4 following coating application.

Item Type: Thesis (Other)
Uncontrolled Keywords: Kata kunci: Korosi, ZrSiO4/PTFE Coating, Pipa API 5L Grade B, Reinjeksi Geothermal Keywords: Corrosion, ZrSiO4/PTFE Coating, API 5L Grade B Pipe, Geothermal Reinjection
Subjects: Q Science > QC Physics > QC151 Fluid dynamics
Q Science > QC Physics > QC173.4.C63 Composite materials
Q Science > QC Physics > QC271 Temperature measurements
Q Science > QC Physics > QC 611.97.T46 Temperature effects. Including transition temperature
Q Science > QD Chemistry > Polymerization
Q Science > QD Chemistry > QD79.T38 Thermal analysis
T Technology > TA Engineering (General). Civil engineering (General) > TA169.5 Failure analysis
T Technology > TA Engineering (General). Civil engineering (General) > TA418.75 Corrosion-resistant materials
T Technology > TA Engineering (General). Civil engineering (General) > TA418.9.C57 Coatings
T Technology > TA Engineering (General). Civil engineering (General) > TA455.A34 Adhesives
T Technology > TA Engineering (General). Civil engineering (General) > TA462 Metal Corrosion and protection against corrosion
T Technology > TA Engineering (General). Civil engineering (General) > TA491 Metal coating.
Divisions: Faculty of Industrial Technology and Systems Engineering (INDSYS) > Material & Metallurgical Engineering > 28201-(S1) Undergraduate Thesis
Depositing User: Rifky Khaerul
Date Deposited: 24 Jul 2026 02:15
Last Modified: 24 Jul 2026 02:15
URI: http://repository.its.ac.id/id/eprint/137205

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