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Pratima Bajpai

    Environmentally Benign Pulping
    Developments in Bioethanol
    Microorganisms and Enzymes for Lignocellulosic Biorefineries
    Developments and Applications of Enzymes from Thermophilic Microorganisms
    Deep Eutectic Solvents for Pretreatment of Lignocellulosic Biomass
    Microbial Xylanolytic Enzymes
    • Microbial Xylanolytic Enzymes

      • 244 páginas
      • 9 horas de lectura

      Focusing on the structure and function of microbial xylanolytic enzymes, the book delves into their role in breaking down plant cell walls, particularly hemicellulose. It covers various enzyme properties, production methods, and their hydrolysis mechanisms, emphasizing the growing industrial applications in sectors like paper, food, biofuels, textiles, and pharmaceuticals. Recent interest in these enzymes has spurred advancements, showcasing their versatility and importance in enhancing efficiency across multiple industries.

      Microbial Xylanolytic Enzymes
    • Focusing on deep eutectic solvents (DESs), this book explores their properties and innovative applications in processing lignocellulosic biomass for biofuels and biochemicals. It highlights the importance of overcoming biomass recalcitrance to enhance commercial viability. DESs are presented as eco-friendly alternatives due to their affordability, low toxicity, biodegradability, and recyclability, making them promising candidates for sustainable biomass conversion technologies.

      Deep Eutectic Solvents for Pretreatment of Lignocellulosic Biomass
    • Focusing on the industrial applications of thermophilic and hyperthermophilic enzymes, this book explores their significant role in various industries, particularly in biofuels. It highlights recent advancements in using these enzymes in 2G biorefineries, which can operate at high temperatures to enhance reaction rates and reduce costs. Researchers in fields like biochemistry and biotechnology will find valuable insights into the unique properties of hyperthermophilic enzymes, which offer potential for innovative applications and fundamental studies.

      Developments and Applications of Enzymes from Thermophilic Microorganisms
    • Focusing on the engineering and application of enzymes and microorganisms, this book addresses the degradation of lignocellulosic materials and the challenges in developing effective lignocellulolytic enzymes. It explores various bioprocesses, emphasizing consolidated bioprocessing and microbial co-culturing systems as promising strategies for producing biochemicals and biofuels. Additionally, it highlights advancements in creating high-performance enzyme cocktails and the future of cost-effective lignocellulose conversion processes, offering a comprehensive perspective for biorefinery development.

      Microorganisms and Enzymes for Lignocellulosic Biorefineries
    • Developments in Bioethanol

      • 236 páginas
      • 9 horas de lectura

      Focusing on the advancements in bioethanol technology, this book explores its historical context, chemical properties, and production methods. It examines recent biotechnological breakthroughs and their implications, including environmental impacts and global usage. The updated edition tracks the evolution from first-generation to fourth-generation bioethanol production, addressing challenges and future possibilities. Aimed at those interested in sustainable and biodegradable transportation fuels, it provides a comprehensive overview of the field's developments over the past six years.

      Developments in Bioethanol
    • Environmentally Benign Pulping

      • 108 páginas
      • 4 horas de lectura

      Focusing on environmentally friendly pulping technologies, this book addresses the limitations of traditional chemical processes in the paper industry. It explores alternative approaches to reduce wastewater emissions, emphasizing the use of new raw materials and less polluting pulping methods. Key topics include the application of deep eutectic solvents for lignocellulosic biomass pretreatment and the integration of biotechnological methods to enhance manufacturing efficiency while minimizing toxic pollution and greenhouse gas emissions. This resource is valuable for professionals in related fields.

      Environmentally Benign Pulping