PEAT WATER TREATMENT INTO CLEAN WATER USING COMPOSITE CERAMIC MEMBRANE NANOFILTRATION TECHNOLOGY
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Abdullayev, A., Bekheet, M. F., Hanaor, D. A. H., & Gurlo, A. (2019). Materials And Applications For Low-Cost Ceramic Membranes. Membranes, 9(9): 1–31. https://doi.org/10.3390/membranes9090105
Ahmad, A. L., Lah, N. F. C., Norzli, N. A., & Pang, W. Y. (2022). A Contrastive Study of Self-Assembly and Physical Blending Mechanism of TiO2 Blended Polyethersulfone Membranes for Enhanced Humic Acid Removal and Alleviation of Membrane Fouling. Membranes, 12(2): 1–17. https://doi.org/10.3390/membranes12020162
Al-Alawy, A. F., & Salih, M. H. (2016). Experimental Study and Mathematical Modelling of Zinc Removal by Reverse Osmosis Membranes. Iraqi Journal of Chemical and Petroleum Engineering, 17(3): 57–73.
Ali, F., Lestari, D. L., & Putri, M. D. (2021). Peat Water Treatment as an Alternative for Raw water in Peatlands Area. IOP Conference Series: Materials Science and Engineering, 1144(1): 012052. https://doi.org/10.1088/1757-899x/1144/1/012052
Ayunata, Y., Fitria, L., & Kadaria, U. (2020). Pengolahan Air Gambut dengan Media Filter Keramik Berpori (Peat Water Treatment Using Portable Ceramic Filter Media). Jurnal Teknologi Lingkungan Lahan Basah, 8(2): 49–57. ttps://doi.org/10.26418/jtllb.v8i2.43030
Badan Restorasi Gambut. (2019). Rencana Restorasi Ekosistem Gambut Provinsi Sumatera Selatan tahun 2018-2023.
Elgamouz, A., & Tijani, N. (2018). From a naturally occurring-clay mineral to the production of porous ceramic membranes. Microporous and Mesoporous Materials, 271(June): 52–58. https://doi.org/10.1016/j.micromeso.2018.05.030
Elma, M., Pratiwi, A. E., Rahma, A., Rampun, E. L. A., Mahmud, M., Abdi, C., Rosadi, R., Yanto, D. H. Y., & Bilad, M. R. (2022). Combination Of Coagulation, Adsorption, And Ultrafiltration Processes For Organic Matter Removal From Peat Water. Sustainability, 14(1). https://doi.org/10.3390/su14010370
Herawati, H., Kartini, Akbar, A. A., & Abdurrahman, T. (2021). Strategy For Realizing Regional Rural Water Security On Tropical Peatland. Water, 13(18): 1–18. https://doi.org/10.3390/w13182455
Hibban, M., Rezagama, A., & Purwono. (2016). Studi Penurunan Konsentrasi Amonia dalam Limbah Cair Domestik dengan Teknologi Biofilter Aerobmedia Tubular Plastik Pada Awal Pengolahan. Jurnal Teknik Lingkungan, 5(6): 1–9.
Jarukas, L., Ivanauskas, L., Kasparaviciene, G., Baranauskaite, J., Marksa, M., & Bernatoniene, J. (2021). Determination Of Organic Compounds, Fulvic Acid, Humic Acid, And Humin In Peat And Sapropel Alkaline Extracts. Molecules, 26(10): 1–10. https://doi.org/10.3390/molecules26102995
Kasim, N., Muhammad, A. W., & Abdullah, S. R. S. (2017). Iron and Manganese Removal by Nanofiltration and Ultrafiltration Membranes. Malaysian Journal of Analytical Science, 21(1): 149–158.
Kaslum, L., Zikri, A., Tanjung, Y., Oktavia, Y., (2019). Kinerja Sistem Filtrasi Dalam Menurunkan Kandungan Tds, Fe, Dan Organik Dalam Pengolahan Air Minum. Jurnal Kinetika, 10(01): 46–49.
Kunarso, A., Syabana, T. A. A., & Rachmanadi, D. (2022). Three Years Post Fire Areas Natural Regeneration Of Peat Swamp Forest In Merang, Musi Banyuasin District, South Sumatera. Jurnal Galam., 2(2): 125–134. https://doi.org/10.20886/GLM.2022.2.2.125-134
Martini, S., Kharismadewi, D., & Yuliwati, E. (2021). Kajian Keterbaruan Pengaruh Sintesis Aditif Terhadap Kinerja Membran Polimer Untuk Pengolahan Limbah Cair. Jurnal Dinamika Penelitian Industri, 32(2): 156–165.
Meidinariasty, A., Zamhari, M., Septiani, D., & Novianita. (2019). Uji Kinerja Membran Mikrofiltrasi dan Reverse Osmosis pada Proses Pengolahan Air Reservoir Menjadi Air Minum Isi Ulang. Jurnal Kinetika, 10(3): 35–41.
Mulyadi, D., Haryati, S., & Said, M. (2020). The Effect of Calcium Oxide and Aluminum Sulfate on Iron, Manganese and Color Removal at Peat Water Treatment. Indonesian Journal of Fundamental and Applied Chemistry, 5(2): 42–48. https://doi.org/10.24845/ijfac.v5.i2.42
Novia Yanti, R., & Hutasuhut, I. L. (2020). Potensi Limbah Padat Perkebunan Kelapa Sawit Di Provinsi Riau. Wahana Forestra: Jurnal Kehutanan, 15(2): 1–11. https://doi.org/10.31849/forestra.v15i2.4696
Oktafiansyah, M. A. A., Lagowa, M. I., & Tampubolon, G. (2020). Kajian Teknis dan Ekonomis Pengaruh Jenis Kapur dalam Upaya Pengelolaan Air Asam Tambang Jurnal Teknik Kebumian, 05(02): 29–37.
Permana, E., Zahar, W., Prabawa, A. D., Ardianto, D., & Efrianti, Y. (2021). Pemanfaatan Teknologi Adsorbsi Sebagai Solusi Penyediaan Air Bersih Di Kabupaten Tanjung Jabung Barat Provinsi Jambi. Jurnal Pengabdian Pada Masyarakat Literasi, 1(2): 156–162.
Putri, M., Darmayanti, L., & Edward, H. (2021). Potensi Membran Keramik dari Tanah Liat dan Fly Ash Batubara Untuk Mengolah Aair Gambut Menjadi Air Bersih. JOM FTeknik, 8(2): 1–5.
Rasouli, Y., Parivazh, M. M., Abbasi, M., & Akrami, M. (2022). The Effect of Ceramic Membranes’ Structure on the Oil and Ions Removal in Pre-Treatment of the Desalter Unit Wastewater. Membranes, 12(1): 1–27. ttps://doi.org/10.3390/membranes12010059
Rusdianasari, Bow, Y., & Dewi, T. (2019). Peat Water Treatment by Electrocoagulation using Aluminium Electrodes. IOP Conference Series: Earth and Environmental Science, 258(1): 1–8. https://doi.org/10.1088/1755-1315/258/1/012013
Safitri, W. A., Sutikno, S., & Rinaldi. (2020). Analisis Keseimbangan Air untuk Optimasi Pengembangan Komoditi Ramah Gambut. Jurnal Teknik, 14(1): 53–60. https://doi.org/10.31849/teknik.v14i1.3344
Said, Y. M., Achnopa, Y., Zahar, W., & Wibowo, Y. G. (2019). Karakteristik Fisika dan Kimia Air Gambut Kabupaten Tanjung Jabung Barat, Provinsi Jambi. Jurnal Sains Dan Teknologi Lingkungan, 11(2): 132–142.
Saifuddin, S., Lisa, A., Amalia, Z., Faridah, F., & Elfiana, E. (2020). Applications Of Micro Size Anorganic Membrane Of Clay, Zeolite And Active Carbon As Filters For Peat Water Purification. Journal of Physics: Conference Series, 1450(1). https://doi.org/10.1088/1742-6596/1450/1/012010
Sisnayati, Said, M., Nasir, S., & Priadi, D. P. (2018). The Utilization Of Ceramic Membrane For Treating Of Water From Sekanak River Palembang To Produce Clean Water. International Journal on Advanced Science, Engineering and Information Technology, 8(5): 2114–2121. https://doi.org/10.18517/ijaseit.8.5.4724
Sisnayati, Said, M., Nasir, S., & Priadi, D. P. (2017). The effect of Addition of Active Carbon Made from Palm Oil Palm Empty Fruit Bunch and Iron Powder on Ceramic Membrane Characteristics. The 7 Annual Absic Science International Conference, 2: 101–104.
Taufik, M., Veldhuizen, A. A., Wösten, J. H. M., & van Lanen, H. A. J. (2019). Exploration Of The Importance Of Physical Properties Of Indonesian Peatlands To Assess Critical Groundwater Table Depths, Associated Drought And Fire Hazard. Geoderma, 347(February): 160–169. https://doi.org/10.1016/j.geoderma.2019.04.001
Wahyuni, S., Siswanto, & Damayanti, A. (2016). Penggunaan Membran Kitosan Untuk Penurunan COD Dan BOD Limbah Cair Kelapa Sawit. Menara Perkebunan, 84(1), 22–28.
Wang, Q., Tang, X., Zeng, W., Wang, F., Gong, W., Chen, J., Wang, J., Li, G., & Liang, H. (2022). Pilot-Scale Biological Activated Carbon Filtration–Ultrafiltration System for Removing Pharmaceutical and Personal Care Products from River Water. Water 14(3): 1–20. https://doi.org/10.3390/w14030367
Yanu, C. A., Sieliechi, J. M., & Ngassoum, M. B. (2020). Optimization of Ceramic Paste Viscosity Use for the Elaboration of Tubular Membrane Support by Extrusion and Its Application. Journal of Materials Science and Chemical Engineering, 08(03): 1–22. https://doi.org/10.4236/msce.2020.83001
DOI: http://dx.doi.org/10.28959/jdpi.v33i1.7678
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