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Hazard-free treatment of electrolytic manganese residue and recovery of manganese using low temperature roasting-water washing process
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Hazard-free treatment of electrolytic manganese residue and recovery of manganese using low temperature roasting-water washing process

He, Shichao ; Wilson, Benjamin P. ; Lundström, Mari ; Liu, Zhihong

Journal of hazardous materials, 2021-01, Vol.402, p.123561, Article 123561 [Periódico revisado por pares]

Netherlands: Elsevier B.V

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2
Fabrication of electrolytic manganese residue/granulated blast furnace slag-based geopolymer microspheres (EMR/GBFS@GMs) and enhanced synergic adsorption of Cr(III)-containing wastewater
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Fabrication of electrolytic manganese residue/granulated blast furnace slag-based geopolymer microspheres (EMR/GBFS@GMs) and enhanced synergic adsorption of Cr(III)-containing wastewater

Wang, Kaituo ; Yi, Min ; Sun, Yixun ; Yang, Yong ; Lu, Chujie ; Fujita, Toyohisa ; Cui, Xuemin

Separation and purification technology, 2025-03, Vol.355, p.129555, Article 129555 [Periódico revisado por pares]

Elsevier B.V

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3
Enabling efficient and economical degradation of PCDD/Fs in MSWIFA via catalysis and dechlorination effect of EMR in synergistic thermal treatment
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Enabling efficient and economical degradation of PCDD/Fs in MSWIFA via catalysis and dechlorination effect of EMR in synergistic thermal treatment

Xue, Yang ; Yang, Tongyuan ; Liu, Xiaoming ; Cao, Zhen ; Gu, Jiarui ; Wang, Yanlong

Chemosphere (Oxford), 2023-11, Vol.342, p.140164, Article 140164 [Periódico revisado por pares]

Elsevier Ltd

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(Fe0.67Mn0.33)OOH riched in oxygen vacancies facilitated the PMS activation of modified EMR for refractory foaming agent removal from mineral processing wastewater
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(Fe0.67Mn0.33)OOH riched in oxygen vacancies facilitated the PMS activation of modified EMR for refractory foaming agent removal from mineral processing wastewater

Li, Mengke ; He, Zhiguo ; Zhong, Hui ; Sun, Wei ; Hu, Liang ; Luo, Mengqi

Chemical engineering journal (Lausanne, Switzerland : 1996), 2022-08, Vol.441, p.136024, Article 136024 [Periódico revisado por pares]

Elsevier B.V

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5
Preparation of road base material by utilizing electrolytic manganese residue based on Si-Al structure: Mechanical properties and Mn2+ stabilization/solidification characterization
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Preparation of road base material by utilizing electrolytic manganese residue based on Si-Al structure: Mechanical properties and Mn2+ stabilization/solidification characterization

Zhang, Yuliang ; Liu, Xiaoming ; Xu, Yingtang ; Tang, Binwen ; Wang, Yaguang

Journal of hazardous materials, 2020-05, Vol.390, p.122188-122188, Article 122188 [Periódico revisado por pares]

Elsevier B.V

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6
A critical review on approaches for electrolytic manganese residue treatment and disposal technology: Reduction, pretreatment, and reuse
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A critical review on approaches for electrolytic manganese residue treatment and disposal technology: Reduction, pretreatment, and reuse

He, Dejun ; Shu, Jiancheng ; Wang, Rong ; Chen, Mengjun ; Wang, Rui ; Gao, Yushi ; Liu, Renlong ; Liu, Zuohua ; Xu, Zhonghui ; Tan, Daoyong ; Gu, Hannian ; Wang, Ning

Journal of hazardous materials, 2021-09, Vol.418, p.126235, Article 126235 [Periódico revisado por pares]

Elsevier B.V

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7
Multi-step purification of electrolytic manganese residue leachate using hydroxide sedimentation, struvite precipitation, chlorination and coagulation: Advanced removal of manganese, ammonium, and phosphate
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Multi-step purification of electrolytic manganese residue leachate using hydroxide sedimentation, struvite precipitation, chlorination and coagulation: Advanced removal of manganese, ammonium, and phosphate

Chen, Yuanxuan ; Long, Jianyou ; Chen, Sihao ; Xie, Yuan ; Xu, Zhengfan ; Ning, Zengping ; Zhang, Gaosheng ; Xiao, Tangfu ; Yu, Mingxia ; Ke, Yanyang ; Peng, Lihu ; Li, Huosheng

The Science of the total environment, 2022-01, Vol.805, p.150237-150237, Article 150237 [Periódico revisado por pares]

Elsevier B.V

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8
Insight into a novel composite biosorbent by incorporating chitosan into electrolytic manganese residue for Cr(VI) removal from aqueous solutions
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Insight into a novel composite biosorbent by incorporating chitosan into electrolytic manganese residue for Cr(VI) removal from aqueous solutions

Li, Jia ; Ke, Xuan ; Wei, Hua ; Bao, Shenxu ; Guo, Li

Separation and purification technology, 2024-03, Vol.332, p.125778, Article 125778 [Periódico revisado por pares]

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9
Efficient leaching of manganese from electrolytic manganese residue and recovery of the leaching solution: Reuse and purification
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Efficient leaching of manganese from electrolytic manganese residue and recovery of the leaching solution: Reuse and purification

Wen, Quan ; Liu, Bo ; Zhang, Junjie ; Shen, Hanlin ; Lu, Xuhang ; Wang, Shuying ; Zhang, Shengen

Separation and purification technology, 2024-03, Vol.332, p.125648, Article 125648 [Periódico revisado por pares]

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10
Self-formed MnCO3/FeS2@SiO2 in modified electrolytic manganese residues as an enhanced peroxymonosulfate activator for ammonium dibutyl dithiophosphate removal
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Self-formed MnCO3/FeS2@SiO2 in modified electrolytic manganese residues as an enhanced peroxymonosulfate activator for ammonium dibutyl dithiophosphate removal

Shen, Hairong ; Luo, Mengqi ; Wang, Jieyi ; Li, Mengke ; He, Zhiguo ; Zhong, Hui ; Sun, Wei ; Ye, Mingqiang ; Tang, Yetao

Chemical engineering journal (Lausanne, Switzerland : 1996), 2023-09, Vol.472, p.144915, Article 144915 [Periódico revisado por pares]

Elsevier B.V

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