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7篇 您的检索式:作者名="Pang GC"
    题名 作者 年代 出处 被引量
1Flavonoids from the leaves of Rubus coreanum 显示文摘Kim MS Pang GC Lee MW 1997Yakhak Hoechi1997,41,1:1
2Red and processed meat consumption and risk of stroke:a meta-analysis of prospective cohort studies显示文摘Chen GC Lv DB Pang Z 0,,01:1
3Identification and immu-nogenicity of two new HLA-A* 0201-restricted CDS+T-cellepitopes on dengue NS1 protein显示文摘Tian J Zeng GC Pang XW 2012Inter Immunol2012,24,:1
4Templateless and surfactantless route to the synthesis ofpolyaniline nanofibers 显示文摘Li GC Pang SP Peng HR 2005Journal of Polymer Science Part A : Polymer Chemistry2005,43,17:1
5Is hospital admission for heart failure really necessary?: the role of the emergency depart- ment and observation unit in preventing hospitalization and rehospi- talization显示文摘Collins SP Pang PS Fonarow GC et at 2013J Am Coil Cardiol2013,61,2:1
6Epigenetic inactivation of DLC-1 in supratentorial primitive neuroectodermal tumor显示文摘Pang GC Chang Q Chung YF 2005Hum Pathol2005,36,:1
7Polyurethane-degrading fungi from soils contaminated with rocket propellant and their ability to decompose alkyne terminated polybutadiene with urethane显示文摘A large amount of propellant materials are produced every year,and storage and disposal of these propellant materials seriously contributes to environmental pollution.Alkyne terminated polybutadiene with urethane segments(PUPB)is the macromolecule backbone of these propellant materials,and degradation of PUPB is central to the eco-friendly treatment of propellant materials.In this study,we isolated a polyurethane(PU)-and PUPB-degrading fungus from soils contaminated with rocket propellant,and the fungus H14 was identified as Fusarium solani(Mart.)Sacc.based on macro-and micro-morphology as well as phylogenetic analyses.The ability of F.solani H14 to degrade PU film and PUPB patches was evaluated via mass loss,scanning electron microscopy(SEM)and enzyme production ability.Mass loss analyses revealed a 25.8%reduction in mass of PU and 1.3%reduction in mass of PUPB after F.solani H14 was incubated with PU and PUPB for 90 days,respectively.We found that F.solani H14 mycelia significantly colonized both PU and PUPB.SEM images showed that the surface of PU films and PUPB patches formed holes,underwent folding and experienced damage as well as irregular fissuring from the erosion of fungal hypha.Moreover,two possible degradative enzymes,lipase and esterase,were produced by F.solani.Our study opens a new avenue of research for eco-friendly treatments of explosive materials and propellants.This paper represents the first article on the degradation of PUPB patches.Ren GC Pang AM Gao Y Wu SX Ge ZQ Zhang TF Wanasinghe DN Khan S Mortimer PE Xu JC Gui H 2021Studies in Fungi2021,6,1:0
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