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Ernitha Yuniar Ghaisani
"Kemampuan inhibitor Triazine dalam menginhibisi baja karbon API-5L X60 dalam lingkungan NaCl 3.5% diinvestigasi dengan menggunakan metode Polarisasi Linier Linier Polarization Resistance (LPR) dalam berbagai variasi konsentrasi. Konsentrasi yang digunakan pada penelitian kali ini adalah 0 ppm, 50 ppm, 10 ppm, 150 ppm, 200 ppm, dan 250 ppm. Hasil pengujian menunjukkan bahwa konsentrasi optimum dalam menurunkan laju korosi terdapat pada 150 ppm dengan laju korosi sebesar 0,4457841 mm/year, sedangkan nilai Rp terus meningkat dan optimum pada konsentrasi 250 ppm dengan nilai sebesar 838,85 Ohm. Kurva laju korosi vs konsentrasi inhibitor menunjukkan bahwa konsentrasi optimum inhibitor Triazine dalam menurunkan laju korosi terdapat pada konsentrasi 150 ppm. Efisiensi terbesar terdapat pada konsentrasi 150 ppm dengan nilai 63,94% dan berdasarkan Rp nilai efisiensi optimum pada konsentrasi 250 ppm dengan nilai sebesar 55,16%. Kinerja inhibitor pada pengujian ini masih kurang baik karena masih jauh dari efisiensi inhibitor yang baik yaitu rentang nilai 85-90%.

The performance of Triazine based commercial corrosion inhibitor on carbon stel API 5L X60 on NaCl 3.5 % solution was investigated using Linear Polarization Resistance Method or LPR. The Inhibitor concentration that used in this experiment were 0 ppm, 50 ppm, 100 ppm, 150 ppm, 200 ppm, and 250 ppm. Experimental results showed that the optimum concentration to decrease the corrosion rate is 150 ppm with the corrosion rate in 0,4457841 mm/year , while the optimum polarization resistance is 838,85 Ohm at 250 ppm. The plot of corrosion rate vs inhibitor concentration show the optimum Triazine inhibitor concentration for decreasing corrosion rate is 150 ppm. There optimum efficiency at a concentration of 150 ppm of 63.94 % and Rp optimum efficiency at a concentration of 250 ppm of 55.16 % . Inhibitor performance is still not good because it is still far from a good inhibitor efficiency is 85-90 % range of values."
Depok: Fakultas Teknik Universitas Indonesia, 2016
S62027
UI - Skripsi Membership  Universitas Indonesia Library
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Desak Putu Dewi Chrisnanda Indrayuni
"[ABSTRAK
Kemampuan inhibitor Triazine dalam menginhibisi baja karbon API 5L X60 dalam lingkungan NaCl 3.5% diinvestigasi dengan menggunakan metode Polarisasi Tafel dalam berbagai variasi konsentrasi. Konsentrasi yang digunakan pada penelitian kali ini adalah 0 ppm, 50 ppm, 10 ppm, 150 ppm, 200 ppm, dan 250 ppm. Efisiensi optimum yang didapatkan adalah sebesar 50.28% dengan konsentrasi inhibitor triazine sebesar 150 ppm. Dengan pengujian FTIR, maka dibuktikan bahwa senyawa triazine mampu menginhibisi permukaan baja API 5L X60. Penelitian ini juga membuktikan bahwa inhibitor triazine merupakan inhibitor korosi karena mampu menurunkan laju korosi.Inhibitor triazine termasuk kedalam jenis inhibitor campuran.

ABSTRACT
The corrosion rate from Triazine-based inhibitors on API 5-L X60 steel at NaCl 3,5% environtment were investigated using the Tafel Polarization method. The Triazine compounds that successfully absorbed onto steel surface were investigated using the Fourier Transform Infra Red (FTIR). Triazine?s efficiency depends on the concentration that given onto environtment. The highest efficiency of Triazine inhibitor is 50.28% with the optimize concentration 150 ppm. The investigated Triazine inhibitors were proven as the corrosion inhibitors because it can reduces the corrosion rate. Triazine inhibitors are also mixed type inhibitors.
;The corrosion rate from Triazine-based inhibitors on API 5-L X60 steel at NaCl 3,5% environtment were investigated using the Tafel Polarization method. The Triazine compounds that successfully absorbed onto steel surface were investigated using the Fourier Transform Infra Red (FTIR). Triazine?s efficiency depends on the concentration that given onto environtment. The highest efficiency of Triazine inhibitor is 50.28% with the optimize concentration 150 ppm. The investigated Triazine inhibitors were proven as the corrosion inhibitors because it can reduces the corrosion rate. Triazine inhibitors are also mixed type inhibitors.
, The corrosion rate from Triazine-based inhibitors on API 5-L X60 steel at NaCl 3,5% environtment were investigated using the Tafel Polarization method. The Triazine compounds that successfully absorbed onto steel surface were investigated using the Fourier Transform Infra Red (FTIR). Triazine’s efficiency depends on the concentration that given onto environtment. The highest efficiency of Triazine inhibitor is 50.28% with the optimize concentration 150 ppm. The investigated Triazine inhibitors were proven as the corrosion inhibitors because it can reduces the corrosion rate. Triazine inhibitors are also mixed type inhibitors.
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Depok: Fakultas Teknik Universitas Indonesia, 2016
S62697
UI - Skripsi Membership  Universitas Indonesia Library
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Dini Junivita
"Mekanisme inhibisi korosi dari inhibitor berbahan dasar triazine pada baja API 5L Grade X60 di lingkungan NaCl 3,5% diinvestigasi dengan menggunakan metode model adsorpsi yang didapat dari hasil pengujian Tafel Polarisasi, Linier Polarisasi dan Electrochemical Impedance Spectroscopy (EIS) dengan menggunakan variasi konsentrasi 0 ppm, 50 ppm, 100 ppm, 150 ppm, 200 ppm dan 250 ppm. Senyawa triazine yang teradsorpsi pada permukaan logam diinvestigasi dengan menggunakan pengujian Fourier Transform InfraRed (FTIR). Hasilnya didapatkan bahwa proses adsorpsi inhibitor triazine terjadi secara spontan mengikuti mode adsorpsi Langmuir isoterm. Berdasarkan nilai Nilai Goads berada pada rentang -11.0697 kJ/mol sampai -19.7833 kJ/mol menunjukkan bahwa inhibitor triazine menginhibisi korosi dengan cara adsorpsi fisika (interaksi elektrostatis antara muatan molekul inhibitor dengan muatan permukaan logam) membentuk lapisan tunggal di permukaan logam sehingga dapat menghambat proses korosi. Besarnya efisiensi inhibisi inhibitor berbahan dasar triazine bergantung pada konsentrasi inhibitor. Efisiensi inhibisi tertinggi diperoleh pada konsentrasi triazine 150 ppm sebesar 68,674% berdasarkan hasil pengujian Electrochemical Impedance Spectroscopy.

Corrosion inhibition mechanism of triazine-based corrosion inhibitor on API 5L Grade X60 steel in 3.5% NaCl environment was investigated by using adsorption method from the results of tafel polarization, linier polarization resistance (LPR), and Electrochemical Impedance Spectroscopy (EIS) tests with 0 ppm, 50 ppm, 100 ppm, 150 ppm, 200 ppm and 150 ppm concentration variation. Triazine compounds which adsorbed on metal surface was also investigated by Fourier Transform InfraRed (FTIR) test. It was found that adsorption process of triazine-based inhibitor occurs spontaneously and follow the Langmuir adsorption isotherm. From the calculation of Goads (around -11.0697 kJ/mol to -19.7833 kJ/mol), it indicates that the inhibitor inhibited corrosion by physisorption (involving electrostatic attraction between the charged of inhibitor molecules and the charged of metal surface) to form a monolayer on the metal surface so that corrosion will be obstructed. Inhibition efficiency of triazine-based inhibitor was concentration dependent. The optimum inhibition efficiency is 68,674% in 150 ppm concentration of triazine as a result of Electrochemical Impedance Spectroscopy test."
Depok: Fakultas Teknik Universitas Indonesia, 2016
S62699
UI - Skripsi Membership  Universitas Indonesia Library
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Syarah Azmi Kariza
"Kemampuan inhibitor triazine dalam menginhibisi baja karbon API 5L X60 dalam lingkungan NaCl 3.5% diinvestigasi dengan menggunakan metode Electrochemical Impedance Spectroscopy (EIS) dalam berbagai variasi konsentrasi. Konsentrasi yang digunakan pada pada penelitian kali ini adalah 0 ppm, 50 ppm, 100 ppm, 150 ppm, 200 ppm, 250 ppm. Hasil pengujian menunjukkan bahwa ketika melewati konsentrasi optimum (150 ppm), nilai Rct dan efisiensi inhibitor akan berada pada nilai yang konstan, yang masing-masing nilainya adalah 581 Ω dan 68.6 %. Plot impedansi vs frekuensi yang ditunjukkan oleh kurva Bode Modulus mendukung hasil analisis data sebelumnya yang menunjukkan nilai ketahanan pada konstrasi 150 ppm memiliki ketahanan yang paling besar pada frekuensi rendah maupun tinggi.

The performance of Triazine based commercial corrosion inhibitor on carbon steel API 5L X60 on NaCl 3.5% solutions was investigated using Electrochemical Impedance Spectroscopy methods. Inhibitor concentration which used in these experiments was 0 ppm, 50 ppm, 100 ppm, 150 ppm, 200 ppm, and 250 ppm. Experimental results showed that when the concentration is above the optimum?s one (150 ppm), Rct and inihibitor efficiency value would be on a constant value, which each value is 581 Ω and 68.6 %. Plot of impedance vs frequency which showed by Bode Modulus curve support the previous data analysis, that the impedance value on 150 ppm had the highest impedance, at the low and high frequency."
Depok: Fakultas Teknik Universitas Indonesia, 2016
S65234
UI - Skripsi Membership  Universitas Indonesia Library
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Khairul Ikhwan
"Kemampuan inhibitor Imidazoline dalam menginhibisi baja karbon API 5L Grade B dalam lingkungan NaCl 3.5 % diinvestigasi dengan menggunakan metode Polarisasi Tahanan Linier atau Linier Polarization Resistance (LPR) dalam berbagai variasi konsentrasi. Konsentrasi yang digunakan pada penelitian kali ini adalah 0 ppm, 50 ppm, 10 ppm, 150 ppm, 200 ppm, dan 250 ppm. Hasil pengujian menunjukkan bahwa konsentrasi optimum dalam menurunkan laju korosi terdapat pada 200 ppm dengan laju korosi sebesar 0,0005 mm/year, sedangkan nilai Rp terus meningkat dan optimum pada konsentrasi 250 ppm dengan nilai sebesar 579,042 Ohm. Kurva laju korosi vs konsentrasi inhibitor menunjukkan bahwa konsentrasi optimum inhibitor imidazoline dalam menurunkan laju korosi terdapat pada konsentrasi 200 ppm.

The performance of Imidazoline based commercial corrosion inhibitor on carbon stel API 5L Grade B on NaCl 3.5 % solution was investigated using Linear Polarization Resistance Method or LPR. The Inhibitor concentration that used in this experiment were 0 ppm, 50 ppm, 100 ppm, 150 ppm, 200 ppm, and 250 ppm. Experimental results showed that the optimum concentration to decrease the corrosion rate is 200 ppm with the corrosion rate is 0,0005 mm/year , while the optimum polarization resistance is 579,042 Ohm at 250 ppm. The plot of corrosion rate vs inhibitor concentration show the optimum imidazoline inhibitor concentration for decreasing corrosion rate is 200 ppm."
Depok: Fakultas Teknik Universitas Indonesia, 2014
S53801
UI - Skripsi Membership  Universitas Indonesia Library
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Rodax Jimmy Wibawa
"ABSTRAK
Laju korosi dari inhibitor dengan bahan dasar Imidazoline pada baja API 5-L Grade B dalam lingkungan NaCl 3,5% diinvestigasi dengan menggunakan metode polarisasi Tafel. Senyawa Imidazoline yang berhasil teradsorpsi ke permukaan logam diselidiki dengan menggunakan pengujian FTIR. Efisiensi inhibisi inhibitor Imidazoline bergantung pada konsentrasi inhibitor yang diberikan. Efisiensi optimum yang diperoleh 64,80 % dengan konsentrasi optimum 150 ppm. Inhibitor Imidazolin yang diselidiki merupakan jenis inhibitor campuran. Inhibitor Imidazoline juga dikatakan sebagai inhibitor korosi karena terbukti dapat menurnkan laju korosi.

ABSTRACT
The corrosion rate from Imidazoline-based inhibitors on API 5-L Grade B steel at NaCl 3,5% environtment were investigated using the Tafel Polarization method. The Imidazoline compounds that successfully absorbed onto steel surface were investigated using the Fourier Transform Infra Red (FTIR). Imidazolin’s efficiency depends on the concentration that given onto environtment. The highest efficiency of Imidazoline inhibitor is 64,80% with the optimize concentration 150 ppm. The investigated Imidazoline inhibitors were proven as the corrosion inhibitors because it can reduces the corrosion rate. Imidazoline inhibitors are also mixed type inhibitors."
Fakultas Teknik Universitas Indonesia, 2014
S55454
UI - Skripsi Membership  Universitas Indonesia Library
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Yudha Pratesa
"Kebutuhan akan minyak dan gas bumi semakin meningkat,,peningkatan ini membutuhkan proses produksi yang berkesinambungan. Untuk mencegah korosi pada sumur injeksi umumnya dilakukan water treatment dengan menggunakan inhibitor,salah satunya adalah natrium sulfit. Untuk membuat keadaannya sesuai dengan keadaan didalam sumur injeksi maka percobaan dilakukan pada fluida yang mengalir dengan kecepatan dan kadar oksigen yang telah ditentukan. Percobaan dilakukan dengan menggunakan alat Rotating Cylinder Electrode (RCE) untuk memberikan pengaruh kecepatan selama pengujian dalam larutan NaCl 3,5% . Selain dalam keadaan fluida yang bergerak penelitian dilakukan pula pada keadaan statis (0 rpm) untuk membandingkan efek kecepatan terhadap kinerja inhibitor natrium sulfit.
Dari hasil pengujian,dengan penambahan inhibitor natrium sulfit 10 ppm,50 ppm dan 100 ppm didapatkan hasil bahwa laju korosi menurun seiring dengan penambahan inhibitor natrium sulfit. Dengan kadar inhibitor yang efisien adalah pada penambahan 50 ppm natrium sulfit yaitu sebesar 60% pada keadaan fluida diam dan 88% dalam keadaan fluida bergerak 1000 RPM. Dari pengujian ini dihasilkan kesimpulan bahwa efek inhibisi natrium sulfit tidak dipengaruhi oleh keadaan lingkungannya.Selain itu dari kurva polarisasi dan pengujian kadar oskigen terlarut didapatkan kesimpulan bahwa metode inhibisinya adalah katodik inhibitor.

The need for oil and natural gas is increasing,this increase requires a continous production process. To prevent corrosion in injection wells some water treatment are generally done by using inhibittor for example,Natrium Sulfite. Experiments carried out by using a Rotating Cylinder Electrode (RCE) to give an effect of speed during testing in 3,5% NaCl solution. Beside on the moving fluid, the research is investigated on static condition to compare the effect of velocity on the performance of sodium sulphite inhibitor.
From the test result,with the addition of inhibitors of sodium sulfit 10 ppm, 50 ppm and 100 ppm showed that the corrosion rate decreases with the addition of sodium sulfit.With the most effecicient adding is 50 ppm sodium sulfit,which is equal to 60% on the static fluid and 88% n the moving fluid. From this experiment result, we can conclude that inhibition effect of sodium sulfit not influenced by velocity.Beside that from polarization curve and dissolved oxygen test we can conclude that mode of natrium sulfit is cathodic inhibitor.
"
Depok: Fakultas Teknik Universitas Indonesia, 2010
S51528
UI - Skripsi Open  Universitas Indonesia Library
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Dhea Jullieta Islami
"Dunia industri merupakan bagian yang tidak dapat dipisahkan dari penggunaan logam dan paduannya. Salah satu tantangan terbesar dan terumit bagi industri adalah bagaimana melindungi logam tersebut dari korosi. Baja karbon dan baja tahan karat merupakan material yang umum digunakan dalam industri. Kedua material tersebut memiliki karakteristik yang berbeda. Penelitian ini dilakukan untuk mengetahui mekanisme pembentukan lapisan pasif pada baja AISI 1018 dan baja 316 L dan juga efisiensi dari penggunaan inhibitor Na2S2O3 pada baja AISI 1018 dalam larutan NaCl 3,5%. Adapun pengujian yang dilakukan terdiri dari pengamatan mikroskopik, pengujian kehilangan berat, pengujian polarisasi, pengujian EIS, dan pengujian SEM-EDS. Hasil dari penelitian menunjukkan bahwa fenomena pasivasi pada baja AISI 1018 terlihat pada penambahan inhibitor Na2S2O3 2000 ppm dimana terbentuknya dua daerah terjadinya pasivasi, yaitu daerah aktif dan daerah pseudo-pasif pada potensial -0,7 V. Sedangkan pada baja tahan karat 316 L fenomena pasivasi ditunjukkan oleh tiga daerah, yaitu daerah aktif, daerah pasif, dan daerah transpasif. Fenomena pasivasi ini dimulai pada potensial -0,3 V dengan rapat arus 2,51 x 10-4 A/cm2 dan kemudian akan memasuki daerah transpasif pada 0,5 V. Nilai efisiensi inhibitor Na2S2O3 pada konsentrasi 1000 ppm sebesar 23,25%, 1500 ppm sebesar 47,45%, 2000 ppm sebesar 59,78%, dan 2500 ppm sebesar 47,43%.

The industrial world is an inseparable part of the use of metals and their alloys. One of the biggest challenges for the industry is how to protect the metal from corrosion. Carbon steel and stainless steel are materials commonly used in industry. The two types of materials have different characteristics. This research was conducted to determine the mechanism of the formation of a passive layer on AISI 1018 steel and 316 L steel and also the efficiency of the use Na2S2O3 inhibitor on AISI 1018 steel in a 3,5% NaCl solution. The research conducted consisted of optical microscopy observation, weight loss testing, polarization testing, EIS testing, and SEM-EDS testing. The results of the study indicate that the phenomenon of passivation in AISI 1018 steel was seen in the addition of 2000 ppm Na2S2O3 inhibitor where the formation of two regions of passivation, namely the active region and the pseudo-passive region at a potential of -0,7 V. Meanwhile, in SS 316 L steel, the passivation phenomenon is indicated by three regions, namely the active region, passive region, and transpassive region. This passivation phenomenon starts at a potential of -0,3 V with a current density of 2,51 x 10-4 A/cm2 and will enter the transpassive region at 0,5 V. The efficiency values of Na2S2O3 inhibitor at concentrations of 1000 ppm is 23,25%, 1500 ppm is 47,45%, 2000 ppm is 59,78%, and 2500 ppm is 47,43%."
Depok: Fakultas Teknik Universitas Indonesia, 2021
S-pdf
UI - Skripsi Membership  Universitas Indonesia Library
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Muhammad Faisal Rendi
"[Logam merupakan kebutuhan utama dari infrastruktur pada industri. Korosi pada logam merupakan suatu hal yang tidak dapat dihindari, dan seringkali menjadi penyebab utama kegagalan dalam berbagai industri, terutama industri minyak dan gas yang berada di lepas pantai. Pemilihan material yang sesuai dapat mencegah terjadinya korosi pada industri, sehingga meminimalisir penggantian komponen dalam waktu yang singkat.
Penelitian ini dilakukan untuk mempelajari perilaku korosi pada pipa baja tahan karat austenitik 316L pada lingkungan NaCl yang bervariasi. Parameter elektrokimia dievaluasi dengan menggunakan metode polarisasi siklik untuk mengetahui perilaku korosi yang terjadi pada lingkungan NaCl. Pemanasan dilakukan untuk mendapatkan perbedaan bentuk mikrostruktur dari keadaan awal. Kemudian diuji didalam lingkungan NaCl 3,5% yang memiliki kelarutan oksigen tertinggi dan bandingkan dengan logam yang tidak dipanaskan pada konsentrasi yang sama.
Hasil penelitian menunjukkan bahwa ketahanan korosi berubah berdasarkan konsentrasi NaCl, logam paling tahan dengan korosi pada NaCl 1%, dan paling lemah ketahanannya pada NaCl 3,5%. Perubahan mikrostruktur yang menjadi lebih tidak seragam dan kemunculan sensitasi menurunkan ketahanan korosi. Dari hasil polarisasi siklik didapati bahwa mekanisme korosi pada lingkungan NaCl adalah korosi sumuran.

Steels are basic needs for industrial infrastructure. Corrosion in steels can?t be avoided and often plays a role as a major cause of failure in industries, especially offshore oil and gas. Proper material selection is one of the best ways to prevent corrosion and minimize component replacement caused by corrosion.
This study investigates corrosion behaviour of austenitic stainless steel 316L in various NaCl solutions. Electrochemical parameter is evaluated by cyclic polarization, and also to determine which corrosion behaviour has occurred. Heat is given to obtain different microstructure shapes from the initial one. Then tested in 3.5% NaCl solution and compared to the un-heated with the same solution concentration.
The results shown that corrosion resistance affected by Chloride presence, with 1% concentration was the strongest, and 3.5% was the most susceptible. Microstructure transformation to more un-uniform than before heated, and presence of sensitization decreases the corrosion resistance. From the cyclic curve, it is known that the corrosion behaviour that occurred was pitting corrosion., Steels are basic needs for industrial infrastructure. Corrosion in steels can’t be avoided and often plays a role as a major cause of failure in industries, especially offshore oil and gas. Proper material selection is one of the best ways to prevent corrosion and minimize component replacement caused by corrosion.
This study investigates corrosion behaviour of austenitic stainless steel 316L in various NaCl solutions. Electrochemical parameter is evaluated by cyclic polarization, and also to determine which corrosion behaviour has occurred. Heat is given to obtain different microstructure shapes from the initial one. Then tested in 3.5% NaCl solution and compared to the un-heated with the same solution concentration.
The results shown that corrosion resistance affected by Chloride presence, with 1% concentration was the strongest, and 3.5% was the most susceptible. Microstructure transformation to more un-uniform than before heated, and presence of sensitization decreases the corrosion resistance. From the cyclic curve, it is known that the corrosion behaviour that occurred was pitting corrosion.]"
Depok: Fakultas Teknik Universitas Indonesia, 2016
S62248
UI - Skripsi Membership  Universitas Indonesia Library
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Mayang Centya Febriary
"Mekanisme inhibisi korosi dari inhibitor berbahan dasar imidazoline pada baja API 5L Grade B di lingkungan NaCl 3,5% diinvestigasi dengan menggunakan metode model adsorpsi yang didapat dari hasil pengujian Tafel Polarisasi, Linier Polarisasi dan Electrochemical Impedance Spectroscopy (EIS) dengan menggunakan variasi konsentrasi 0 ppm, 50 ppm, 100 ppm, 150 ppm, 200 ppm dan 250 ppm. Senyawa imidazoline yang teradsorpsi pada permukaan logam diinvestigasi dengan menggunakan pengujian Fourier Transform InfraRed (FTIR). Hasilnya didapatkan bahwa proses adsorpsi inhibitor imidazoline terjadi secara spontan mengikuti mode adsorpsi Langmuir isoterm. Berdasarkan nilai Goads antara -16,2 kJ/mol sampai -17,5 kJ/mol menunjukkan bahwa inhibitor imidazoline menginhibisi korosi dengan cara adsorpsi fisika (interaksi elektrostatis antara muatan negatif molekul inhibitor dengan muatan positif permukaan logam) membentuk lapisan tunggal di permukaan logam sehingga dapat menghambat proses korosi. Besarnya efisiensi inhibisi inhibitor berbahan dasar imidazoline bergantung pada konsentrasi inhibitor. Efisiensi inhibisi tertinggi diperoleh pada konsentrasi imidazoline 250 ppm sebesar 72,69% berdasarkan hasil pengujian Linier polarisasi.

Corrosion inhibition mechanism of imidazoline-based corrosion inhibitor on API 5L Grade B steel in 3.5% NaCl environment was investigated by using adsorption method from the results of tafel polarization, linier polarization resistance (LPR), and Electrochemical Impedance Spectroscopy (EIS) tests with 0 ppm, 50 ppm, 100 ppm, 150 ppm, 200 ppm and 150 ppm concentration variation. Imidazoline compounds which adsorbed on metal surface was also investigated by Fourier Transform InfraRed (FTIR) test. It was found that adsorption process of imidazoline-based inhibitor occurs spontaneously and follow the Langmuir adsorption isotherm. From the calculation of Goads (around -16,2 kJ/mol to -17,5 kJ/mol), it indicates that the inhibitor inhibited corrosion by physisorption (involving electrostatic attraction between the negative charged of inhibitor molecules and the positive charged of metal surface) to form a monolayer on the metal surface so that corrosion will be obstructed. Inhibition efficiency of imidazoline-based inhibitor was concentration dependent. The optimum inhibition efficiency is 72,69% in 250 ppm concentration of imidazoline as a result of LPR test."
Depok: Fakultas Teknik Universitas Indonesia, 2014
S53218
UI - Skripsi Membership  Universitas Indonesia Library
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