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2018 IEEE International Conference on Innovative Research and Development (ICIRD) 2018
DOI: 10.1109/icird.2018.8376336
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Lithium recovery from Bledug Kuwu Mud volcano using water leaching method

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Cited by 5 publications
(6 citation statements)
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“…Bledug Kuwu's brine, which is mainly chloride type, was used in this experiment. First, the brine has been leached according to previous work, under optimum extraction conditions, using water at 1:2 solidliquid ratio, 30 ℃ for 3 hours [6]. The chemical composition of brine was carried out by Inductively Couple Plasma-Optical Emission Spectrometry (ICP-OES), depicted in Table 1.…”
Section: Methodsmentioning
confidence: 99%
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“…Bledug Kuwu's brine, which is mainly chloride type, was used in this experiment. First, the brine has been leached according to previous work, under optimum extraction conditions, using water at 1:2 solidliquid ratio, 30 ℃ for 3 hours [6]. The chemical composition of brine was carried out by Inductively Couple Plasma-Optical Emission Spectrometry (ICP-OES), depicted in Table 1.…”
Section: Methodsmentioning
confidence: 99%
“…Critical interest in investigating lithium's new resources from Indonesia has been rising in the past several decades, mostly due to the expanding technology. In beforehand research, Rohmah et al [6] showed that lithium has been successfully separated from Bledug Kuwu Mud Volcano using the water leaching method with S/L, temperature, and time parameter to produce brine. A component such as K, Mg, Ca, and B may reach a high level in brine from Bledug Kuwu's geothermal activity.…”
Section: Introductionmentioning
confidence: 99%
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“…Lumpur Sidoharjo merupakan menurut Klasifikasi sumber Lithium oleh J. Speir adalah Brine dan Clay karena baik air maupun padatan lumpur Sidoharja mengandung Lithium. konsentrasi Lithiumnya sampai 41 ppm dan terjadi proses desorpsi oleh air pada temperatur 25-45[14],[15]. Sumarno dan Sulistiyono menyampaikan bahwa cairan brine bleduk kuwu mengandung Lithium 138,64 ppm sedangkan padatan lumpurnya konsentrasi Lithiumnya sampai 400 ppm[16],[17].…”
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“…gas CO2 secara alamiah yang terjadi di alam bisa disebabkan oleh proses biogenic akibat reaksi anaerob (Syaichurrozi, 2017) dan geologi seperti reaksi metamorfosis karbonat dan magmatic degassing pada proses panasbumi (Queißer et al, 2017). Dari hasil penelitian geokimia air asin di GLBK diperoleh kandungan unsur-unsur diantaranya SiO2, Na, K, Mg, Li, dan B yang diduga dipengaruhi oleh aktivitas panas bumi (Rizqiya, 2014;Rohmah, Lalasari, Wahyuadi, & Natasha, 2018). Reservoir panas bumi ini diduga sebagai penyuplai letupan-letupan lumpur hangat yang juga membawa larutan kaya mineral termasuk belerang dan garam dengan konsentrasi tinggi konsentrasinya belerang 62.883 x 102 mg/Kg, dan NaCl 57.15 mg/L (Sa'diyah, Syarwani, & Hadiantoro, 2017;Siregar & Siregar, 2016).…”
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