Search Results - "Cao, Hongbin"

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  1. 1

    Reactive Oxygen Species and Catalytic Active Sites in Heterogeneous Catalytic Ozonation for Water Purification by Yu, Guangfei, Wang, Yuxian, Cao, Hongbin, Zhao, He, Xie, Yongbing

    Published in Environmental science & technology (19-05-2020)
    “…Heterogeneous catalytic ozonation (HCO) processes have been widely studied for water purification. The reaction mechanisms of these processes are very…”
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  2. 2

    Recycling of spent lithium-ion batteries in view of lithium recovery: A critical review by Liu, Chunwei, Lin, Jiao, Cao, Hongbin, Zhang, Yi, Sun, Zhi

    Published in Journal of cleaner production (10-08-2019)
    “…Due to the rapid expanding of plug-in hybrid electric vehicles (PHEVs), hybrid electric vehicles (HEVs) and electric vehicles (EVs), the projectfed demand for…”
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  3. 3

    Source apportionment and health risk assessment of heavy metals in soil for a township in Jiangsu Province, China by Jiang, Yanxue, Chao, Sihong, Liu, Jianwei, Yang, Yue, Chen, Yanjiao, Zhang, Aichen, Cao, Hongbin

    Published in Chemosphere (Oxford) (01-02-2017)
    “…Human activities contribute greatly to heavy metal pollution in soils. Concentrations of 15 metal elements were detected in 105 soil samples collected from a…”
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  4. 4

    A Critical Review and Analysis on the Recycling of Spent Lithium-Ion Batteries by Lv, Weiguang, Wang, Zhonghang, Cao, Hongbin, Sun, Yong, Zhang, Yi, Sun, Zhi

    Published in ACS sustainable chemistry & engineering (05-02-2018)
    “…Recycling of spent lithium-ion batteries (LIBs) has attracted significant attention in recent years due to the increasing demand for corresponding critical…”
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  5. 5

    Visible-Light Photocatalytic Ozonation Using Graphitic C3N4 Catalysts: A Hydroxyl Radical Manufacturer for Wastewater Treatment by Xiao, Jiadong, Xie, Yongbing, Rabeah, Jabor, Brückner, Angelika, Cao, Hongbin

    Published in Accounts of chemical research (19-05-2020)
    “…Conspectus Photocatalytic ozonation (light/O3/photocatalyst), an independent advanced oxidation process (AOP) proposed in 1996, has demonstrated over the past…”
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  6. 6

    Lithium Carbonate Recovery from Cathode Scrap of Spent Lithium-Ion Battery: A Closed-Loop Process by Gao, Wenfang, Zhang, Xihua, Zheng, Xiaohong, Lin, Xiao, Cao, Hongbin, Zhang, Yi, Sun, Zhi

    Published in Environmental science & technology (07-02-2017)
    “…A closed-loop process to recover lithium carbonate from cathode scrap of lithium-ion battery (LIB) is developed. Lithium could be selectively leached into…”
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  7. 7

    Emission control priority of PM2.5-bound heavy metals in different seasons: A comprehensive analysis from health risk perspective by Liu, Jianwei, Chen, Yanjiao, Chao, Sihong, Cao, Hongbin, Zhang, Aichen, Yang, Yue

    Published in The Science of the total environment (10-12-2018)
    “…Source-specific health risks of PM2.5-bound metals were analyzed for emission control by integrating source apportionment with health risk assessments of…”
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  8. 8

    Selection of active phase of MnO2 for catalytic ozonation of 4-nitrophenol by Nawaz, Faheem, Cao, Hongbin, Xie, Yongbing, Xiao, Jiadong, Chen, Yue, Ghazi, Zahid Ali

    Published in Chemosphere (Oxford) (01-02-2017)
    “…Catalytic ozonation is a highly effective method in wastewater treatment, and MnO2 materials are widely recognized as active heterogeneous catalysts in this…”
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  9. 9

    A Mini-Review on Metal Recycling from Spent Lithium Ion Batteries by Zheng, Xiaohong, Zhu, Zewen, Lin, Xiao, Zhang, Yi, He, Yi, Cao, Hongbin, Sun, Zhi

    Published in Engineering (Beijing, China) (01-06-2018)
    “…The rapid growth of lithium ion batteries (LIBs) for portable electronic devices and electric vehicles has resulted in an increased number of spent LIBs. Spent…”
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  10. 10

    Selective recovery of valuable metals from spent lithium-ion batteries – Process development and kinetics evaluation by Gao, Wenfang, Song, Jiali, Cao, Hongbin, Lin, Xiao, Zhang, Xihua, Zheng, Xiaohong, Zhang, Yi, Sun, Zhi

    Published in Journal of cleaner production (20-03-2018)
    “…Recovery of valuable metals from spent lithium-ion battery (LIB) is of both environmental and economic importance. Acidic leaching usually encounters issues of…”
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  11. 11
  12. 12

    Material flow analysis on critical raw materials of lithium-ion batteries in China by Song, Jiali, Yan, Wenyi, Cao, Hongbin, Song, Qingbin, Ding, He, Lv, Zheng, Zhang, Yi, Sun, Zhi

    Published in Journal of cleaner production (01-04-2019)
    “…Sustainable growth of the lithium-ion battery (LIB) industry requires a safe supply of raw materials and proper end-of-life management for products. The lack…”
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  13. 13

    A closed-loop process for recycling LiNi1/3Co1/3Mn1/3O2 from the cathode scraps of lithium-ion batteries: Process optimization and kinetics analysis by Zhang, Xihua, Cao, Hongbin, Xie, Yongbing, Ning, Pengge, An, Huijiao, You, Haixia, Nawaz, Faheem

    Published in Separation and purification technology (01-08-2015)
    “…•Biodegradable trichloroacetic acid was developed to leach LiNi1/3Co1/3Mn1/3O2.•Low leaching rate of Al and high leaching rates of other metals are…”
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  14. 14

    Is C3N4 Chemically Stable toward Reactive Oxygen Species in Sunlight-Driven Water Treatment? by Xiao, Jiadong, Han, Qingzhen, Xie, Yongbing, Yang, Jin, Su, Qiaozhi, Chen, Yue, Cao, Hongbin

    Published in Environmental science & technology (21-11-2017)
    “…Reactive oxygen species (ROS) are key oxidants for the degradation of organic pollutants in sunlight-driven photocatalytic water treatment, but their…”
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  15. 15

    Degradation and transformation of atrazine under catalyzed ozonation process with TiO2 as catalyst by Yang, Yixin, Cao, Hongbin, Peng, Pai, Bo, Hongmiao

    Published in Journal of hazardous materials (30-08-2014)
    “…•Degradation of atrazine by catalytic ozonation was investigated with rutile TiO2 as catalyst.•Five transformation products of atrazine were identified in…”
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  16. 16

    Bipolar membrane electrodialysis for generation of hydrochloric acid and ammonia from simulated ammonium chloride wastewater by Li, Ya, Shi, Shaoyuan, Cao, Hongbin, Wu, Xinmin, Zhao, Zhijuan, Wang, Liying

    Published in Water research (Oxford) (01-02-2016)
    “…Simulated ammonium chloride wastewater was treated by a lab-scale bipolar membrane electrodialysis for the generation of HCl and NH3·H2O and desalination. The…”
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  17. 17

    Superiority of a novel flow-electrode capacitive deionization (FCDI) based on a battery material at high applied voltage by Chang, Junjun, Duan, Feng, Cao, Hongbin, Tang, Kexin, Su, Chunlei, Li, Yuping

    Published in Desalination (15-10-2019)
    “…Flow-electrode capacitive deionization (FCDI) provides the opportunity for continuous desalination operation of high concentration saline water. In this study,…”
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  18. 18

    Urbanization-related changes in soil PAHs and potential health risks of emission sources in a township in Southern Jiangsu, China by Cao, Hongbin, Chao, Sihong, Qiao, Li, Jiang, Yanxue, Zeng, Xiancai, Fan, Xiaoting

    Published in The Science of the total environment (01-01-2017)
    “…Urbanization, which is characterized by population aggregation, industrial development, and increased traffic load, may change local polycyclic aromatic…”
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  19. 19

    Desalination stability of capacitive deionization using ordered mesoporous carbon: Effect of oxygen-containing surface groups and pore properties by Duan, Feng, Du, Xuan, Li, Yuping, Cao, Hongbin, Zhang, Yi

    Published in Desalination (01-11-2015)
    “…Ordered mesoporous carbons (OMCs) with various pore properties and oxygen-containing functional groups were obtained by changing preparation conditions and…”
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  20. 20

    A Closed-Loop Process for Selective Metal Recovery from Spent Lithium Iron Phosphate Batteries through Mechanochemical Activation by Yang, Yongxia, Zheng, Xiaohong, Cao, Hongbin, Zhao, Chunlong, Lin, Xiao, Ning, Pengge, Zhang, Yi, Jin, Wei, Sun, Zhi

    Published in ACS sustainable chemistry & engineering (06-11-2017)
    “…With the increasing consumption of lithium ion batteries (LIBs) in electric and electronic products, the recycling of spent LIBs has drawn significant…”
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