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Sianipar, Folo Daniel
"Ekstrak areca flower telah diteliti sebagai inhibitor korosi pada baja API 5L Gr. B pada lingkungan 1 M HCl dengan menggunakan pengujian Linear Polarisasi dan Electrochemical Impedance Spectroscopy EIS. Penambahan konsentrasi inhibitor 4 ml, 8 ml, 12 ml, 16 ml, dan 20 ml dapat meningkatkan efisiensi inhibitor. Efisiensi inhibitor optimum terjadi pada saat penambahan konsentrasi inhibitor 20 ml sebesar 96.6 pada pengujian Electrochemical Impedance Spectroscopy EIS. Senyawa polifenol dan flavonoid yang terkandung dalam areca flower dapat menginhibisi korosi secara adsorpsi fisika yang membentuk lapisan monolayer yang dapat menghambat terjadinya korosi. Adsorpsi terjadi secara spontan sesuai dengan adsorpsi isotermal Langmuir. Sesuai hasil pengujian polarisasi menunjukkan ekstrak areca flower memiliki tipe inhibisi campuran mixed-type . Nilai energi bebas adsorpsi -7.026 kJ/mol menunjukkan bahwa adsorpsi molekul inhibitor adalah adsorpsi fisika.

Areca flower has been investigated as green corrosion inhibitor on API 5L Gr B in solution 1 M HCl acidic using Linear polarization and Electrochemical Impedance Spectroscopy EIS . Addition of 4 ml, 8 ml, 12 ml, 16 ml, and 20 ml inhibitor corrosion increase efficiency of the inhibitor. Optimum inhibition efficiency occurs at addition at concentration 20 ml is 96.6 on Electrochemical Impedance Spectroscopy EIS testing. Polyphenolic and flavanoid compounds contained in the areca flower inhibit corrosion by physical adsorption, to form a monolayer which can inhibit corrosion. Adsorption occurs spontaneously in accordance with Langmuir isothermal adsorption. The polarization showed that the areca flower extract acts through mixed ndash type inhibition. The value of the free energy 7.026 kJ mol of adsorption indicated that the adsorption of inhibitor molecules was typical of physical adsorption."
Depok: Fakultas Teknik Universitas Indonesia, 2017
T49736
UI - Tesis Membership  Universitas Indonesia Library
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Agus Budiono
"Pada proses pre-commisioning jaringan pipa bawah laut diperlukan pencegahan korosi dimana laju korosi material baja API 5L grade B di dalam larutan 3,5 % NaCl teraerasi pada kondisi steady masih relatif tinggi yang dapat mencapai lebih dari 20 mpy (0,5 mm/tahun). Upaya pencegahan korosi pada saat proses hydrotest dengan media air laut dilakukan dengan penambahan inhibitor anorganik yang mengandung zat corrosion inhibitor, oxygen scavenger dan biocide sehingga diperlukan bahan organik alternatif ramah lingkungan dengan kinerja yang lebih baik. Tujuan utama dari penelitian ini adalah untuk menginvestigasi efisiensi dari penggunaan campuran ekstrak sarang semut dan sirih merah sebagai alternatif inhibitor ramah lingkungan atau bahan campuran untuk mengurangi penggunaan inhibitor anorganik pada perlindungan korosi material baja API 5L Grade B dalam lingkungan 3,5% NaCl.
Kemampuan inhibisi korosi dari hasil ekstrak bahan alami diinvestigasi dengan menggunakan pengujian Tafel polarisasi dan Electrochemical Impedance Spectroscopy (EIS) serta diverifikasi dengan pengujian kehilangan berat. Kandungan senyawa aktif dalam ekstrak sarang semut dan sirih merah beserta senyawa teradsorpsi pada permukaan logam dan mekaniseme inhibisi elektrokimia diinvestigasi dengan pengujian EIS, FTIR dan model adsorpsi isoterm. Pada konsentrasi campuran green inhibitor 2ml sarang semut + 1ml sirih merah, effisiensi inhibitor dapat mencapai 73,66%. Pada penggunaan sebagai inhibitor campuran dengan inhibitor kimia pada konsentrasi campuran 1ml kimia + 2ml green inhibitor, dapat menurunkan laju korosi secara signifikan dari 0,42 mm/year menjadi 0,03 mm/year dengan efisiensi mencapai 93,15%. Inhibitor korosi tersebut berpengaruh terhadap kurva polarisasi anodik maupun katodik sehingga dapat berperan sebagai mixed inhibitor.
Pengujian FTIR menunjukan adanya gugus-gugus fungsi ikatan kimia yang berkombinasi sebagai pembentuk lapisan (film forming) seperti Gugus hidroksil, karbonil, aromatik, alkane dan amina. Adsorpsi senyawa-senyawa terkandung dalam inhibitor sarang semut dan sirih merah pada permukaan logam terjadi spontan mengikuti Langmuir adsorpsi isoterm. Hasil ini sesuai dengan hipotesis awal bahwa ekstrak sarang semut dan sirih merah yang mengandung senyawa antioksidan dapat mencegah proses oksidasi pada permukaan logam sehingga akan mengurangi laju korosi.

During pre-commissioning of subsea pipeline are require corrosion prevention since the corrosion rate of steel material of API 5L grade B in 3.5% NaCl aerated solution under steady state condition is still relatively high (can reach more than 0,5 mm/year). Method to prevent the corrosion during subsea pipeline hydrotest using seawater is generally by the addition of inorganic inhibitor containing corrosion inhibitor agent, oxygen scavenger and biocide, so that require to find out the alternative eco- friendly materials with better performance. The main objective of this study is to investigate the efficiency of the use of mixture of extract of myrmecodia pendans and piper crocatum as an alternative of eco-friendly inhibitor or a compound for reducing the use of inorganic inhibitors for corrosion protection of steel material API 5L Grade B in 3,5% NaCl Environmental.
The corrosion inhibition ability of natural ingredient extraction are investigated by using tafel polarization test and electrochemical impedance spectroscopy (EIS) and verified by weight loss test. The content of the active compounds in the extract of Myrmecodia Pendans and Piper Crocatum along with adsorption compound on metal surfaces and electrochemical inhibition mekaniseme are investigated by EIS, FTIR testing and model of the Langmuir adsorption isotherm. The addition of mixed green inhibitor concentration of 2ml myrmecodia pendans and 1ml piper crocatum is resulted in approximately 73.66% inhibitor efficiency while the addition of mixed green inhibitor into chemical inhibitor with concentration of 1ml for chemical and 2ml for green inhibitor are significantly reduce the corrosion rate from 0.42 mm/year to be 0.03 mm/year with approximately 93.15% inhibitor efficiency.
The green inhibitor affected the cathodic as well as the anodic polarization curves which were known as mixed corrosion inhibitor type. The type of chemical bonds on the steel surface layer was analyzed by FTIR method which indicated hydroxyl, carbonyl, aromatic, alkane and amine group. The adsorption of compounds contained in the myrmecodia pendans and piper crocatum inhibitor on a metal surface are occur spontaneously follows the Langmuir adsorption isotherm. These results are consistent with the initial hypothesis that the extract of myrmecodia pendans and piper crocatum contains antioxidant compound which can prevent the oxidation process in the metal surface thereby will reducing the corrosion rate.
"
Depok: Fakultas Teknik Universitas Indonesia, 2016
T45979
UI - Tesis Membership  Universitas Indonesia Library
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Farid Versal
"Kemampuan kombinasi ekstrak temulawak Curcuma Xanthorrhiza dan bawang Dayak Eleutherine Americana sebagai inhibitor ramah lingkungan untuk baja karbon API 5L X42 pada lingkungan HCl 1M diinvestigasi dengan pengujian tafel, weight loss, polarisasi, Electrochemical Impedance Spectroscopy EIS , dan Fourier Transform Infrared Spectroscopy FTIR . Senyawa flavonoid dan antioksidan yang berperan untuk menginhibisi korosi diinvestigasi melalui pengujian FTIR. Selain itu, lapisan yang terbentuk di permukaan logam juga dipelajari dengan menggunakan metode adsorpsi Langmuir isotherm. Campuran ekstrak temulawak dan bawang Dayak merupakan inhibitor jenis campuran, dan dominan pada katodik. Efisiensi inhibisi paling tinggi didapatkan dengan persentase 80 :20 yaitu 91,78 . Campuran ekstrak temulawak dan bawang Dayak dapat digunakan sebagai alternatif inhibitor ramah lingkungan untuk baja karbon API 5L X42 pada lingkungan asam.

This study aimed to investigate the ability of combination from Curcuma Xanthorrhiza and Eleutherine Americana extract as an environment friendly inhibitor for API 5L X42 steel in 1M HCl environment. Corrosion inhibition ability of this extract was tested using weight loss, tafel polarization, electrochemical impedance spectroscopy methods, and fourier transform infrared spectroscopy. FTIR test was used to investigate flavonoid and antioxidant compound that plays an important role to inhibit corrosion. In addition, formed layer on the metal surface was also studied using Langmuir isotherm adsorption methode. It can be concluded that combination from Curcuma Xanthorrhiza and Eleutherine Americana extract could be used as an alternative and environmental friendly inhibitor for API 5L X42 steel in acidid environment."
Depok: Fakultas Teknik Universitas Indonesia, 2017
S-Pdf
UI - Skripsi Membership  Universitas Indonesia Library
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BF Erich Wijaya
"Tesis ini mempelajari mengenai pengaruh injeksi ekstrak Andaliman dan Alpha-Tocopherol sebagai green corrosion inhibitor pada baja API 5L dalam larutan HCl 1M. Dengan pengujian weight loss diperlihatkan bahwa inhibitor campuran antara ekstrak Andaliman dan Alpha-Tocopherol mampu menurunkan laju korosi dengan efisiensi 92.07 pada konsentrasi inhibitor 2 ml Andaliman 0.5 ml Alpha-Tocopherol. Dari pengujian polarisasi ditunjukkan bahwa inhibitor campuran antara ekstrak Andaliman dan Alpha-Tocopherol menggeser kurva polarisasi kearah atodik dan katodik mixed type inhibitor , yang menunjukkan ciri utama sebagai inhibitor dari bahan organik. Pengujian dengan FTIR dan GCMS memperkuat dugaan bahwa inhibitor ekstrak Andaliman dan Alpha-Tocopherol sebagai inhibitor adsorpsi/film forming.

This thesis is intended to study the influences of Andaliman extract and Alpha- Tocopherol injection as green corrosion inhibitor for API 5L steel in HCl 1M solution. By weight loss analysis, it show that mixed inhibitor from andaliman extract and Alpha-Tocopherol can reduce corrosion rate with efficiency up to 92.07 % under inhibitor injection about 2 ml Andaliman + 0.5 ml Alpha- Tocopherol. By polarization, it is shown that inhibitor shift polarisation curves for both of anodic and cathodic polarisation (mixed type inhibitor), shows that inhibitor have characteristic as inhibitor from organic material. By FTIR and GCMS analysis can be concluded that inhibitor from Andaliman and A- Tocopherol act inhibition by adsorption/film forming corrosion inhibitor."
Depok: Fakultas Teknik Universitas Indonesia, 2017
T46921
UI - Tesis Membership  Universitas Indonesia Library
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Dinar Setiawidiani
"Mekanisme inhibisi korosi pada ekstrak biji saga Abrus precatorius pada baja API 5L Grade B dalam larutan 1M HCl telah dipelajari menggunakan metode polarisasi potensiodinamik dan Electrochemical Impedance EIS pada variasi konsentrasi 2 ml, 4 ml, 6 ml, 8 ml, dan 10 ml. Kandungan flavonoid diidentifikasi terdapat pada ekstrak biji saga melalui pengujian FTIR.
Hasil penelitian menunjukkan bahwa kenaikan laju korosi menurun seiring dengan penambahan ekstrak biji saga. Ekstrak biji saga dapat berperan sebagai inhibitor korosi dengan efisiensi maksimum 86 pada pengujian polarisasi potensiodinamik dan 66 pada pengujian EIS. Ekstrak biji saga tergolong ke dalam inhibitor campuran dengan dominan inhibitor katodik. Adsorpsi dari ekstrak biji saga pada permukaan logam sesuai isoterm adsorpsi Langmuir dengan mekanisme adsorpsi fisika.

Mechanism of corrosion inhibition on saga Abrus precatorius seed extract on API 5L Grade B in 1M HCl solution has been studied using potentiodynamic polarization and electrochemical impedance spectroscopy EIS with variation concentration of 2 ml, 4 ml, 6 ml, 8 ml, and 10 ml. Flavonoid content in saga seed was identified by FTIR.
The results showed corrosion rate increased with a decrease inhibitor concentration of saga seed extract. Saga seed extract acts as a corrosion inhibitor with maximum efficiency 86 using potentiodynamic polarization and 66 using EIS. Saga seed extract acts as mixed type inhibitor with cathodic inhibitor dominant. Adsorption of saga seed extract on metal surface obeyed Langmuir adsorption isotherm by physical adsorption mechanism.
"
Depok: Fakultas Teknik Universitas Indonesia, 2017
T47795
UI - Tesis Membership  Universitas Indonesia Library
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Nur Amaniah Al Hayat
"Peningkatan kebutuhan bahan penghambat korosi yang aman dan ramah lingkungan menjadi perhatian utama, terutama dalam industri berbasis baja karbon rendah. Salah satu penyebab utama kerusakan pada material ini adalah korosi yang dipercepat oleh penggunaan larutan asam seperti H2SO4. Salah satu cara untuk mengurangi laju korosi dari material adalah dengan menambahkan inhibitor organik dari ekstrak tumbuhan yang mengandung senyawa bioaktif. Pada penelitian ini, dilakukan penambahan variasi konsentrasi inhibitor dari ekstrak akar pepaya (Carica papaya L.) dengan melarutkan ke dalam larutan 1M asam sulfat (H2SO4), dimana asam sulfat merupakan senyawa yang digunakan untuk acid pickling pada baja. Dilakukan uji Optical Emission Spectroscopy (OES) untuk mengetahui komposisi kimia dari material uji sesuai dengan spesifikasi material API 5L dan uji Fourier Transform Infra Red (FTIR) untuk mengetahui senyawa yang terkandung dalam ekstrak akar pepaya yang akan digunakan sebagai inhibitor pada baja karbon rendah API 5L grade B. Dilakukan juga pengujian Linear polarisasi untuk mengetahui efisiensi laju korosi pada penambahan variasi ekstrak inhibitor akar pepaya. Kemudian, dilakukan pengujian Electrochemical impedance spectroscopy (EIS) untuk menginterpretasikan sistem variasi konsentrasi inhibitor akar pepaya pada rangkaian listrik. Hasil pengujian menunjukkan bahwa material uji sesuai dengan spesifikasi API 5L grade B, ekstrak akar pepaya mengandung senyawa bio aktif flavonoid, saponin, alkaloid, dan tanin yang terbukti menurunkan laju korosi dengan variasi konsentrasi dari 4 ml sampai 20 ml terbukti menurunkan laju korosi dari 1,172 mm/year menjadi 0,074 mm/year dengan efisiensi maksimum 93,68% pada konsentrasi 20 ml.

The increasing need for safe and environmentally friendly corrosion inhibiting materials is a major concern, especially in low carbon steel-based industries. One of the main causes of damage to these materials is accelerated corrosion by the use of acidic solutions such as H2SO4. One way to reduce the corrosion rate of the material is to add organic inhibitors from plant extracts containing bioactive compounds. In this study, the addition of various concentrations of inhibitors from Akar Pepaya extract (Carica papaya L.) was carried out by dissolving it in 1M sulfuric acid (H2SO4) solution, where sulfuric acid is a compound used for acid pickling on steel. Optical Emission Spectroscopy (OES) test was conducted to determine the chemical composition of the test material in accordance with API 5L material specifications and Fourier Transform Infra Red (FTIR) test to determine the compounds contained in Akar Pepaya extract which will be used as an inhibitor on API 5L grade B low carbon steel. Linear polarization testing was also carried out to determine the efficiency of the corrosion rate in the addition of akar pepaya inhibitor extract variations. Then, Electrochemical impedance spectroscopy (EIS) testing was carried out to interpret the system of variations in Akar Pepaya inhibitor concentration in electrical circuits. The test results show that the test material is in accordance with API 5L grade B specifications, Akar Pepaya extract contains bioactive compounds flavonoids, saponins, alkaloids, and tannins which are proven to reduce the corrosion rate with a concentration variation from 4 ml to 20 ml which is proven to reduce the corrosion rate from 1,172 mm/year to 0,074 mm/year with a maximum efficiency of 93,68% at a concentration of 20 ml."
Depok: Fakultas Teknik Universitas Indonesia, 2024
S-pdf
UI - Skripsi Membership  Universitas Indonesia Library
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Muhammad Nafies Shihab
"Efek penghambatan dari ekstrak Curcuma xanthorhizza pada korosi baja API 5L Grade X42 dalam larutan HCl 1M diselidiki dengan menggunakan metode kehilangan berat, polarisasi tafel, dan metode electrochemical impedance spectroscopy EIS . Uji FTIR digunakan untuk menyelidiki senyawa antioksidan yang berperan penting dalam menghambat korosi. Dalam penelitian ini konsentrasi ekstrak temulawak yang digunakan adalah 0 ppm, 100 ppm, 250 ppm, 500 ppm, dan 1000 ppm.
Hasilnya menunjukkan bahwa temulawak dapat menghambat korosi pada baja dan bertindak sebagai penghambat tipe campuran. Laju korosi menurun seiring dengan meningkatnya konsentrasi inhibitor. Sedangkan efisiensi inhibisi meningkat dengan meningkatnya konsentrasi inhibitor. Adsorpsi ekstrak pada permukaan baja mengikuti Langmuir isotherm. Nilai energi bebas ?Gads menunjukkan bahwa adsorpsi molekul inhibitor secara fisika. Dapat disimpulkan bahwa ekstrak Curcuma xanthorhizza dapat digunakan sebagai penghambat alternatif dan ramah lingkungan untuk baja API 5L Grade X42 di lingkungan asam.

The inhibitory effect of the extract of Curcuma xanthorhizza on the corrosion of API 5L Grade X42 steelin HCl 1M solution was investigated by using weight loss, tafel polarization, and electrochemical impedance spectroscopy methods.FTIR test was used to investigate the antioxidant compound that plays an important role to inhibit corrosion.In this study the concentration of Curcuma xanthorhizza extract used was 0 ppm, 100 ppm, 250 ppm, 500 ppm, and 1000 ppm.
The results show that Curcuma xanthorhizza inhibit the steel corrosion and act as mixed type inhibitors. The corrosion rate decreases with the increasing of inhibitors concentrations. At the same time, inhibition efficiency increases with the increase of inhibitors concentrations.The adsorption of extract on the steel surface was found to obey Langmuir rsquo s adsorption isotherm. The free energy value Gads indicated that the adsorption of inhibitor molecules was typical of physisorption.It can be concluded that Curcuma xanthorhizza extract could be used as an alternative and environmental friendly inhibitor for API 5LGrade X42 steel in acidic environment.
"
Depok: Fakultas Teknik Universitas Indonesia, 2017
S66875
UI - Skripsi Membership  Universitas Indonesia Library
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Sitorus, Ardiles Jeremia
"Indonesia memiliki potensi cengkeh yang melimpah,daunnya dapat gugur setiap minggunya 0.96 kg/pohon. Inhibitor yang digunakan adalah ekstrak daun cengkeh dengan konsentrasi 1ml,2ml,3ml,4ml,5ml dan minyak cengkeh dengan konsentrasi 2ml,4ml,6ml,8ml,10ml. Pengujian dilakukan dengan metode linear polarisasi, Fourier Transform Infrared Spectroscopy ( FTIR ), Gas Chromatography Mass Spectroscopy ( GCMS ), dan Eletrochemical Impedance Spectroscopy ( EIS ). Konsentrasi optimum pada ekstrak daun cengkeh berada pada konsentrasi 4 ml dengan laju korosi 0.042 mm/year dan efisiensi 46.6 % sedangkan minyak cengkeh konsentrasi optimumnya berada pada konsentrasi 8 ml dengan laju korosi 0.001 mm/year dengan efisiensi 98.6 %. FTIR menunjukkan gugus - gugus fungsi yang berada di dalam inhibitor dan diperkuat dengan hasil GCMS untuk mengetahui senyawa aktif yang berada dalam inhibitor. Pengujian FTIR juga menunjukkan bahwa gugus - gugus fungsi pada inhibitor menempel pada permukaan sampel ketika sampel di rendam. Mekanisme adsorpsi dari kedua inhibitor adalah physical adsorption dengan nilai ΔGads pada inhibitor ekstrak daun cengkeh sebesar -7.575 kJ/mol, dan - 12.142 kJ/mol untuk inhibitor minyak cengkeh. EIS menunjukkan adanya peningkatan nilai tahanan charge transfer pada setiap kenaikan konsentrasi inhibitor dan nilai dari Cdl menurun yang menunjukkan bahwa terjadi pembentukan lapisan protektif. Nilai charge transfer dari inhibitor minyak cengkeh lebih besar yang berarti minyak cengkeh memiliki kemampuan inhibisi lebih baik dan ini diperkuat dari hasil polarisasi. Kedua jenis inhibitor ini termasuk dalam jenis inhibitor campuran (mix type inhibitor).

Indonesia has abundant potential clove, leaves can fall every week 0.96 kg/tree. Inhibitor which used on this research are clove leave extract with concentration 1ml,2ml,3ml,4ml,5ml and clove oil with concentration 2ml,4ml,6ml,8ml,10ml. Inhibitor are examined by linear polarization, Fourier Transform Infrared Spectroscopy ( FTIR ), Gas Chromatography Mass Spectroscopy ( GCMS ), and Electrochemical Impedance Spectroscopy ( EIS ). The result show that optimum concentration of clove leave extract is at 4 ml with corrosion rate 0.042 mm/year and efficiency 46.6% where as optimum concentration of clove oil is at 8 ml with corrosion rate 0.001 mm/year and efficiency 98.6 %. FTIR obtain functional group which contained in inhibitor and GCMS result also show active compound in inhibitor. FTIR show that functional group in inhibitor adsorp on the metal surface when sample is soaked in inhibitor. Adsorption mechanism of these inhibitor is physical adsorption with ΔGads of clove leave extract inhibitor is -7.575 kJ/mol, and - 12.142 kJ/mol for clove oil inhibitor. EIS show increasing charge transfer resistance with increasing inhibitor concentration and decreasing Cdl also show there are protective film forming. The charge transfer resistance of clove oil inhibitor higher, means clove oil has better inhibition than clove leaves extract. Both of these inhibitor are included in mix type inhibitor."
Depok: Fakultas Teknik Universitas Indonesia, 2013
T35717
UI - Tesis Membership  Universitas Indonesia Library
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Ayende
"[ABSTRAK
Penelitian pemanfaatan ekstrak tumbuh-tumbuhan sebagai inhibitor korosi
belakangan ini semakin meningkat seiring dengan meningkatnya permintaan
penggunaan bahan-bahan kimia yang ramah lingkungan. Pemanfaatan ekstrak
tumbuh-tumbuhan sebagai inhibitor korosi menjadi penting mengingat
karakteristiknya ramah lingkungan (green inhibitor), mudah ketersediaannnya,
sumberdaya yang melimpah dan dapat diperbaharui, prosedur produksi yang
sederhana, dan biaya produksi yang cukup kompetitif. Dalam penelitian ini
dilakukan pengujian eksperimental efek sinergis jenis inhhibitor baru yaitu
ekstrak ubi ungu (Ipomoea batatas L.) yang memiliki kandungan utama
antosianin dengan inhibitor komersial berbasis amine (aniline) dan dengan
inhibitor asam askorbat.
Penelitian bertujuan untuk menganalisis laju kororsi dan efisiensi inhibisi
korosi logam baja (API 5L) di dalam lingkungan air terproduksi menggunakan
inhibitor campuran ekstrak ubi ungu dan inhibitor komersial berbasis amine
(aniline). Selain itu dilakukan pula analisis laju korosi, efisiensi inhibisi,
mekanisme proteksi dan model lapisan inhibisi korosi logam baja (API 5L) di
dalam lingkungan 3,5% NaCl menggunakan inhibitor campuran ekstrak ubi ungu
dan asam askorbat.
Metode pengukuran laju korosi dan efisiensi inhibisi dilakukan
menggunakan elektrokimia kurva polarisasi. Mekanisme korosi diteliti dengan
menggunakan metode Electrochemical Impedance Spectroscopy (EIS). Untuk
menganalisis model lapisan inhibisi dilakukan dengan menggunakan metode
Fourier Transform Infra Red (FTIR) spectroscopy.
Hasil penelitian menunjukan bahwa pencampuran ekstrak ubi ungu
memiliki kemampuan sinergis dengan inhibitor komersial berbasis amine (aniline)
pada fraksi volume ekstrak ubi ungu sebesar 25% dengan menghasilkan efisiensi
inhibisi sebesar 82,14%. Sebagai pembanding, pada sistem yang sama
penggunaan esktrak ubi ungu saja menghasilkan efisiensi inhibisi 68,30%,
sedangkan penggunaan inhibitor komersial berbasis amine (aniline) saja
menghasilkan efisiensi inhibisi 74,88%.
Penambahan volume ekstrak ubi ungu dari 1 mL hingga 4 mL kedalam
inhibitor asam askorbat 10-4 M meningkatkan efisiensi inhibisi korosi logam baja
(API 5L) dalam larutan 3,5% NaCl dari efisiensi inhibisi sebesar 23,37% menjadi
57,52%. Campuran inhibitor korosi tersebut berpengaruh terhadap kurva
polarisasi anodik maupun katodik sehingga dapat berperan sebagai mixed
inhibitor. Pengujian EIS menunjukan proses korosi dikontrol oleh mekanisme
pasivasi yang ditunjukan oleh adanya peningkatan tahanan permukaan korosi.
Pada lapisan permukaan terjadi proses adsorpsi dan pembentukan kelat
organo (flavonoid) logam dimana ekstrak ubi ungu dengan kandungan utama
antosianin berperan sebagai pembentuk metal-chelated. Pembentukan kelat
ekstrak ubi ungu-Fe-asam askorbat terjadi pada gugus hidroksil dan karbonil.
Lokasi terjadinya ligan kelat ekstrak ubi ungu dengan kandungan utma antosianin
terjadi pada ikatan 3?, 4? Dihydroxy cincin B atau 3-Hydroxy 4-Carbonyl cincin C;

ABSTRACT
Research of utilization of plant extracts as a corrosion inhibitor recently
increased along with the increasing demand for the use of chemicals that are
environmentally friendly. Utilization of plant extracts as a corrosion inhibitor
becomes important given the characteristics of environmentally friendly (green
inhibitor), easy availability, resources are abundant and renewable, the production
procedure is simple, and the production costs are quite competitive. In this
research, experimental testing of the synergistic effects of new types inhibitor ie
extract purple potato (Ipomoea batatas L.) which has the main content of
anthocyanin with commercial inhibitor-based amine (aniline) and with ascorbic
acid inhibitors.
The study aims to analyze the rate of corrosion and metal corrosion
inhibition efficiency of steel (API 5L) in the produced water environment using a
mixed inhibitor purple sweet potato extract and commercial-based inhibitors of
amine (aniline). In addition, the corrosion rate analysis was also performed,
inhibition efficiency, protection mechanisms and models of metal corrosion
inhibition layer steel (API 5L) in the neighborhood of 3.5% NaCl using a mixed
inhibitor purple sweet potato extract and ascorbic acid.
Method of measuring the rate of corrosion and inhibition efficiency was
performed using electrochemical polarization curves. Corrosion mechanisms
investigated by Electrochemical Impedance Spectroscopy (EIS). To analyze the
model layer of inhibition were calculated using Fourier Transform Infra Red
(FTIR) spectroscopy.
The results showed that mixing purple sweetpotato extract has the ability
to synergistically with commercial inhibitor-based amine (aniline) in purple
sweetpotato extract volume fraction of 25% with a yield of 82.14% inhibition
efficiency. For comparison, the same system using purple sweet potato extract
only produce inhibition efficiency of 68.30%, while the use of commercial-based
inhibitors of amine (aniline) alone resulted in inhibition efficiency of 74.88%.
The addition of purple sweet potato extract volume of 1 mL to 4 mL into
ascorbic acid inhibitors 10-4 M improving steel metal corrosion inhibition
efficiency (API 5L) in a solution of 3.5% NaCl of inhibition efficiency of 23.37%
to 57.52%. The corrosion inhibitor mixture affect the anodic and cathodic
polarization curves so that it can act as a mixed inhibitor. Testing EIS shows the
corrosion process is controlled by the passivation mechanism indicated by an
increase in the surface resistance of corrosion.
On the surface layer of a process of adsorption and formation of organo
chelates (flavonoids) in which the metal purple sweet potato extract with the main
content of anthocyanins act as forming metal-chelated. Location of the chelating
ligand purple sweet potato extract with the main content of anthocyanins occur in
bond 3 ', 4' dihydroxy ring B or 3-Hydroxy 4-Carbonyl ring C.;Research of utilization of plant extracts as a corrosion inhibitor recently
increased along with the increasing demand for the use of chemicals that are
environmentally friendly. Utilization of plant extracts as a corrosion inhibitor
becomes important given the characteristics of environmentally friendly (green
inhibitor), easy availability, resources are abundant and renewable, the production
procedure is simple, and the production costs are quite competitive. In this
research, experimental testing of the synergistic effects of new types inhibitor ie
extract purple potato (Ipomoea batatas L.) which has the main content of
anthocyanin with commercial inhibitor-based amine (aniline) and with ascorbic
acid inhibitors.
The study aims to analyze the rate of corrosion and metal corrosion
inhibition efficiency of steel (API 5L) in the produced water environment using a
mixed inhibitor purple sweet potato extract and commercial-based inhibitors of
amine (aniline). In addition, the corrosion rate analysis was also performed,
inhibition efficiency, protection mechanisms and models of metal corrosion
inhibition layer steel (API 5L) in the neighborhood of 3.5% NaCl using a mixed
inhibitor purple sweet potato extract and ascorbic acid.
Method of measuring the rate of corrosion and inhibition efficiency was
performed using electrochemical polarization curves. Corrosion mechanisms
investigated by Electrochemical Impedance Spectroscopy (EIS). To analyze the
model layer of inhibition were calculated using Fourier Transform Infra Red
(FTIR) spectroscopy.
The results showed that mixing purple sweetpotato extract has the ability
to synergistically with commercial inhibitor-based amine (aniline) in purple
sweetpotato extract volume fraction of 25% with a yield of 82.14% inhibition
efficiency. For comparison, the same system using purple sweet potato extract
only produce inhibition efficiency of 68.30%, while the use of commercial-based
inhibitors of amine (aniline) alone resulted in inhibition efficiency of 74.88%.
The addition of purple sweet potato extract volume of 1 mL to 4 mL into
ascorbic acid inhibitors 10-4 M improving steel metal corrosion inhibition
efficiency (API 5L) in a solution of 3.5% NaCl of inhibition efficiency of 23.37%
to 57.52%. The corrosion inhibitor mixture affect the anodic and cathodic
polarization curves so that it can act as a mixed inhibitor. Testing EIS shows the
corrosion process is controlled by the passivation mechanism indicated by an
increase in the surface resistance of corrosion.
On the surface layer of a process of adsorption and formation of organo
chelates (flavonoids) in which the metal purple sweet potato extract with the main
content of anthocyanins act as forming metal-chelated. Location of the chelating
ligand purple sweet potato extract with the main content of anthocyanins occur in
bond 3 ', 4' dihydroxy ring B or 3-Hydroxy 4-Carbonyl ring C., Research of utilization of plant extracts as a corrosion inhibitor recently
increased along with the increasing demand for the use of chemicals that are
environmentally friendly. Utilization of plant extracts as a corrosion inhibitor
becomes important given the characteristics of environmentally friendly (green
inhibitor), easy availability, resources are abundant and renewable, the production
procedure is simple, and the production costs are quite competitive. In this
research, experimental testing of the synergistic effects of new types inhibitor ie
extract purple potato (Ipomoea batatas L.) which has the main content of
anthocyanin with commercial inhibitor-based amine (aniline) and with ascorbic
acid inhibitors.
The study aims to analyze the rate of corrosion and metal corrosion
inhibition efficiency of steel (API 5L) in the produced water environment using a
mixed inhibitor purple sweet potato extract and commercial-based inhibitors of
amine (aniline). In addition, the corrosion rate analysis was also performed,
inhibition efficiency, protection mechanisms and models of metal corrosion
inhibition layer steel (API 5L) in the neighborhood of 3.5% NaCl using a mixed
inhibitor purple sweet potato extract and ascorbic acid.
Method of measuring the rate of corrosion and inhibition efficiency was
performed using electrochemical polarization curves. Corrosion mechanisms
investigated by Electrochemical Impedance Spectroscopy (EIS). To analyze the
model layer of inhibition were calculated using Fourier Transform Infra Red
(FTIR) spectroscopy.
The results showed that mixing purple sweetpotato extract has the ability
to synergistically with commercial inhibitor-based amine (aniline) in purple
sweetpotato extract volume fraction of 25% with a yield of 82.14% inhibition
efficiency. For comparison, the same system using purple sweet potato extract
only produce inhibition efficiency of 68.30%, while the use of commercial-based
inhibitors of amine (aniline) alone resulted in inhibition efficiency of 74.88%.
The addition of purple sweet potato extract volume of 1 mL to 4 mL into
ascorbic acid inhibitors 10-4 M improving steel metal corrosion inhibition
efficiency (API 5L) in a solution of 3.5% NaCl of inhibition efficiency of 23.37%
to 57.52%. The corrosion inhibitor mixture affect the anodic and cathodic
polarization curves so that it can act as a mixed inhibitor. Testing EIS shows the
corrosion process is controlled by the passivation mechanism indicated by an
increase in the surface resistance of corrosion.
On the surface layer of a process of adsorption and formation of organo
chelates (flavonoids) in which the metal purple sweet potato extract with the main
content of anthocyanins act as forming metal-chelated. Location of the chelating
ligand purple sweet potato extract with the main content of anthocyanins occur in
bond 3 ', 4' dihydroxy ring B or 3-Hydroxy 4-Carbonyl ring C.]"
Depok: Fakultas Teknik Universitas Indonesia, 2014
D1871
UI - Disertasi Membership  Universitas Indonesia Library
cover
Farid Versal
"Kemampuan kombinasi ekstrak temulawak Curcuma Xanthorrhiza dan bawang Dayak Eleutherine Americana sebagai inhibitor ramah lingkungan untuk baja karbon API 5L X42 pada lingkungan HCl 1M diinvestigasi dengan pengujian tafel, weight loss, polarisasi, Electrochemical Impedance Spectroscopy EIS, dan Fourier Transform Infrared Spectroscopy FTIR. Senyawa flavonoid dan antioksidan yang berperan untuk menginhibisi korosi diinvestigasi melalui pengujian FTIR. Selain itu, lapisan yang terbentuk di permukaan logam juga dipelajari dengan menggunakan metode adsorpsi Langmuir isotherm. Campuran ekstrak temulawak dan bawang Dayak merupakan inhibitor jenis campuran, dan dominan pada katodik. Efisiensi inhibisi paling tinggi didapatkan dengan persentase 80 :20 yaitu 91,78. Campuran ekstrak temulawak dan bawang Dayak dapat digunakan sebagai alternatif inhibitor ramah lingkungan untuk baja karbon API 5L X42 pada lingkungan asam.

This study aimed to investigate the ability of combination from Curcuma Xanthorrhiza and Eleutherine Americana extract as an environment friendly inhibitor for API 5L X42 steel in 1M HCl environment. Corrosion inhibition ability of this extract was tested using weight loss, tafel polarization, electrochemical impedance spectroscopy methods, and fourier transform infrared spectroscopy. FTIR test was used to investigate flavonoid and antioxidant compound that plays an important role to inhibit corrosion. In addition, formed layer on the metal surface was also studied using Langmuir isotherm adsorption methode. It can be concluded that combination from Curcuma Xanthorrhiza and Eleutherine Americana extract could be used as an alternative and environmental friendly inhibitor for API 5L X42 steel in acidid environment. Keywords API 5L X42 EIS FTIR green inhibitor polarization."
Depok: Fakultas Teknik Universitas Indonesia, 2017
S67628
UI - Skripsi Membership  Universitas Indonesia Library
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