Journal of Biomaterials and Nanobiotechnology

Journal of Biomaterials and Nanobiotechnology

ISSN Print: 2158-7027
ISSN Online: 2158-7043
www.scirp.org/journal/jbnb
E-mail: jbnb@scirp.org
"Agro-Industrial Waste Materials as Substrates for the Production of Poly(3-Hydroxybutyric Acid)"
written by Artun Sukan, Ipsita Roy, Tajalli Keshavarz,
published by Journal of Biomaterials and Nanobiotechnology, Vol.5 No.4, 2014
has been cited by the following article(s):
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[2] Cross‐sectoral citrus sugarcane biorefinery: polyhydroxyalkanoates production in Brazil
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[3] PHB production by Bacillus megaterium strain MNSH1-9K-1 using low-cost media
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[4] Production of poly-3-hydroxybutyrate (PHB) nanoparticles using grape residues as the sole carbon source
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[5] Innovative production of value-added products using agro-industrial wastes via solid-state fermentation
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[6] Utilization of Agro-industrial, Food Processing Wastes and Pollutants for Manufacture of Products of Industrial Value: A Review
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[7] Sustainable Production of Polyhydroxyalkanoates (PHAs) from Agri-Food Waste: Molecular and Bioengineering Aspects
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[13] 12 Use of Microbiological Agents
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[14] Studies on utilization of waste for production of alcohol
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[15] Production of Bioplastic by Local Strains of Bacillus subtilis using Watermelon Peels as Substrate
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[16] Nusproizvod agroindustrije–zeleno lišće: Novi izvor proteina i bioaktivnih jedinjenja
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[17] Valorization of lignocellulosic biomass for polyhydroxyalkanoate production: Status and perspectives
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[18] Functional bioplastics from food residual: Potentiality and safety issues
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[19] Agricultural crop waste materials–A potential reservoir of molecules
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[20] Valorization of Lignocellulose by Producing Polyhydroxyalkanoates under Circular Bioeconomy Premises: Facts and Challenges
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[21] Opportunities for the development of cassava waste biorefineries for the production of polyhydroxyalkanoates in Sub-Saharan Africa
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[22] Agricultural waste management generated by agro-based industries using biotechnology tools
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[23] Production and characterization of biodegradable polymer-polyhydroxybutyrate from agricultural waste-sugarcane bagasse by the novel marine bacterium Klebsiella …
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[25] Controlled Delivery of Pan-PAD-Inhibitor Cl-Amidine Using Poly (3-Hydroxybutyrate) Microspheres
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[26] Bioplastic Production by Bacillus wiedmannii AS-02 OK576278 Using Different Agricultural Wastes
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[27] Effective Utilization of Palm Mesocarpic Husk: An Agrowaste in Producing Major Phenolics and Other Chemicals
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[28] Dielectric Properties of ZnO-Based Nanocomposites and Their Potential Applications
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[29] Insights on sustainable approaches for production and applications of value added products
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[30] Various Perspectives on Microbial Lipase Production Using Agri-Food Waste and Renewable Products
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[31] A comprehensive overview and recent advances on polyhydroxyalkanoates (PHA) production using various organic waste streams
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[32] Valorizing waste liquor from dilute acid pretreatment of lignocellulosic biomass by Bacillus megaterium B-10
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[33] Synthesis of poly-3-hydroxybutyrate (PHB) by Bacillus cereus using grape residues as sole carbon source
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[34] Fruit residues as a sustainable feedstock for the production of bacterial polyhydroxyalkanoates
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[35] Bioplastic Production by Bacillus wiedmannii AS-02 OK576278 Using Different Agricultural Wastes. Microorganisms 2021, 9, 2395
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[36] Planchas biodegradables a base de almidón de Pituca y cáscara de Cacao: Características físico-mecánicas y degradabilidad
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[37] Ricinoleic acid as a reagent in the synthesis of ionomeric copolyester amides for coating applications
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[38] Dielectric Properties of ZnO‐Based Nanocomposites and Their Potential Applications
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[39] Antibiotic-free PHA-based antibacterial materials for bone regeneration
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[40] Bioconversion of agricultural wastes to polyhydroxybutyrate by Azotobacter vinelandii.
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[41] Agricultural Solid Waste Management: An Approach to Protect the Environment and Increase Agricultural Productivity
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[42] Sustainable Polyhydroxybutyrate Production in Integrated Forest Biorefineries
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[43] Agroindustrial Byproducts for the Generation of Biobased Products: Alternatives for Sustainable Biorefineries
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[44] Lignocellulosic feedstock: a review of a sustainable platform for cleaner production of nature's plastics
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[45] Impacts of Food Industrial Wastes on Soil and Its Utilization as Novel Approach for Value Addition
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[46] Utilisation/upgrading of orange peel waste from a biological biorefinery perspective
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[47] Improvement of the Production and Characterisation of Polyhydroxyalkanoate by Bacillus endophyticus Using Inexpensive Carbon Feedstock
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[48] A review on biopolymer production via lignin valorization
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[49] Cellulose acetate and silver particles composite synthesis to antimicrobial applications
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[50] Obtenção de compósito com matriz de acetato de celulose e partículas de prata para aplicações antimicrobianas
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[51] Agro-industrial wastes and their utilization using solid state fermentation: a review
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[52] Implementation of Planning Techniques for A Residential Project using PRIMAVERA
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[53] Future Trends and Outlook in Biofuels Production
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[54] Fermentation: A Boon for Production of Bioactive Compounds by Processing of Food Industries Wastes (By-Products)
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[55] Sustainable PHA production in integrated lignocellulose biorefineries
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[56] Bioconversion of Agricultural Wastes to Polyhydroxybutyrate by Azotobacter vinelandii
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[57] A Strategy for Dual Biopolymer Production of P (3HB) and γ‐PGA
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[58] Biorefineries: Biofuels, Biochemicals, and Bioproducts
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[59] Biofuels production and processing technology
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[60] Recycling of Waste Streams of the Biotechnological Poly (hydroxyalkanoate) Production by Haloferax mediterranei on Whey
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[61] Polyhydroxy alkanoates Production by Newly Isolated Bacteria Serratia ureilytica Using Volatile Fatty Acids as Substrate: Bio-Electro Kinetic Analysis
J Microb Biochem Technol, 2015
[62] Poly (hydroxyalkanoate)(PHA) Biopolyesters: Production, Performance and Processing Aspects
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[63] Potential of Diverse Prokaryotic Organisms for Glycerol-based Polyhydroxyalkanoate Production
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[64] Recycling of Waste Streams of the Biotechnological Poly(hydroxyalkanoate) Production by Haloferax mediterranei on Whey
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[65] Enhanced co-production of biopolymer polyhydroxybutyrate (PHB) and biopigment (carotenoid) through wild Bacillus chungangensis by utilizing agro-waste …
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