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摘要:
The present work evaluates the feasibility of using the raw material collected from discarded zinc-carbon batteries as heterogeneous catalyst to degrade the dye Indigo Carmine in an aqueous solution. Besides the evident environmental application, this work also presents an economic alternative for the production of new catalysts used to remediate polluted waters. For this, discarded carbon-zinc batteries were gathered, disassembled and their anodic paste collected. After acidic treatment and calcination at 500°C, characterization measurements, i.e. flame atomic absorption spectroscopy (FAAS), nitrogen sorption, X-ray diffraction (XRD) and scanning electron microscopy (SEM), revealed that the so-obtained material consisted mainly of ZnMn2O4. This material acts as a heterogeneous catalyst in a Fenton-like process that degrades the dye Indigo Carmine in water. That is probably due to the presence of Mn(III) (manganese in the +3 oxidation state) in this material that triggers the decomposition of hydrogen peroxide (H2O2) to yield hydroxyl radicals (HO·). Moreover, direct infusion electrospray ionization coupled to high resolution mass spectrometry (ESI-HRMS) was employed to characterize the main by-products resulting from such degradation process. These initial results thus indicate that raw materials from waste batteries can therefore be potentially employed as efficient Fenton-like catalysts to degrade organic pollutants in an aqueous solution.
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篇名 Discarded Carbon-Zinc Batteries as Source of an Efficient Heterogeneous Fenton-Like Catalyst Employed to Degrade Organic Molecules in an Aqueous Medium
来源期刊 绿色与可持续化学(英文) 学科 化学
关键词 Electronic Waste Zinc-Carbon BATTERIES ZnMn2O4 FENTON-LIKE Degradation Indigo CARMINE Direct Infusion ELECTROSPRAY Ionization High Resolution Mass Spectrometry By-Products Identification
年,卷(期) 2019,(3) 所属期刊栏目
研究方向 页码范围 94-103
页数 10页 分类号 O6
字数 语种
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研究主题发展历程
节点文献
Electronic
Waste
Zinc-Carbon
BATTERIES
ZnMn2O4
FENTON-LIKE
Degradation
Indigo
CARMINE
Direct
Infusion
ELECTROSPRAY
Ionization
High
Resolution
Mass
Spectrometry
By-Products
Identification
研究起点
研究来源
研究分支
研究去脉
引文网络交叉学科
相关学者/机构
期刊影响力
绿色与可持续化学(英文)
季刊
2160-6951
武汉市江夏区汤逊湖北路38号光谷总部空间
出版文献量(篇)
188
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0
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0
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