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典型文献
Microbial biodegradation of plastics:Challenges,opportunities,and a critical perspective
文献摘要:
The abundance of synthetic polymers has increased due to their uncontrolled utilization and disposal in the environment.The recalcitrant nature of plastics leads to accumulation and saturation in the environment,which is a matter of great concern.An exponential rise has been reported in plastic pollution during the corona pandemic because of PPE kits,gloves,and face masks made up of single-use plastics.The physicochemical methods have been employed to degrade synthetic polymers,but these methods have limited efficiency and cause the release of hazardous metabolites or by-products in the environment.Microbial species,isolated from landfills and dumpsites,have utilized plastics as the sole source of carbon,energy,and biomass production.The involvement of microbial strains in plastic degradation is evident as a substantial amount of mineralization has been observed.However,the complete removal of plastic could not be achieved,but it is still effective compared to the pre-existing traditional methods.Therefore,microbial species and the enzymes involved in plastic waste degradation could be utilized as eco-friendly alternatives.Thus,microbial biodegradation approaches have a profound scope to cope with the plastic waste problem in a cost-effective and environmental-friendly manner.Further,microbial degradation can be optimized and combined with physicochemical methods to achieve substantial results.This review summarizes the different microbial species,their genes,biochemical pathways,and enzymes involved in plastic biodegradation.
文献关键词:
作者姓名:
Shilpa;Nitai Basak;Sumer Singh Meena
作者机构:
Department of Biotechnology,Dr.B.R.Ambedkar National Institute of Technology Jalandhar,Punjab 144027,India
引用格式:
[1]Shilpa;Nitai Basak;Sumer Singh Meena-.Microbial biodegradation of plastics:Challenges,opportunities,and a critical perspective)[J].环境科学与工程前沿,2022(12):129-150
A类:
dumpsites
B类:
Microbial,biodegradation,plastics,Challenges,opportunities,critical,perspective,abundance,synthetic,polymers,has,increased,due,their,uncontrolled,utilization,disposal,recalcitrant,nature,leads,accumulation,saturation,which,matter,great,concern,An,exponential,rise,been,reported,pollution,during,corona,pandemic,because,PPE,kits,gloves,face,masks,made,up,single,physicochemical,methods,have,employed,degrade,but,these,limited,efficiency,release,hazardous,metabolites,by,products,species,isolated,from,landfills,utilized,sole,source,carbon,energy,biomass,production,involvement,microbial,strains,evident,substantial,amount,mineralization,observed,However,complete,removal,could,not,achieved,still,effective,compared,pre,existing,traditional,Therefore,enzymes,involved,waste,eco,friendly,alternatives,Thus,approaches,profound,scope,problem,cost,environmental,manner,Further,can,optimized,combined,results,This,review,summarizes,different,genes,biochemical,pathways
AB值:
0.580561
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