[1]
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Removal of heavy metals from waste water using alumina and fly ash
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NULL |
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[2]
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Application of coal fly ash for treatment of wastewater containing a binary mixture of copper and nickel
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2021 |
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[3]
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Multi-component sorption and utilization of solid waste to simultaneous removing basic dye and heavy metal from aqueous system
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2020 |
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[4]
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Characterisation and utilisation of solid waste from coal combustion to modelling of sorption equilibrium in a bi-component system metal-dye
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2020 |
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[5]
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Utilization of waste materials in heavy metals and radionuclides imobilization by sorption
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2019 |
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[6]
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Primena otpadnih materijala u imobilizaciji teških metala i radionuklida sorpcijom
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2019 |
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[7]
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Biosorption of copper (II) and manganese (II) from waste water using low cost bio adsorbents
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2018 |
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[8]
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Two-step modification towards enhancing the adsorption capacity of fly ash for both inorganic Cu (II) and organic methylene blue from aqueous solution
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Environmental Science and Pollution Research,
2018 |
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[9]
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Primena elektrofilterskog pepela modifikovanog kalcijum-hidroksidom i oksidima železa za uklanjanje jona teških metala iz vode
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2018 |
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[10]
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Comparative Study for Removal of Zn+ 2 Ions from Aqueous Solutions by Adsorption and Forward Osmosis
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Iraqi Journal of Chemical and Petroleum Engineering,
2017 |
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[11]
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Removal of Heavy Metals from Aqueous Solutıon Using Fly Ash: Çan Thermal Power Plant, NW Turkey as a Case Study
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2017 |
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[12]
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Copper removal from industrial wastewater: A comprehensive review
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Journal of Industrial and Engineering Chemistry,
2017 |
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[13]
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Removal of toxic heavy metal ions from aqueous solutions using jute fibers grafted with acrylic acid by gamma irradiation
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Polymer Composites,
2017 |
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[14]
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Removal of Arsenic (III) from Aqueous Solutions by Adsorption onto Fly Ash.
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Asian Journal of Chemistry,
2017 |
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[15]
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Primena kompozitnog građevinskog otpada za imobilizaciju radionuklida i teških metala sorpcijom
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2017 |
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[16]
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Sulu Çözeltideki Ağır Metallerin Uçucu Kül Kullanarak Giderimi: Çan Termik Santrali KB Türkiye Örneği
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Karaelmas Fen ve Mühendislik Dergisi,
2017 |
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[17]
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Removal of Heavy Metals from Aqueous Solution Using Fly Ash: Çan Thermal Power Plant, NW Turkey as a Case Study.
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2017 |
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[18]
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Removal of Heavy Metals from Aqueous Solution Using Fly Ash: Çan Thermal Power Plant, NW Turkey as a Case Study
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Karaelmas Science & Engineering Journal,
2017 |
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[19]
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ADSORPSI ZAT WARNA MALACHITE GREEN MENGGUNAKAN BAKING FILTER DUST (BFD)
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2016 |
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[20]
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Removal of Chromium and Nickel from Electroplating Wastewater using Magnetite Particulate Adsorbent:(1) Effect of pH, Contact Time and Dosage,(2) …
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2016 |
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[21]
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Potential Use of Incineration Fly Ash as a Sustainable Low Cost Material for Heavy Metals Removal from Acid Mine Drainage
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한국폐기물자원순환학회지,
2016 |
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[22]
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Removal of Chromium and Nickel from Electroplating Wastewater Using Magnetite Particulate Adsorbent:(1) Effect of pH, Contact Time and Dosage,(2) Adsorption Isotherms and Kinetics
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Modern Applied Science,
2016 |
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[23]
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Sistem Integrasi Koagulasi dan Adsorpsi dalam Reduksi Logam Berat (Cr6+ dan Cu2+) pada Limbah Cair Industri Tekstil
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Prosiding Seminar Nasional Teknik Kimia" Kejuangan",
2015 |
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[24]
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Fly ash as low cost adsorbent for treatment of effluent of handmade paper industry-Kinetic and modelling studies for direct black dye
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Journal of Cleaner Production,
2015 |
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[25]
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Facile approach to synthesize chitosan based composite—Characterization and cadmium (II) ion adsorption studies
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Carbohydrate polymers,
2015 |
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[26]
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Flyash: an Effective Method for Treatment of Wastewater
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2015 |
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[27]
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Treatment of electroplating rinsewater by hybrid ion exchange and electrochemical techniques
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NULL
2014 |
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[28]
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Adsorpsi amonia dari limbah cair industri penyamakan kulit menggunakan abu terbang bagas
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Majalah Kulit, Karet, dan Plastik,
2013 |
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