Wijaya, Ade Irma Rosida (2026) Rancang Bangun Sistem Monitoring Flowrate Pada Unit Hydrocyclone Dalam Proses Pemurnian Garam Menggunakan Metode Hidroekstraksi. Other thesis, Institut Teknologi Sepuluh Nopember.
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Abstract
Garam krosok merupakan jenis garam rakyat yang masih mengandung berbagai jenis pengotor sehingga memerlukan proses pemurnian untuk meningkatkan kadar NaCl-nya. Penelitian ini bertujuan untuk merancang dan membangun sistem monitoring pada proses pemurnian garam menggunakan metode hidroekstraksi. Metode hidroekstraksi dilakukan dengan cara melarutkan garam krosok dalam air untuk memisahkan pengotor melalui tahapan pencampuran dan pemisahan. Sistem yang digunakan dalam penelitian ini terdiri dari beberapa unit utama, yaitu brine tank, mixing tank, slurry tank, hydrocyclone, product tank, dan waste tank, serta dilengkapi dengan sensor level dan sensor flow yang terhubung dengan mikrokontroler dan display LCD sebagai media monitoring. Sistem monitoring dirancang untuk memantau parameter penting dalam proses pemurnian, khususnya laju aliran fluida (flowrate) pada sistem. Pengujian validasi yang dilakukan dengan range 0,76 L⁄min – 3,04 L⁄min, dengan nilai span 2,28 L⁄min, akurasi dari sensor tersebut yaitu 95,322%, dan sensitivitas dari sensor tersebut yaitu 1,05702. Pengujian validasi sensor flow dilakukan pada rentang pengukuran 0,76–3,04 L/min dengan nilai span sebesar 2,28 L/min. Hasil validasi menunjukkan bahwa sensor memiliki tingkat akurasi sebesar 95,322% dan sensitivitas sebesar 1,05702. Selanjutnya, pengujian sistem dilakukan dengan variasi bukaan valve sebesar 25%, 50%, 75%, dan 100% dengan interval pembacaan sensor setiap 3 detik. Hasil pengujian menunjukkan bahwa nilai flowrate meningkat seiring bertambahnya bukaan valve, yaitu berkisar antara 5,8–7,7 L/min pada bukaan valve 25%, 12,1–14,8 L/min pada bukaan valve 50%, 19,8–22,6 L/min pada bukaan valve 75%, dan 26,8–29,6 L/min pada bukaan valve 100%. Volume aktual larutan yang tertampung pada product tank berkisar antara 5,16 L pada bukaan valve 25% hingga sekitar 4,90 L pada bukaan valve 100%, sedangkan sisanya dialirkan menuju waste tank. Hasil pengujian laboratorium menunjukkan bahwa kadar NaCl setelah proses pemurnian meningkat seiring bertambahnya bukaan valve, dengan rata-rata kadar NaCl sebesar 72,00% pada bukaan valve 25%, 78,95% pada bukaan valve 50%, 83,63% pada bukaan valve 75%, dan 95,10% pada bukaan valve 100%. Hasil tersebut menunjukkan bahwa bukaan valve 100% memberikan performa pemisahan terbaik pada sistem hydrocyclone sehingga menghasilkan tingkat kemurnian NaCl tertinggi.
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Crude salt is a type of locally produced salt that still contains various impurities, therefore requiring a purification process to increase its NaCl content. This study aims to design and develop a monitoring system for the salt purification process using the hydroextraction method. The hydroextraction method is carried out by dissolving crude salt in water to separate impurities through mixing and separation stages. The system used in this study consists of several main units, namely a brine tank, mixing tank, slurry tank, hydrocyclone, product tank, and waste tank, and is equipped with level sensors and flow sensors connected to a microcontroller and an LCD display as a monitoring interface. The monitoring system is designed to observe important parameters in the purification process, particularly the fluid flow rate within the system. Flow sensor validation was conducted within a measurement range of 0.76–3.04 L/min, with a span value of 2.28 L/min. The validation results showed that the sensor achieved an accuracy of 95.322% and a sensitivity of 1.05702. Furthermore, the system was tested using valve opening variations of 25%, 50%, 75%, and 100%, with sensor readings recorded at 3-second intervals. The test results indicated that the flow rate increased proportionally with the valve opening, ranging from 5.8–7.7 L/min at a 25% valve opening, 12.1–14.8 L/min at 50%, 19.8–22.6 L/min at 75%, and 26.8–29.6 L/min at 100%. The actual volume collected in the product tank ranged from 5.16 L at a 25% valve opening to approximately 4.90 L at a 100% valve opening, while the remaining volume was discharged into the waste tank. Laboratory analysis revealed that the NaCl content increased with increasing valve opening after the purification process, with average NaCl concentrations of 72.00% at a 25% valve opening, 78.95% at 50%, 83.63% at 75%, and 95.10% at 100%. These results indicate that a 100% valve opening provided the best separation performance of the hydrocyclone system, resulting in the highest NaCl purity.
| Item Type: | Thesis (Other) |
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| Uncontrolled Keywords: | Pemurnian Garam, Hidroekstraksi, Garam Krosok, Kadar NaCl, Salt Purification, Hydroextraction, Krosok Salt, NaCl Content |
| Subjects: | Q Science > QC Physics > QC100.5 Measuring instruments (General) |
| Divisions: | Faculty of Vocational > Instrumentation Engineering |
| Depositing User: | Ade Irma Rosida Wijaya |
| Date Deposited: | 29 Jul 2026 06:51 |
| Last Modified: | 29 Jul 2026 06:51 |
| URI: | http://repository.its.ac.id/id/eprint/139554 |
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