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The influence of Cu2+ and Pb2+ on the characteristics of extracellular polymeric substances (EPSs) from Mucor mucedo and its relationship with pyrene biodegradation - ScienceDirect

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管理番号 新品 :42139118342
中古 :42139118342-1
メーカー b37ba7c 発売日 2025-05-02 22:25 定価 2400円
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The influence of Cu2+ and Pb2+ on the characteristics of extracellular polymeric substances (EPSs) from Mucor mucedo and its relationship with pyrene biodegradation - ScienceDirect

The influence of Cu2+ and Pb2+ on the characteristics of extracellular  polymeric substances (EPSs) from Mucor mucedo and its relationship with  pyrene biodegradation - ScienceDirectThe influence of Cu2+ and Pb2+ on the characteristics of extracellular polymeric substances (EPSs) from Mucor mucedo and its relationship with pyrene biodegradation - ScienceDirect,Green synthesis of fluorescent carbon nanospheres from chrysanthemum as a  multifunctional sensor for permanganate, Hg(II), and captopril -  ScienceDirectGreen synthesis of fluorescent carbon nanospheres from chrysanthemum as a multifunctional sensor for permanganate, Hg(II), and captopril - ScienceDirect,Constructing osteo-inductive bio-ink for 3D printing through hybridization  of gelatin with maleic acid modified bacterial cellulose by regulating  addition volumes of maleic acid solution - ScienceDirectConstructing osteo-inductive bio-ink for 3D printing through hybridization of gelatin with maleic acid modified bacterial cellulose by regulating addition volumes of maleic acid solution - ScienceDirect,Autoinducer-2 relieves soil stress-induced dormancy of Bacillus velezensis  by modulating sporulation signaling | npj Biofilms and MicrobiomesAutoinducer-2 relieves soil stress-induced dormancy of Bacillus velezensis by modulating sporulation signaling | npj Biofilms and Microbiomes,Engineering Pt nanoclusters on CeO 2 surface with abundant point defects by  in situ confined-domain encapsulation strategy for the catalytic eliminati   - RSC Applied Interfaces (RSC Publishing) DOI:10.1039/D3LF00147DEngineering Pt nanoclusters on CeO 2 surface with abundant point defects by in situ confined-domain encapsulation strategy for the catalytic eliminati - RSC Applied Interfaces (RSC Publishing) DOI:10.1039/D3LF00147D

 

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