4.7 Review

Has the time finally come for green oleochemicals and biodiesel production using large-scale enzyme technologies? Current status and new developments

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Article Biotechnology & Applied Microbiology

Synthesis of organic-inorganic hybrid nanoflowers of lipases from Candida antarctica type B (CALB) and Thermomyces lanuginosus (TLL): Improvement of thermal stability and reusability

Isabela Oliveira Costa et al.

Summary: Enzyme immobilization is a method to enhance enzyme application by allowing their reuse and improving stability. The immobilization of enzymes through nanoflowers structures is an innovative and cost-effective technique. This study aims to synthesize hybrid biocatalytic nanostructures similar to flowers using lipases from Candida antarctica type B (CALB) and Thermomyces lanuginosus (TLL). The production of nanoflowers was achieved through precipitation of lipases with CuCl2 or CuSO4 salts for 72 hours. However, challenges were faced in terms of low thermal stability and reusability. Glutaraldehyde cross-linking was tested to overcome these challenges, resulting in improved thermal stability and efficiency.

ENZYME AND MICROBIAL TECHNOLOGY (2023)

Article Chemistry, Applied

Biomass-derived hydrophobic metal-organic frameworks solid acid for green efficient catalytic esterification of oleic acid at low temperatures

Yuncong Li et al.

Summary: In this study, a renewable solid acid catalyst FDCA/SA-Hf with a high degree of hydrophobicity was prepared using biomass-based materials. FDCA/SA-Hf showed efficient performance in producing biodiesel from free fatty acids and nonedible raw oils. It exhibited stable structural properties and excellent hydrophobic network, enabling high biodiesel yield and good reusability. Therefore, FDCA/SA-Hf has great potential in the field of heterogeneous acid-mediated catalysis, especially for biodiesel production.

FUEL PROCESSING TECHNOLOGY (2023)

Review Biochemistry & Molecular Biology

Structural features, temperature adaptation and industrial applications of microbial lipases from psychrophilic, mesophilic and thermophilic origins

Gulam Rabbani et al.

Summary: Microbial lipases are excellent biocatalysts that can catalyze various reactions in both aqueous and non-aqueous media. This review focuses on microbial lipases from different sources (psychrophiles, mesophiles, and thermophiles), highlighting the structural diversity in temperature adaptation and industrial applications. Understanding the molecular mechanisms of temperature adaptation in lipases is of great interest, as extremophilic lipases are widely used in biotransformation reactions with higher yields and unique products.

INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES (2023)

Article Chemistry, Physical

Recent advances in enzyme immobilization based on nanoflowers

Kang Xu et al.

Summary: Enzyme immobilization technologies aim to create reusable enzymes with improved properties for industrial applications. However, traditional immobilization methods often result in reduced enzyme activity compared to free enzymes. The recently developed hierarchical Nanoflowers (NFs) technology offers a promising alternative with enhanced loading capacity and high specific surface area. Recent research has demonstrated its cost-effectiveness and environmental friendliness in enzyme immobilization. This review focuses on the recent advances and applications of environmentally benign hierarchical NFs in enzyme immobilization.

JOURNAL OF CATALYSIS (2023)

Article Chemistry, Physical

Technical-Economic Assessment-The Missing Piece for Increasing the Attractiveness of Applied Biocatalysis in Ester Syntheses?

Ronaldo Rodrigues de Sousa et al.

Summary: Although significant advances have been made in the biocatalytic synthesis of esters, few industrial plants worldwide currently produce esters using biocatalysts. Biocatalytic routes can provide green and sustainable esters with operational advantages over conventional syntheses. However, most literature neglects or generically describes the economic issues, and scaling-up studies are scarce. The cost of immobilized lipases, the main disadvantage of biocatalysis, has not been studied as extensively as other technical aspects. Preliminary techno-economic assessments are crucial to overcome the economic drawbacks and promote wider application of biocatalytic ester syntheses in large-scale contexts.

CATALYSTS (2023)

Article Biotechnology & Applied Microbiology

Optimization of low-cost solid-state fermentation media for the production of thermostable lipases using agro-industrial residues as substrate in culture of Bacillus amyloliquefaciens

Haniya Mazhar et al.

Summary: In this study, a low-cost solid-state fermentation media was optimized for the production of thermostable lipases in Bacillus amyloliquefaciens culture. Cheap agro-industrial wastes were used to enhance lipase production. The obtained results showed that agro-industrial wastes are the cheapest sources for low-cost lipase production.

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Article Biotechnology & Applied Microbiology

Evaluation of olive mill wastewater as culture medium to produce lipolytic enzymes by Bacillus aryabhattai BA03

Alicia Paz et al.

Summary: In this study, olive mill wastewater (OMWW) was used as a low-cost substrate to produce lipases by Bacillus aryabhattai BA03, reducing the production costs. Non-sterilized or sterilized media formulated with 25% OMWW showed double or triple the enzyme activity compared to synthetic medium, while the highest activity was observed at pH 8, 27 degrees C, and 50% OMWW under non-sterile conditions.

BIOCATALYSIS AND AGRICULTURAL BIOTECHNOLOGY (2023)

Article Biophysics

Nanozymes and nanoflower: Physiochemical properties, mechanism and biomedical applications

Mohammad Perwez et al.

Summary: In recent years, researchers have developed enzyme mimicking nanomaterials and enzymatic hybrid nanoflower as alternatives to natural enzymes. These nanozymes and organic inorganic hybrid nanoflower possess various enzyme mimicking activities, enhanced catalytic activities, low cost, easy preparation, stability and biocompatibility. This review compares nanozymes and hybrid nanoflower in terms of physiochemical properties, common synthetic routes, mechanism of action, modification, green synthesis and application in disease diagnosis, imaging, environmental remediation and disease treatment. It also discusses the current challenges and potential future developments in nanozyme and hybrid nanoflower research.

COLLOIDS AND SURFACES B-BIOINTERFACES (2023)

Article Biotechnology & Applied Microbiology

Simultaneous lipase production and immobilization: morphology and physiology study of Penicillium simplicissimum in submerged and solid-state fermentation with polypropylene as an inert support.

Jaqueline Greco-Duarte et al.

Summary: The study investigated the influence of different carbon sources (glucose, olive oil, and a combination of both) on the physiology and morphology of Penicillium simplicissimum through submerged and solid-state fermentations. Results showed that the fungus exhibited different morphologies in different cultivation conditions and media. Furthermore, it was found that the stress conditions in solid-state fermentation may be the key to achieving higher biomass and lipase productivity. The developed process of simultaneous production and immobilization of lipase shows potential as a biocatalyst without the need for downstream processes.

ENZYME AND MICROBIAL TECHNOLOGY (2023)

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Morshadul Hasan et al.

Summary: This study conducts a bibliometric analysis of biofuel economic research and finds that biofuels are linked to a sustainable economy with impacts on poverty reduction, agriculture development, renewable energy production, economic growth, climate change policy, and environmental protection.

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Article Energy & Fuels

Efficient delignification of wheat straw for microbial lipid production enabled by a novel ternary deep eutectic solvent containing ethylene glycol

Jinyu Tan et al.

Summary: A novel ternary deep eutectic solvent (DES) was designed for wheat straw pretreatment, which achieved non-condensed lignin and high-yield fermentable sugars. The introduction of ethylene glycol into the DES protected lignin structure and improved enzymatic digestibility of cellulose. Trichosporon cutaneum cultivated in the waste liquid and residue hydrolysate produced 8.7 g microbial lipid per 100 g wheat straw, surpassing previous reports.
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Bifunctional acid-activated montmorillonite catalyzed biodiesel production from non-food oil: Characterization, optimization, kinetic and thermodynamic studies

Long Chen et al.

Summary: In this study, a novel bifunctional catalytic material 30%Sn-MMT-SO3H was fabricated and successfully applied in converting Jatropha curcas oil into biodiesel. The material showed high activity, reusability, and promising prospects for industrialization of biodiesel production.

FUEL PROCESSING TECHNOLOGY (2023)

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Applications of nanotechnology in biodiesel combustion and post-combustion stages

Homa Hosseinzadeh-Bandbafha et al.

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Review Chemistry, Multidisciplinary

Nanoflowers: A New Approach of Enzyme Immobilization

Felipe Pereira da Costa et al.

Summary: Enzymes are biocatalysts known for their versatility, selectivity, and favorable operating conditions compared to chemical catalysts. However, their large-scale application is limited by high costs and low stability under extreme reaction conditions. Immobilization techniques can solve these problems, and organic-inorganic hybrid nanoflowers have shown advantages such as high surface area, simplicity of synthesis, high stability, and catalytic activity in enzymatic catalysis.

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Article Green & Sustainable Science & Technology

How the biodiesel from immobilized enzymes production is going on: An advanced bibliometric evaluation of global research

Luciana da Silva Dutra et al.

Summary: The study conducted an in-depth analysis of global scientific production on biodiesel production through immobilized enzymes, revealing widespread international collaboration and interest in this field, with China, Brazil, and India emerging as key countries in research and development.

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Microbial lipases: Propitious biocatalysts for the food industry

Cleonice Aparecida Salgado et al.

Summary: Microbial lipases are important enzymes with various advantages and wide applications mainly in the food industry. Researchers are exploring the use of low-cost agro-industrial residues for lipase production to improve yield and characteristics, as well as applying protein engineering techniques and immobilization methods.

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A two-phase model for simulation of water transfer during lipase production by solid-state cultivation in a tray bioreactor using babassu residues as substrate

Mirella P. Diniz da Silva et al.

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Review Chemistry, Applied

Recent development of advanced processing technologies for biodiesel production: A critical review

Muhammad Aamir Bashir et al.

Summary: Research in biodiesel production technologies is focused on improving efficiency through the use of various catalysts and feedstocks. Emerging technologies like enzyme catalysis, batch reactors, and continuous flow reactors show promise in achieving high conversion yields.

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Synthesis and characterization of new bifunctional SnZrSi oxide catalysts for biodiesel production

Shaimaa M. Ibrahim et al.

Summary: A set of unprecedented mesoporous SnO2/ZrSiO4 solids were synthesized through ultrasound-assisted co-precipitation. The impact of silica dopant content on the characterization evolution of the sonicated ZrSnO4 interface and biodiesel production efficiency was examined. The results showed the formation of reconstructed rutile-SnO4 and zircon as new active phases, improved morphology and interesting optical behavior, and different acidic properties. The optimal catalyst exhibited the highest yield for esterification of palmitic acid, while a different catalyst showed the highest yield for transesterification of soybean oil.

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Review Biochemistry & Molecular Biology

Applications of immobilized lipases in enzymatic reactors: A review

Daniela Remonatto et al.

Summary: Lipases are efficient biocatalysts with wide applications in various industries. Immobilization of lipases enhances their stability, selectivity, and half-life. However, achieving high catalytic efficiency in immobilized lipase reactions requires optimization of reaction conditions and operational characteristics.

PROCESS BIOCHEMISTRY (2022)

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Circular Economy Applied to Organic Residues and Wastewater: Research Challenges

Benedicte Bakan et al.

Summary: The article discusses the importance of turning organic residues and wastewater into valuable assets and presents key directions and challenges for driving the development of circular bioeconomy solutions. By proposing innovative processes, establishing multi-scale cross-sectoral organizations, and enhancing research-legislation interactions, the resourceful utilization of organic residues and wastewater can be achieved.

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A review on the utility of microbial lipases in wastewater treatment

Vijay D. Nimkande et al.

Summary: Microbial lipases have immense potential in wastewater treatment as an attractive alternative to traditional physico-chemical methods. This article discusses the limited studies on the use of lipases in wastewater treatment and highlights the need for further research in this area.

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Ahmad Mustafa et al.

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Stabilization of immobilized lipases by treatment with metallic phosphate salts

Jose R. Guimaraes et al.

Summary: In this study, lipases from different sources were immobilized on octylagarose beads and treated with phosphate and/or metallic salts. The effects of phosphate/metal modification on enzyme features varied depending on the loading of the support. Some enzymes showed improved stability, while others showed increased activity.

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Antimicrobial Properties of Lauric Acid and Monolaurin in Virgin Coconut Oil: A Review

Febri Odel Nitbani et al.

Summary: Virgin coconut oil, obtained through wet processing, contains high levels of lauric acid, which has antimicrobial properties. It is widely recognized as a healthy food due to its antibacterial, antifungal, and antiviral effects.

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Shamshad Khan et al.

Summary: This article discusses the increase in demand for fossil fuels caused by human activities and the severe environmental problems that result from it. The study concludes that bioenergy is a green alternative that can be used for diverse energy needs, reducing the use of fossil fuels. Producing biofuels from energy crops and microalgae is identified as the most efficient and attractive method. The article also highlights the role of nanotechnology in biofuel production.
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Improved Synthesis of α-Glycerol Monolaurate Using Lipozyme TL IM

Febri Odel Nitbani et al.

Summary: This study successfully synthesized ??-Glycerol Monolaurate through a two-step reaction. The reaction showed high yield and purity, making it suitable for industrial production.

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Green synthesis of isopropyl palmitate using immobilized Candida antarctica lipase: Process optimization using response surface methodology

Ahmad Mustafa et al.

Summary: This study aims to produce isopropyl palmitate (IPP) in a solvent-free system. The esterification reaction between isopropyl alcohol and palmitic acid was performed using immobilized Candida antarctica lipase as a biocatalyst. The optimal reaction conditions were determined using response surface methodology, and a process flow diagram for semicontinuous production of IPP was suggested.

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Immobilization of lipases on lignocellulosic bamboo powder for biocatalytic transformations in batch and continuous flow

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Summary: The study using bamboo powder as a support for immobilizing two different biocatalysts in ethyl palmitate synthesis showed that both IB-CalB and IB-RM exhibited good recycling efficiency. IB-CalB demonstrated higher enantioselectivity conversion. The high conversion rate of IB-CalB in enantioselective catalysis under flow mode regime indicates the potential of a simple and cost-effective enzyme adsorption method for industrial biocatalytic transformation.

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Review Biotechnology & Applied Microbiology

Enzyme co-immobilization: Always the biocatalyst designers' choice ... or not? ...

Sara Arana-Pena et al.

Summary: Enzyme co-immobilization offers kinetic advantages but also drawbacks, such as the need to discard the entire biocatalyst if one enzyme becomes inactivated. The co-immobilization of cofactors and enzymes is of particular interest for the construction of artificial cells and complex one-pot transformations.

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Glycerolysis treatment to enhance biodiesel production from low-quality feedstocks

Abdallah S. Elgharbawy et al.

Summary: The depletion of diesel fuel and pollution problems lead to the search for alternative energy sources, with biodiesel being the most important one. The high cost of feedstock is the main obstacle to the commercialization of biodiesel. Glycerolysis treatment can effectively reduce FFAs content in low-quality feedstock, making it suitable for transesterification.
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Application of Rhizomucor miehei lipase-displaying Pichia pastoris whole cell for biodiesel production using agro-industrial residuals as substrate

Raphael Oliveira Sena et al.

Summary: This study successfully utilized a novel biocatalyst RML-PIR1 for producing biodiesel from residual agro-industrial fatty acids. The biocatalyst demonstrated optimal activity at 45 degrees C, with high stability and enhanced reuse potential through treatment with GA and PEG. This new biocatalyst shows promising potential for biotechnological applications, particularly in large-scale biofuel production.

INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES (2021)

Article Chemistry, Physical

Novel SnZr oxides nanomaterials synthesized by ultrasonic-assisted co-precipitation method: Application in biodiesel production and DFT study

Shaimaa M. Ibrahim et al.

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Insights into media supplementation in solid-state fermentation of soybean hulls by Yarrowia lipolytica: Impact on lipase production in tray and insulated packed-bed bioreactors

Felipe do Nascimento et al.

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Current perspectives for microbial lipases from extremophiles and metagenomics

Swati Verma et al.

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