Rchr
J-GLOBAL ID:202101019259157745
Update date: Jan. 30, 2024
PAN LONG
パン ロン | PAN LONG
Affiliation and department:
Research field (1):
Civil engineering (environmental systems)
Research keywords (4):
2-Methylisoborneol (2-MIB)
, membrane
, adsorption desorption
, activated carbon
Research theme for competitive and other funds (1):
- 2020 - 2022 Novel activated carbon for effective perfluoroalkyl substance (PFASs) removal by minimizing problematic desorption.
Papers (5):
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Long Pan, Akiko Nakayama, Yoshihiko Matsui, Taku Matsushita, Nobutaka Shirasaki. Desorption of micropollutant from superfine and normal powdered activated carbon in submerged-membrane system due to influent concentration change in the presence of natural organic matter: Experiments and two-component branched-pore kinetic model. Water Research. 2022. 208. 117872-117872
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Long Pan, Yuki Nishimura, Hideki Takaesu, Yoshihiko Matsui, Taku Matsushita, Nobutaka Shirasaki. Effects of decreasing activated carbon particle diameter from 30 mu m to 140 nm on equilibrium adsorption capacity. WATER RESEARCH. 2017. 124. 425-434
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Long Pan, Yuichi Takagi, Yoshihiko Matsui, Taku Matsushita, Nobutaka Shirasaki. Micro-milling of spent granular activated carbon for its possible reuse as an adsorbent: Remaining capacity and characteristics. WATER RESEARCH. 2017. 114. 50-58
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Long Pan, Yoshihiko Matsui, Taku Matsushita, Nobutaka Shirasaki. Superiority of wet-milled over dry-milled superfine powdered activated carbon for adsorptive 2-methylisoborneol removal. WATER RESEARCH. 2016. 102. 516-523
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Yoshihiko Matsui, Soichi Nakao, Asuka Sakamoto, Takuma Taniguchi, Long Pan, Taku Matsushita, Nobutaka Shirasaki. Adsorption capacities of activated carbons for geosmin and 2-methylisoborneol vary with activated carbon particle size: Effects of adsorbent and adsorbate characteristics. WATER RESEARCH. 2015. 85. 95-102
Awards (1):
- 2017/09 - Japan society on water environment The Best Awards of JSWE-ORGANO Doctoral Research Awards Characteristics of micro-milled activated carbon for adsorptive removal of 2-methylisoborneol
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