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
"Characterization of Spent Household Zinc-Carbon Dry Cell Batteries in the Process of Recovery of Value Metals"
written by Majharul Haque Khan, A.S.W Kurny,
published by Journal of Minerals and Materials Characterization and Engineering, Vol.11 No.6, 2012
has been cited by the following article(s):
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[1] Leaching Kinetics of Spent 6F22 Dry Cells Roast Residue in Nitric and Hydrochloric Acids Using a Modified Shrinking Core Model
Chemistry Africa, 2024
[2] Recovery of manganese and zinc from spent zinc-carbon dry cells via sulphuric acid leaching using glucose as reductant
Nigerian Journal of Technology, 2023
[3] Investing the selective corrosion in zinc metal recovery produce zinc phosphate that used in dental to fillers
AIP Conference Proceedings, 2023
[4] The recent progress of ion exchange for the separation of rare earths from secondary resources–A review
Hydrometallurgy, 2023
[5] Fabrication of electro-conductive thin films of nanoparticles and MXene sheets using reclaimed Zn, Mn, and C from spent batteries
Diamond and Related Materials, 2023
[6] Kinetics of Zn–C Battery Leaching with Choline Chloride/Urea Natural Deep Eutectic Solvents
Reyes, JA Mendoza-Pérez, R Ruiz-Guerrero… - Recycling, 2022
[7] Biodiesel production from tucumã (Astrocaryum aculeatum Meyer) almond oil applying the electrolytic paste of spent batteries as a catalyst
Renewable Energy, 2022
[8] Facile Synthesis and Characterization of Poly pyrrole/Mn-Zn ferrites/Graphene composites
2022
[9] Understanding the origin of ethanol oxidation from ultrafine nickel manganese oxide nanosheets derived from spent alkaline batteries
Journal of Cleaner Production, 2022
[10] Polyanilines from spent battery powder and activated carbon: Electrodes for asymmetric supercapacitor cell
Journal of Applied Polymer …, 2022
[11] Electrical Conductivity of Carbon Electrodes by Mixing Carbon Rod and Electrolyte Paste of Spent Battery.
2021
[12] diseño y análisis microestructural y electroquímico de aleaciones de AlCoMn para aplicaciones en generación de energía
2021
[13] Investigating the potential of using dry battery waste powders (DBWPs) as a modifier for asphalt binders
2021
[14] Sulfonated rGO from waste dry cell graphite rod and its hybrid with PANI as electrode for supercapacitor
2021
[15] Pemanfaatan Ekstrak Lidah Buaya Sebagai Bio-Baterai Untuk Sumber Energi Peralatan Elektronik
Jurnal Teknika (Jurnal Fakultas Teknik …, 2021
[16] Konversi Zink Dari Limbah Baterai Zn-C Menjadi Senyawa Seng Sulfat
2021
[17] Electrical Conductivity of Carbon Electrodes by Mixing Carbon Rod and Electrolyte Paste of Spent Battery
International Journal of …, 2021
[18] Simulation of the Impact of Waste Batteries on Ecosystem Reliability
2020
[19] Linking Spectrograph to Mechanical and Physical Properties of X7475 Experimental Alloys Produced from Recycling Beverage Cans for Bumper Beam Applications
2020
[20] Study of Needed Conditions to Recover the Metal Elements From Spent Batteries (Zn-C) By Hydromettalurgical Method
2020
[21] ЗАБЕЗПЕЧЕННЯ ЕКОЛОГІЧНОЇ БЕЗПЕКИ ТА НАДІЙНОСТІ ЕКОСИСТЕМИ, ЩО ПІДДАЄТЬСЯ ВПЛИВУ ПОЛІЕЛЕМЕНТНОГО СКЛАДУ БАТАРЕЙОК
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[23] Energy efficient electrodes for lithium-ion batteries: Recovered and processed from spent primary batteries
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[24] АНАЛИЗ РАСПРЕДЕЛЕНИЯ ОТРАБОТАННЫХ ХИМИЧЕСКИХ ИСТОЧНИКОВ ТОКА ПО ТИПОРАЗМЕРАМ, ЭЛЕКТРОХИМИЧЕСКИМ СИСТЕМАМ И СТЕПЕНИ ОПАСНОСТИ ДЛЯ ОКРУЖАЮЩЕЙ СРЕДЫ
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[25] Алгоритм сравнительной оценки воздействия отработанных химических источников тока на окружающую среду
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[26] Green Chemistry: Products and Processes
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[27] Анализ распределения отработанных химических источников тока по типоразмерам, электрохимическим системам и степени опасности для …
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[28] RESOURCE RECOVERY FROM SPENT ZINC CARBON DRY CELL USING HYDROMETALLURGICAL TECHNIQUE
Proceedings of the International Conference on Chemical Engineering, 2014
[29] Synthesis and Characterization of Manganese (IV) Oxide Nanowire Via Hydrothermal Method
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