Materials Sciences and Applications

Materials Sciences and Applications

ISSN Print: 2153-117X
ISSN Online: 2153-1188
www.scirp.org/journal/msa
E-mail: msa@scirp.org
"Preparation and Characterization of Magnetic Banana Peels Biochar for Fenton Degradation of Methylene Blue"
written by Eric Sakué Ngankam, Lemankreo Dai-Yang, Baissassou Debina, Abdellaziz Baçaoui, Abdelrani Yaacoubi, Abdoul Ntieche Rahman,
published by Materials Sciences and Applications, Vol.11 No.6, 2020
has been cited by the following article(s):
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[1] Green synthesis of magnetic biochars derived from biobased orange peel materials as sustainable heterogeneous catalytic supports for the Fenton process
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[2] Building TiO2-doped magnetic biochars from Citrus Sinensis Peels as low-cost materials for improved dye degradation using a mathematical approach
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[4] High Porous Activated Carbon Electrode Derived from Watermelon Peel Biomass Exposed with DC Glow Discharge Plasma Applied for Super Capacitors
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[5] Reinforce the surface properties of domestic garbage activated carbon by low temperature plasma accustomed in energy storage applications
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[6] Synthesis and characterization of peanut shell-derived ferromagnetic activated carbon: application in the Fenton process for the degradation of methyl orange
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[7] Fabrication of MnCo2O4 electrode accustomed in energy storage devices integrating through Solid-state method
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[8] Removal of methylene blue using heterogeneous Fenton process with Fe impregnated kepok banana (Musa acuminate L.) peel activated carbon as catalyst
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[9] A correlation of the adsorption capacity of perovskite/biochar composite with the metal ion characteristics
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[10] Magnetic Biochar by One-Step Impregnation Pyrolysis of Peganum harmala L. for Removal of Rhodamine B
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[11] Removal of Pb(II) ions by cellulose modified-LaFeO3 sorbents from different biomasses
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[12] Fe3O4 Nanoparticles from FeSiAl Alloy of Spent Printed Circuit Boards and its Application in Dye Degradation
Iranian Journal of …, 2023
[13] Characterization and Adsorption Capacity of Modified Biochar for Sulfamethylimidine and Methylene Blue in Water
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[14] Valorization of Banana Peel Using Carbonization: Potential Use in the Sustainable Manufacturing of Flexible Supercapacitors
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[15] Synthesis biochar of steam distillation of the solid waste cardamom for the adsorption removal of congo red
AIP Conference …, 2023
[16] Study structure characteristics and the photocatalytic degradation of Rhodamine B on C/g-C3N4 composites
Vietnam Journal of …, 2023
[17] Synthesis of C/g-C3N4 composite with enhanced photocatalytic activity under visible light
Vietnam Journal of …, 2022
[18] Ferromagnetic Biochar Prepared from Hydrothermally Modified Calcined Mango Seeds for Fenton-like Degradation of Indigo Carmine
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[19] FeCl3-activated biochar catalyst for heterogeneous Fenton oxidation of antibiotic sulfamethoxazole in water
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[20] Fabrication of colorimetric sensor using Fe3O4 @ Musa paradisiaca L. nanoparticles for detecting hydrogen peroxide: an application in environmental and …
Applied …, 2022
[21] The preparation of polyvinyl imidazole-functionalized magnetic biochar decorated by silver nanoparticles as an efficient catalyst for the synthesis of spiro-2 …
Scientific Reports, 2022
[22] Ferromagnetic Biochar Prepared from Hydrothermally Modified Calcined Mango Seeds for Fenton-like Degradation of Indigo Carmine. C 2022, 8, 81
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[23] Yolk-shell Fe3O4@ MOF-5 nanocomposites as a heterogeneous Fenton-like catalyst for organic dye removal
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[24] Production, Characterization and Application of Engineered Biochars Made from Agricultural Wastes for Effective Remediation of Emerging Contaminants in Water
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[25] OPTIMASI ADSORPSI METILEN BIRU MEMANFAATKAN SABUT BUAH LONTAR TERAKTIVASI ASAM
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