American Journal of Analytical Chemistry

American Journal of Analytical Chemistry

ISSN Print: 2156-8251
ISSN Online: 2156-8278
www.scirp.org/journal/ajac
E-mail: ajac@scirp.org
"Cost Effective Adsorption of Aluminium and Iron from Synthetic and Real Wastewater by Rice Hull Activated Carbon (RHAC)"
written by Nour T. Abdel-Ghani, Ghadir A. El-Chaghaby, Enas Mohamed Zahran,
published by American Journal of Analytical Chemistry, Vol.6 No.1, 2015
has been cited by the following article(s):
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[2] Evaluation of rice husk biochar as a micronutrients carrier on micronutrients availability in a calcareous sandy soil
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[3] A Natural Biomass-Sediment as a Hybrid Organic-Mineral Sorbent for the Removal of Zinc in Aqueous Systems
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[4] Chemical Regeneration of Activated Carbon After Adsorption of Ni (II) Ions
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[5] Application of CM-β-CD-Fe3O4NPs: As an Adsorbent for the Removal of Aluminum ion from Wastewater
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[6] The Optimization of Biochar for the Removal of Phosphorus from Water
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[7] Delignification and Adsorption Research of Bioethanol Process using Pseudostem of Musa Balbisiana (Pisang Klutuk) as the Blending Raw Material to Gasohol
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[8] A Study on the Removal Characteristics of Metal Ions from Aqueous Solution by Low Cost Biosorbent (Ulva lactuca).
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[9] Highly Efficient Elimination of Pb+2 and Al+3 Metal Ions from Wastewater Using Graphene Oxide/3,5-Diaminobenzoic Acid Composites: Selective Removal of Pb2+ …
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[10] Synthesised CM-β-CD-Fe3O4NPs: as an environmental friendly and effective adsorbent for elimination of boron from aqueous solutions
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[11] Experimental Studies on the Removal of Aluminium Ions from Synthetic Aqueous Solution by Hydroxyapatites
Acta Chimica …, 2021
[12] ประสิทธิภาพ ของ ถ่าน ชีวภาพ จาก มูล ช้าง ใน การ ดูด ซับ ไอออน ของ เหล็ก (III): Efficiency of Biochar Derived from Elephant Dung for Adsorption of Iron (III) Ions
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[13] Efficiency of Biochar Derived from Elephant Dung for Adsorption of Iron (III) Ions
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[14] Development and Characterization of Non conventional Low Cost Adsorbents for the Removal of Diverse Pollutants from Wastewater
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[15] Sequential synergetic sorption analysis of Gracilaria Rhodophyta biochar toward aluminum and fluoride: A statistical optimization approach
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[16] Preparation, characterization, and binding profile of imprinted semi-IPN cryogel composite for aluminum
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[17] Al (III) removal from wastewater by natural clay and coconut shell
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[18] AI (III) removal from wastewater by natural clay and coconut shell
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[19] Core–shell polypyrrole/Fe3O4 nanocomposite as sorbent for magnetic dispersive solid-phase extraction of Al+ 3 ions from solutions: investigation of the operational …
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[20] Al (III) removal from wastewaters by natural clay and coconut shell
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[21] Development and Characterization of Non-conventional Low Cost Adsorbents for the Removal of Diverse Pollutants from Wastewater
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[22] Sulardaki metal kirliliğinin doğal adsorbanlar ile giderimi
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[23] Development and Characterization of Nonconventional Low Cost Adsorbents for the Removal of Diverse Pollutants from Wastewater
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[24] Highly-efficient removal of As-V, Pb2+, Fe3+, and Al3+ pollutants from water using hierarchical, microscopic TiO2 and TiOF2 adsorbents through batch and fixed-bed …
J. Clean. Prod., 2018
[25] Highly-efficient removal of AsV, Pb2+, Fe3+, and Al3+ pollutants from water using hierarchical, microscopic TiO2 and TiOF2 adsorbents through batch and fixed …
Journal of Cleaner …, 2018
[26] Biosorption as a Novel Approach for Removing Aluminium from Water Treatment Plant Residual—A Review
Water Quality Management, 2018
[27] Highly-efficient removal of AsV, Pb2+, Fe3+, and Al3+ pollutants from water using hierarchical, microscopic TiO2 and TiOF2 adsorbents through batch and fixed-bed …
Journal of Cleaner Production, 2018
[28] Research progress on treatment of heavy metal wastewater by adsorption
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[29] Highly-efficient removal of As V, Pb 2ş, Fe 3ş, and Al 3ş pollutants from water using hierarchical, microscopic TiO2 and TiOF2 adsorbents through batch and …
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[30] Management of agricultural waste for removal of heavy metals from aqueous solution: adsorption behaviors, adsorption mechanisms, environmental protection, and …
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[31] Magnetic activated carbon loaded with tungsten oxide nanoparticles for aluminum removal from waters
Journal of Environmental Chemical Engineering, 2017
[32] Batch Sorption of Copper (II) Ions from Simulated Aqueous Solution by Banana Peel
Al-Khwarizmi Engineering Journal, 2016
[33] Management of agricultural waste for removal of heavy metals from aqueous solution: adsorption behaviors, adsorption mechanisms, environmental protection, and techno-economic analysis
Environmental Science and Pollution Research, 2016
[34] Removal of Aluminium from Simulated Wastewater by Using Soil Aquifer Treatment in Conjunction with Prosopis Julifera Adsorbent
IRACST – Engineering Science and Technology: An International Journal, 2016
[35] Comparing different kinds of materials for adsorption of pollutants in wastewater
Advances in Energy, Environment and Materials Science: Proceedings of the International Conference on Energy, Environment and Materials Science (EEMS 2015), 2015
[36] Science and Development Journal/Science and Development/Vol. 5 No. 2 (2021)/Articles Open Access
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