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Advances in Characterizing Gas Hydrate Formation in Sediments with NMR Transverse Relaxation Time

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管理番号 新品 :61045118701
中古 :61045118701-1
メーカー 47af65d 発売日 2025-04-24 08:51 定価 12200円
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Advances in Characterizing Gas Hydrate Formation in Sediments with NMR Transverse Relaxation Time

Advances in Characterizing Gas Hydrate Formation in Sediments with NMR  Transverse Relaxation TimeAdvances in Characterizing Gas Hydrate Formation in Sediments with NMR Transverse Relaxation Time,Crystallization-controlled defect minimization of a ZIF-67 membrane for the  robust separation of propylene and propane - ScienceDirectCrystallization-controlled defect minimization of a ZIF-67 membrane for the robust separation of propylene and propane - ScienceDirect,Oxygen vacancies-enriched Fe-Cu bimetallic minerals-based magnetic biochar  activated peroxydisulfate for durable sulfonamides degradation:  pH-dependence adsorption and singlet oxygen evolution mechanism -  ScienceDirectOxygen vacancies-enriched Fe-Cu bimetallic minerals-based magnetic biochar activated peroxydisulfate for durable sulfonamides degradation: pH-dependence adsorption and singlet oxygen evolution mechanism - ScienceDirect,Natural redox mediator anthraquinone aloe-emodin facilitated the in-situ  mineralized γ-FeO(OH) membrane for the removal of tannic acid through  photocatalytic-PMS activation - ScienceDirectNatural redox mediator anthraquinone aloe-emodin facilitated the in-situ mineralized γ-FeO(OH) membrane for the removal of tannic acid through photocatalytic-PMS activation - ScienceDirect,Oxygen vacancies-enriched Fe-Cu bimetallic minerals-based magnetic biochar  activated peroxydisulfate for durable sulfonamides degradation:  pH-dependence adsorption and singlet oxygen evolution mechanism -  ScienceDirectOxygen vacancies-enriched Fe-Cu bimetallic minerals-based magnetic biochar activated peroxydisulfate for durable sulfonamides degradation: pH-dependence adsorption and singlet oxygen evolution mechanism - ScienceDirect,

 

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