TEKNOLOGI MEMBRAN
Kata Kunci:
TEKNOLOGI MEMBRANSinopsis
Buku ini menyajikan pemahaman menyeluruh mengenai teknologi membran sebagai salah satu inovasi penting dalam pemisahan dan pemurnian bahan pada berbagai sektor industri. Mulai dari prinsip dasar, mekanisme transportasi massa, hingga karakterisasi dan desain modul membran, buku ini membekali pembaca dengan landasan teoritis dan praktis yang kuat. Disertai dengan pembahasan industri membran global dan nasional, aplikasi dalam pengolahan air, pengolahan limbah, serta pengolahan pangan dan farmasi, buku ini menjadi panduan lengkap bagi mahasiswa, peneliti, dan praktisi yang ingin memahami dan mengimplementasikan teknologi membran secara efisien dan berkelanjutan.
Bab
-
KATA PENGANTAR
-
DAFTAR ISI
-
DAFTAR TABEL
-
DAFTAR GAMBAR
-
BAB I PRINSIP DASAR TEKNOLOGI MEMBRAN
-
BAB II KEBERADAAN INDUSTRI MEMBRAN
-
BAB III SEKTOR PEMASARAN INDUSTRI MEMBRAN
-
BAB IV PERPINDAHAN MASSA DALAM MEMBRAN DAN MEKANISMENYA
-
BAB V DASAR-DASAR TEORI KARAKTERISASI MEMBRAN
-
BAB VI RANCANGAN SISTEM MODUL MEMBRAN
-
BAB VII SISTEM OPERASI PADA MEMBRAN
-
BAB VIII PERAWATAN DAN PEMELIHARAAN TEKNOLOGI MEMBRAN
-
BAB IX APLIKASI MEMBRAN DALAM PENGOLAHAN LIMBAH INDUSTRI
-
DAFTAR PUSTAKA
Unduhan
Referensi
Adam, M. R., Shafie, M. H., Hubadillah, S. K., Aziz, M. H. A., Jamalludin, M. R., & Nasir, A. M. (2023). The Pilot-Scale Membrane Distillation Systems for Wastewater Treatment: A Mini-Review. Journal of Applied Membrane Science & Technology, 27(1), 63–77. https://doi.org/10.11113/amst.v27n1.264
Aldana, J. C., Agudelo, C., Álvarez, P. M., & Acero, J. L. (2024). Removal of Micropollutants in Water Reclamation by Membrane Filtration: Impact of Pretreatments and Adsorption. Membranes, 14(7), 146. https://doi.org/ z10.3390/ membranes14070146
Aryanti, P. T. P., Nugroho, F. A., Widiasa, I. N., Sutrisna, P. D., & Wenten, I. G. (2022). Preparation of Highly Selective PSf/ZnO/PEG400 Tight Ultrafiltration Membrane for Dyes Removal. Journal of Applied Polymer Science, 139(33). https://doi.org/10.1002/app.52779
Bhardwaj, K., Kumar, A., & Boora, N. (2024). Desalination and Advanced Water Treatment. 19–36. https://doi.org/ 10.58532/v3bars5p1ch2
Boughdiri, A., Kostantini, K., Zouaghi, M., & Ferjani, E. El. (2023). Treatment of Effluent Textile Using Nanofiltration: Study of Fouling and Antifouling. https://doi.org/10.11648/ j.wjac.20230802.14
Elhady, S., Bassyouni, M., Mansour, R. A., Elzahar, M. H., Abdel‐Hamid, S. M. S., Elhenawy, Y., & Saleh, M. Y. (2020). Oily Wastewater Treatment Using Polyamide Thin Film Composite Membrane Technology. Membranes, 10(5), 84. https://doi.org/10.3390/membranes10050084
Environment Protection Engineering Membrane Techniques In Wastewater Treatment. (t.t.).
Firdaus, A. A. F., Slamet, A., Yuniarto, A., & Said, N. I. (2024). Removal of Total Phosphate and Sulfate From Industrial Wastewater by Recirculating Flow in Nanofiltration. Iop Conference Series Earth and Environmental Science, 1307(1), 012020. https://doi.org/10.1088/1755-1315/1307/1/012020
Ghadhban, M. Y., Majdi, H. Sh., Rashid, K. T., Alsalhy, Q. F., Lakshmi, D. S., Salih, I. K., & Figoli, A. (2020). Removal of Dye From a Leather Tanning Factory by Flat-Sheet Blend Ultrafiltration (UF) Membrane. Membranes, 10(3), 47. https://doi.org/10.3390/membranes 10030047
Gowayed, S. M., Abdel‐Salam, A. H., Nassef, E., & Morsy, A. (2025). Innovative Hybrid Membrane: Pioneering Metal Oxide Framework for Improved Elimination of Heavy Metals From Industrial Wastewater. Polymer Engineering & Science, 65(4), 2093–2105. https://doi.org/10.1002/pen.27139
Guo, Y., Feng, H., Zhang, L., Wu, Y., Lan, C., Tang, J., Wang, J., & Tang, L. (2024). Insights Into the Mechanism of Selective Removal of Heavy Metal Ions by the Pulsed/Direct Current Electrochemical Method. Environmental Science & Technology, 58(12), 5589–5597. https://doi.org/10.1021/acs.est.3c10553
Kayhan, Y., Çifçi, D. İ., Güneş, E., & Güneş, Y. (2025). Dye Manufacturing Wastewater Treatment by Adsorption and Fenton Processes: Performance Evaluation and Cost Analysis. Clean - Soil Air Water, 53(8). https://doi.org/10.1002/clen.70034
Khraisheh, M., Elhenawy, S., Almomani, F., Al‐Ghouti, M. A., Hassan, M. K., & Hameed, B. H. (2021). Recent Progress on Nanomaterial-Based Membranes for Water Treatment. Membranes, 11(12), 995. https://doi.org/ 10.3390/membranes11120995
Kumari, S., Širić, I., & Fayssal, S. A. (2023). Biochar as a Versatile Resource for Achieving Sustainability in Agri-Food Chains. Agroenvironmental Sustainability, 1(1), 76–85. https://doi.org/10.59983/s20230101010
Liang, Y., & Knauer, K. M. (2023). Trends and Future Outlooks in Circularity of Desalination Membrane Materials. Frontiers in Membrane Science and Technology, 2. https://doi.org/10.3389/frmst.2023.1169158
Mao, X., Cai, J., Wu, R., & Liu, B. (2024). Mechanistic Insights Into Micelle-Enhanced Nanofiltration for Heavy Metal Removal: Transformation of Ion Transport and Fouling Phenomena. Environmental Science & Technology, 58(31), 13940–13949. https://doi.org/10.1021/ acs.est.4c03741
Mohammed, A. A., Al‐Jubouri, S. M., Zouli, N., Majdi, H. S., Salih, I. K., Al-Shaeli, M., . A. M. I. A.-R., Alsalhy, Q. F., & Figoli, A. (2021). Performance Evaluation of Polyethersulfone Membranes for Competitive Removal of Cd2+, Co2+, and Pb2+ Ions From Simulated Groundwater. Geofluids, 2021, 1–11. https://doi.org/10.1155/2021/6654477
Munoz‐Cupa, C., Bassi, A., & Liu, L. (2022). Investigation of Micellar‐enhanced Ultrafiltration (MEUF) Using Rhamnolipid for Heavy Metal Removal From Desalter Effluent. The Canadian Journal of Chemical Engineering, 100(9), 2322–2330. https://doi.org/ 10.1002/cjce.24422
Nafti‐Mateur, M., Pochat‐Bohatier, C., Horchani‐Naifer, K., Jaouadi, M., & Ennigrou, D. J. (2025). Removal of Lead Ions From Aqueous Solutions via Polyelectrolyte Enhanced Ultrafiltration and Nanofiltration: Efficacy Evaluation of Chitosan, Polyethylenimine, and Polyacrylic Acid. Journal of Chemical Technology & Biotechnology, 100(10), 2065–2077. https://doi.org/10.1002/jctb.70016
Negrete-Cardoso, M., Rosano‐Ortega, G., Álvarez-Aros, É. L., Cortés, M. E. T., Lebrún, C. A. V., & Sánchez-Ruíz, F. J. (2022). Circular Economy Strategy and Waste Management: A Bibliometric Analysis in Its Contribution to Sustainable Development, Toward a Post-Covid-19 Era. Environmental Science and Pollution Research, 29(41), 61729–61746. https://doi.org/ 10.1007/s11356-022-18703-3
Papamichael, I., Voukkali, I., Stylianou, M., Naddeo, V., Ksibi, M., Zarra, T., & Zorpas, A. A. (2024). Sustainable Production and Consumption. Euro-Mediterranean Journal for Environmental Integration, 9(4), 2003–2008. https://doi.org/10.1007/s41207-024-00594-0
Somrani, A., Abohelal, K., & Pontié, M. (2025). A Mini Review of Reused End-of-Life Reverse Osmosis (EoL RO) Membranes. Membranes, 15(7), 217. https://doi.org/ 10.3390/membranes15070217
Wang, S., Zhang, D., Wang, W., Zhong, J., Feng, K., Wu, Z., Du, B., He, J., Li, Z., He, L., Sun, W., Yang, D., & Ozin, G. A. (2022). Grave-to-Cradle Upcycling of Ni From Electroplating Wastewater to Photothermal CO2 Catalysis. Nature Communications, 13(1). https://doi.org/10.1038/ s41467-022-33029-x
Wu, X.-Q., Zhang, W., Yin, P., Xu, Q., Yang, Z., Xu, Y., Liu, X., Wang, F., Wang, Y., & Cai, H. (2023). Facile Fabrication of Highly Efficient Bifunctional Polydopamine–polyethyleneimine Copolymerization‐modified Magnetic Material and Its Effective Applications for Both Adsorption of Gold Ions and Catalytic Reduction of 4‐nitrophenol. Journal of Applied Polymer Science, 141(10). https://doi.org/10.1002/app.55043
Xie, W., Li, T., Tiraferri, A., Drioli, E., Figoli, A., Crittenden, J. C., & Liu, B. (2020). Toward the Next Generation of Sustainable Membranes From Green Chemistry Principles. Acs Sustainable Chemistry & Engineering, 9(1), 50–75. https://doi.org/10.1021/acssuschemeng .0c07119
Zhang, W., Wang, H., Liu, Y., Guo, J., & Yu, Y. (2022). Influence of Pollutant Concentration on the Separation Efficiency of Chelating Membranes for Removing Simultaneously Metal Ions and Proteins From Simulated Industrial Wastewater. Journal of Chemical Technology & Biotechnology, 97(9), 2477–2486. https://doi.org/ 10.1002/jctb.7108
