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Original Articles

Surface Modified Bagasse Fly Ash Zeolites for Removal of Reactive Black-5

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Pages 1247-1255 | Received 13 May 2010, Accepted 30 May 2010, Published online: 24 Aug 2011

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Venkata Subbaiah Munagapati, Hsin-Yu Wen, Jet-Chau Wen, Yuvaraja Gutha, Zhong Tian, Guda Mallikarjuna Reddy & Jarem Raul Garcia. (2021) Anionic congo red dye removal from aqueous medium using Turkey tail (Trametes versicolor) fungal biomass: adsorption kinetics, isotherms, thermodynamics, reusability, and characterization. Journal of Dispersion Science and Technology 42:12, pages 1785-1798.
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Yanhong Li, Guangbing Liang, Liping Chang, Changyu Zi, Yuanqin Zhang, Zhaoxia Peng & Wenbo Zhao. (2021) Conversion of biomass ash to different types of zeolites: a review. Energy Sources, Part A: Recovery, Utilization, and Environmental Effects 43:14, pages 1745-1758.
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Venkata Subbaiah Munagapati, Jet-Chau Wen, Chih-Long Pan, Yuvaraja Gutha, Jyh-Horng Wen & Guda Mallikarjuna Reddy. (2020) Adsorptive removal of anionic dye (Reactive Black 5) from aqueous solution using chemically modified banana peel powder: kinetic, isotherm, thermodynamic, and reusability studies. International Journal of Phytoremediation 22:3, pages 267-278.
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BhavnaA. Shah & ChiragB. Mistry. (2013) Solid Phase Extraction of Phenol on Zeolitic Material: Batch Sorption and Column Dynamics. Separation Science and Technology 48:11, pages 1717-1728.
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G. V. Sai Krishna, Sasidhar Reddy Madduri, Aishwarya Vipin & Chandra Sekhar Matli. 2023. Agricultural Waste to Value-Added Products. Agricultural Waste to Value-Added Products 255 271 .
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Mohamed Hadri, Imane El Mrabet, Zineb Chaouki, Khalid Draoui, Mustapha Hamdaoui, Hikmat Douhri & Hicham Zaitan. (2022) Valorization of natural diatomite mineral: Application to removal of anionic dye from aqueous solution in a batch and fixed-bed reactor天然硅藻土矿物的高值化利用: 在批式和固定床反应器中去除水溶液中的阴离子染料. Journal of Central South University 29:6, pages 2084-2098.
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Andrew J. Hunt, Nontipa Supanchaiyamat, Kaewta Jetsrisuparb & Jesper T.N. KnijnenburgPrinya Chindaprasirt, Ubolluk Rattanasak & Patcharapol Posi. 2022. High‐Performance Materials from Bio‐based Feedstocks. High‐Performance Materials from Bio‐based Feedstocks 289 314 .
Jéssica A. Oliveira, Felipe A. Cunha & Luís A.M. Ruotolo. (2019) Synthesis of zeolite from sugarcane bagasse fly ash and its application as a low-cost adsorbent to remove heavy metals. Journal of Cleaner Production 229, pages 956-963.
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Bhavna A. Shah, Darshini D. Pandya & Hirva A. Shah. (2016) Impounding of ortho-Chlorophenol by Zeolitic Materials Adapted from Bagasse Fly Ash: Four Factor Three Level Box-Behnken Design Modelling and Optimization. Arabian Journal for Science and Engineering 42:1, pages 241-260.
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Jaqueline M. Moura, Dara D.R. Gründmann, Tito R.S. CadavalJr.Jr., Guilherme L. Dotto & Luiz A.A. Pinto. (2016) Comparison of chitosan with different physical forms to remove Reactive Black 5 from aqueous solutions. Journal of Environmental Chemical Engineering 4:2, pages 2259-2267.
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Bhavna A. Shah, Chirag B. Mistry & Ajay V. Shah. (2014) Detoxification of hexavalent chromium using hydrothermally modified agricultural detritus into mesoporous zeolitic materials. Microporous and Mesoporous Materials 196, pages 223-234.
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Bhavna A. Shah, Ajay V. Shah, Harendra D. Patel & Chirag B. Mistry. (2013) High‐value Zeolitic Material from Bagasse Fly Ash: Utilization for Dye Elimination. Water Environment Research 85:6, pages 558-567.
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Bhavna Shah, Chirag Mistry & Ajay Shah. (2012) Seizure modeling of Pb(II) and Cd(II) from aqueous solution by chemically modified sugarcane bagasse fly ash: isotherms, kinetics, and column study. Environmental Science and Pollution Research 20:4, pages 2193-2209.
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Bhavna A. Shah, Chirag B. Mistry & Ajay V. Shah. (2013) Sequestration of Cu(II) and Ni(II) from wastewater by synthesized zeolitic materials: Equilibrium, kinetics and column dynamics. Chemical Engineering Journal 220, pages 172-184.
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Ritesh Tailor, Bhavna Shah & Ajay Shah. (2012) Sorptive Removal of Phenol by Zeolitic Bagasse Fly Ash: Equilibrium, Kinetics, and Column Studies. Journal of Chemical & Engineering Data 57:5, pages 1437-1448.
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