High-solid and Multi-phase Bioprocess Engineering High-solid and Multi-phase Bioprocess Engineering
Green Chemistry and Sustainable Technology

High-solid and Multi-phase Bioprocess Engineering

Theory and Practice

    • 97,99 €
    • 97,99 €

Publisher Description

This book provides a comprehensive description of theories and applications of high-solid and multi-phase bioprocess engineering, which is considered as an important way to address the challenges of "high energy consumption, high pollution and high emissions" in bio-industry. It starts from specifying the solid-phase matrix properties that contribute to a series of “solid effects” on bioprocess, including mass transfer restrictions in porous media, water binding effects, rheological changes. Then it proposes the new principles of periodic intensification which combines the normal force and physiologic characteristics of microorganism for the bioprocess optimization and scale-up. Further breakthroughs in key periodic intensification techniques such as periodic peristalsis and gas pressure pulsation are described in detail which provide an industrialization platform and lay the foundation for high-solid and multi-phase bioprocess engineering. This book offers an excellent reference and guide for scientists and engineers engaged in the research on both the theoretical and practical aspects of high-solid and multi-phase bioprocess.

GENRE
Professional & Technical
RELEASED
2018
21 May
LANGUAGE
EN
English
LENGTH
371
Pages
PUBLISHER
Springer Nature Singapore
PROVIDER INFO
Springer Science & Business Media LLC
SIZE
9.5
MB
Gas Explosion Technology and Biomass Refinery Gas Explosion Technology and Biomass Refinery
2015
Biotechnology of Lignocellulose Biotechnology of Lignocellulose
2014
Modern Solid State Fermentation Modern Solid State Fermentation
2013
MXenes for Sustainable Development MXenes for Sustainable Development
2025
Artificial Intelligence Applications for a Sustainable Environment Artificial Intelligence Applications for a Sustainable Environment
2025
Sustainable Radiation Technologies in Waste-biomass Valorization Sustainable Radiation Technologies in Waste-biomass Valorization
2024
Advances in CO2 Utilization Advances in CO2 Utilization
2024
Pyrochlore Oxides Pyrochlore Oxides
2023
Bioethanol Production Bioethanol Production
2022