共 65 条
Immobilization of enzyme cocktails on dopamine functionalized magnetic cellulose nanocrystals to enhance sugar bioconversion: A biomass reusing loop
被引:47
作者:

Ariaeenejad, Shohreh
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机构:
Agr Res Educ & Extens Org, Dept Syst & Synthet Biol, Agr Biotechnol Res Inst Iran, Karaj, Iran Agr Res Educ & Extens Org, Dept Syst & Synthet Biol, Agr Biotechnol Res Inst Iran, Karaj, Iran

Motamedi, Elaheh
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h-index: 0
机构:
Agr Res Educ & Extens Org, Dept Nanotechnol, Agr Biotechnol Res Inst Iran, Karaj, Iran Agr Res Educ & Extens Org, Dept Syst & Synthet Biol, Agr Biotechnol Res Inst Iran, Karaj, Iran

Salekdeh, Ghasem Hosseini
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h-index: 0
机构:
Agr Res Educ & Extens Org, Dept Syst & Synthet Biol, Agr Biotechnol Res Inst Iran, Karaj, Iran
Macquarie Univ, Dept Mol Sci, Sydney, NSW, Australia Agr Res Educ & Extens Org, Dept Syst & Synthet Biol, Agr Biotechnol Res Inst Iran, Karaj, Iran
机构:
[1] Agr Res Educ & Extens Org, Dept Syst & Synthet Biol, Agr Biotechnol Res Inst Iran, Karaj, Iran
[2] Agr Res Educ & Extens Org, Dept Nanotechnol, Agr Biotechnol Res Inst Iran, Karaj, Iran
[3] Macquarie Univ, Dept Mol Sci, Sydney, NSW, Australia
关键词:
Cellulose nanocrystals;
Magnetic nano-carrier;
Dopamine;
Enzyme cocktail;
Covalent immobilization;
Biomass conversion;
LIGNOCELLULOSIC BIOMASS;
HYDROLYSIS;
NANOCELLULOSE;
D O I:
10.1016/j.carbpol.2020.117511
中图分类号:
O69 [应用化学];
学科分类号:
081704 ;
摘要:
A combined enzymatic treatment/acid hydrolysis technique was utilized to synthesize cellulose nanocrystals (CNCs) from sugar beet pulp. CNCs were functionalized with magnetite nanoparticles and dopamine making a versatile nano-carrier (DA/Fe(3)O(4)NPs@CNCs) for covalent enzyme immobilization. Oxygene/amine functionalities, high magnetization value, and specific surface area of DA/Fe(3)O(4)NPs@CNCs made it a reusable and green candidate for conjugation to hydrolytic enzyme cocktails (three cellulases, two hemicellulases, and their combinations) to prepare an innovative and practical nano-biocatalyst for biomass conversion. The conjugated enzymes showed an enhanced optimum temperature (similar to 10 degrees C), improved thermal stability, and shifted optimum pH toward alkaline pHs. Covalent attachment could successfully suppress the enzyme leaching and provide easy recovery/reuse of the nano-biocatalyst up to 10 cycles, with > 50% of initial activity. Application of the nanobiocatalyst in hydrolysis of rice straw and sugar beet pulp showed an increase (20-76%) in the yield of fermentable sugars compared to the free enzyme cocktails.
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