Journal of Minerals and Materials Characterization and Engineering

Journal of Minerals and Materials Characterization and Engineering

ISSN Print: 2327-4077
ISSN Online: 2327-4085
www.scirp.org/Journal/jmmce
E-mail: jmmce@scirp.org
"Removal of Cu2+ from Aqueous Solution using Fly Ash"
written by Jinjing Luo, Huazhen Shen, Hanna Markström, Zhongye Wang, Qiang Niu,
published by Journal of Minerals and Materials Characterization and Engineering, Vol.10 No.6, 2011
has been cited by the following article(s):
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[3] Multi-component sorption and utilization of solid waste to simultaneous removing basic dye and heavy metal from aqueous system
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[5] Utilization of waste materials in heavy metals and radionuclides imobilization by sorption
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[6] Primena otpadnih materijala u imobilizaciji teških metala i radionuklida sorpcijom
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[7] Biosorption of copper (II) and manganese (II) from waste water using low cost bio adsorbents
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[8] 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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[9] Primena elektrofilterskog pepela modifikovanog kalcijum-hidroksidom i oksidima železa za uklanjanje jona teških metala iz vode
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[10] Comparative Study for Removal of Zn+ 2 Ions from Aqueous Solutions by Adsorption and Forward Osmosis
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[11] Removal of Heavy Metals from Aqueous Solutıon Using Fly Ash: Çan Thermal Power Plant, NW Turkey as a Case Study
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[12] Copper removal from industrial wastewater: A comprehensive review
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[13] Removal of toxic heavy metal ions from aqueous solutions using jute fibers grafted with acrylic acid by gamma irradiation
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[14] Removal of Arsenic (III) from Aqueous Solutions by Adsorption onto Fly Ash.
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[15] Primena kompozitnog građevinskog otpada za imobilizaciju radionuklida i teških metala sorpcijom
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[16] Sulu Çözeltideki Ağır Metallerin Uçucu Kül Kullanarak Giderimi: Çan Termik Santrali KB Türkiye Örneği
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[17] Removal of Heavy Metals from Aqueous Solution Using Fly Ash: Çan Thermal Power Plant, NW Turkey as a Case Study.
2017
[18] Removal of Heavy Metals from Aqueous Solution Using Fly Ash: Çan Thermal Power Plant, NW Turkey as a Case Study
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[19] ADSORPSI ZAT WARNA MALACHITE GREEN MENGGUNAKAN BAKING FILTER DUST (BFD)
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[20] 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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[21] Potential Use of Incineration Fly Ash as a Sustainable Low Cost Material for Heavy Metals Removal from Acid Mine Drainage
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[22] 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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[23] Sistem Integrasi Koagulasi dan Adsorpsi dalam Reduksi Logam Berat (Cr6+ dan Cu2+) pada Limbah Cair Industri Tekstil
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[24] Fly ash as low cost adsorbent for treatment of effluent of handmade paper industry-Kinetic and modelling studies for direct black dye
Journal of Cleaner Production, 2015
[25] Facile approach to synthesize chitosan based composite—Characterization and cadmium (II) ion adsorption studies
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[26] Flyash: an Effective Method for Treatment of Wastewater
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[27] Treatment of electroplating rinsewater by hybrid ion exchange and electrochemical techniques
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[28] Adsorpsi amonia dari limbah cair industri penyamakan kulit menggunakan abu terbang bagas
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