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Journal : Journal of Engineering and Technological Sciences

Recovery of Lithium from Geothermal Fluid at Lumpur Sidoarjo by Adsorption Method Noerochim, Lukman; Satriawangsa, Gita Akbar; Widodo, Amien
Journal of Engineering and Technological Sciences Vol 48, No 2 (2016)
Publisher : ITB Journal Publisher, LPPM ITB

Show Abstract | Download Original | Original Source | Check in Google Scholar | Full PDF (385.054 KB) | DOI: 10.5614/j.eng.technol.sci.2016.48.2.6

Abstract

The recovery of lithium from geothermal fluid at Lumpur Sidoarjo, Indonesia was investigated employing an adsorption method with polymer membrane as container. The lithium concentration in geothermal fluid from Lumpur Sidoarjo used in the present study was about 5 mg/l. Lithium manganese oxide (LMO) was selected as a promising adsorbent material due to its non-toxic, topotactical behavior and low cost. In this study, LMO with single Li/Mn mole ratio was prepared, i.e. Li1.6Mn1.6O4. The adsorbent was synthesized by solid state reaction at 500 °C for 5 hrs. A lithium uptake yield from the geothermal fluid of around 6.6 mg/g was obtained.
Recovery of Lithium from Geothermal Fluid at Lumpur Sidoarjo by Adsorption Method Lukman Noerochim; Gita Akbar Satriawangsa; Amien Widodo
Journal of Engineering and Technological Sciences Vol. 48 No. 2 (2016)
Publisher : Institute for Research and Community Services, Institut Teknologi Bandung

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.5614/j.eng.technol.sci.2016.48.2.6

Abstract

The recovery of lithium from geothermal fluid at Lumpur Sidoarjo, Indonesia was investigated employing an adsorption method with polymer membrane as container. The lithium concentration in geothermal fluid from Lumpur Sidoarjo used in the present study was about 5 mg/l. Lithium manganese oxide (LMO) was selected as a promising adsorbent material due to its non-toxic, topotactical behavior and low cost. In this study, LMO with single Li/Mn mole ratio was prepared, i.e. Li1.6Mn1.6O4. The adsorbent was synthesized by solid state reaction at 500 °C for 5 hrs. A lithium uptake yield from the geothermal fluid of around 6.6 mg/g was obtained.
Co-Authors ,Angga Ade Purnawan Achly, Fariza Hafizh Ade Okta Yurwendra Agung Budi Kurniawan Agung Purniawan Ahmad Efendi Adi Pratama Ahmad Efendi Adi Pratama Alfanda, Benedicta Dian Alvian Toto Wibisono Amien Widodo Amy Reza Andrea Angga Ade Purnawan Ardhyananta, Hosta Asia Asia Azarine Atha Pandhani Azarine Atha Pandhani Bayu Kresna Purwaka Utama Bayu Kresna Purwaka Utama Berlian Aulia Rachman Daih Susanti Diah Susanti Diah Susanti Elok Amaylia Swasthika Candra Fajarin, Rindang Fakhreza Abdul Fikan Mubarok Rohimsyah Gede Panca Ady Sapputra Gita Akbar Satriawangsa Gita Akbar Satriawangsa Gita Akbar Satriawangsa Haniffudin Nurdiansah Haniffudin Nurdiansah Hariyati Purwaningsih Hendro Waluyo Ilham Azmy Jatimurti, Wikan Jeremy Adrian Kuriawan, Budi Agung Kusuma, George Endri Kusumadewi, Tri Vicca Luthfiansyah, Candra Rizki Mas Irfan Purbawanto Hidayat Mega Lazuardi Umar Mohamad Miftah Fadlika Makmur Muhamad Akbar Wicaksono Muhammad Ainun Taimiyah Indra Muhammad Dalu Prayoga Muhammad Dalu Prayoga Muhammad Imam Bukhori Muhammad Taufik Mukhammad Khoirul Umam Nizhamul Latif Novielly Lolong Pratiwi, Vania Mitha Ramadhani, Ahmad Ilham Rochman Rochiem Rohadi, Anggoro Rohmannudin, Tubagus Noor Ryan Tri Kurniawan Sari, Eli Novita Sheila Pramusiwi Rozitawati Sryang Tera Sarena Sryang Tera Sarena Sulistijono Sulistijono Sungging Pintowantoro Sutarsis Sutarsis Sutrisno, Wahyuniarsih Tanjung, Rifqi Aulia Tubagus Noor Rohmannudin, Tubagus Noor Tubagus Noor Rohmanudin Tubagus Noor Rohmanudin Wibisono, Alvian Toto Wicaksono, Sigit Tri Widyastuti Widyastuti Yeny Widya Rakhmawati Yeny Widya Rakhmawati Yuli Setiyorini Yusuf Kurniawan Zaid Sulaiman Zeddy Argasani