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1
An ultrasensitive fluorescent biosensor using high gradient magnetic separation and quantum dots for fast detection of foodborne pathogenic bacteria
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An ultrasensitive fluorescent biosensor using high gradient magnetic separation and quantum dots for fast detection of foodborne pathogenic bacteria

Xue, Li ; Zheng, Lingyan ; Zhang, Huilin ; Jin, Xiu ; Lin, Jianhan

Sensors and actuators. B, Chemical, 2018-07, Vol.265, p.318-325 [Periódico revisado por pares]

Lausanne: Elsevier B.V

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2
Compact Magneto‐Fluorescent Colloids by Hierarchical Assembly of Dual‐Components in Radial Channels for Sensitive Point‐of‐Care Immunoassay
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Compact Magneto‐Fluorescent Colloids by Hierarchical Assembly of Dual‐Components in Radial Channels for Sensitive Point‐of‐Care Immunoassay

Huang, Liang ; Zhang, Yuxing ; Liao, Tao ; Xu, Kui ; Jiang, Chenxing ; Zhuo, Dinglv ; Wang, Yang ; Wen, Hui‐Min ; Wang, Jing ; Ao, Lijiao ; Hu, Jun

Small (Weinheim an der Bergstrasse, Germany), 2021-06, Vol.17 (25), p.e2100862-n/a [Periódico revisado por pares]

Weinheim: Wiley Subscription Services, Inc

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3
Selectivity evaluation for high gradient magnetic separation performance based on static buildup model
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Selectivity evaluation for high gradient magnetic separation performance based on static buildup model

Xue, Zixing ; Wang, Yuhua ; Zheng, Xiayu ; Lu, Dongfang ; Li, Xudong ; Hu, Zhicheng

Powder technology, 2022-02, Vol.399, p.117237, Article 117237 [Periódico revisado por pares]

Lausanne: Elsevier B.V

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4
A novel process to upgrade the copper slag by direct reduction-magnetic separation with the addition of Na2CO3 and CaO
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A novel process to upgrade the copper slag by direct reduction-magnetic separation with the addition of Na2CO3 and CaO

Li, Siwei ; Pan, Jian ; Zhu, Deqing ; Guo, Zhengqi ; Xu, Jiwei ; Chou, Jianlei

Powder technology, 2019-04, Vol.347, p.159-169 [Periódico revisado por pares]

Lausanne: Elsevier B.V

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5
Numerical simulation and experimental verification for magnetic field analysis of thread magnetic matrix in high gradient magnetic separation
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Numerical simulation and experimental verification for magnetic field analysis of thread magnetic matrix in high gradient magnetic separation

Li, Wenbo ; Zhou, Libo ; Han, Yuexin ; Xu, Ruiqing

Powder technology, 2019-10, Vol.355, p.300-308 [Periódico revisado por pares]

Lausanne: Elsevier B.V

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6
Agglomeration, colloidal stability, and magnetic separation of magnetic nanoparticles: collective influences on environmental engineering applications
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Agglomeration, colloidal stability, and magnetic separation of magnetic nanoparticles: collective influences on environmental engineering applications

Yeap, Swee Pin ; Lim, JitKang ; Ooi, Boon Seng ; Ahmad, Abdul Latif

Journal of nanoparticle research : an interdisciplinary forum for nanoscale science and technology, 2017-11, Vol.19 (11), p.1-15, Article 368

Dordrecht: Springer Netherlands

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7
Modeling of particle capture in high gradient magnetic separation: A review
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Modeling of particle capture in high gradient magnetic separation: A review

Zheng, Xiayu ; Xue, Zixing ; Wang, Yuhua ; Zhu, Guangli ; Lu, Dongfang ; Li, Xudong

Powder technology, 2019-06, Vol.352, p.159-169 [Periódico revisado por pares]

Lausanne: Elsevier B.V

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8
Mechanical characteristics of magnetite as a function of particle size during column-based magnetic separation
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Mechanical characteristics of magnetite as a function of particle size during column-based magnetic separation

Zhang, Mingrui ; Guo, Xiaofei ; Ren, Weijie ; Dai, Shujuan

Separation science and technology, 2022-05, Vol.57 (7), p.1175-1185 [Periódico revisado por pares]

Abingdon: Taylor & Francis

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9
A three-product magnetic-separation column: influence of compound force field on the settlement of magnetite
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A three-product magnetic-separation column: influence of compound force field on the settlement of magnetite

Yue, Xiang ; Liu, Enjian ; Guo, Xiaofei ; Ren, Weijie ; Zhang, Mingrui ; Dai, Shujuan ; Liu, Wengang

Separation science and technology, 2023-02, Vol.58 (3), p.598-612 [Periódico revisado por pares]

Abingdon: Taylor & Francis

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10
Preparation of reduced iron powder for powder metallurgy from magnetite concentrate by direct reduction and wet magnetic separation
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Preparation of reduced iron powder for powder metallurgy from magnetite concentrate by direct reduction and wet magnetic separation

Yao, Guangzheng ; Li, Yongli ; Guo, Qiang ; Qi, Tao ; Guo, Zhancheng

Powder technology, 2021-11, Vol.392, p.344-355 [Periódico revisado por pares]

Lausanne: Elsevier B.V

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