Extremophilic Enzymatic Processing of Lignocellulosic Feedstocks to Bioenergy

·
· Springer
电子书
308
评分和评价未经验证  了解详情

关于此电子书

This book introduces fundamentals of enzymatic processes, various renewable energy resources and their pretreatment processes. It presents in-depth review of extremophilic enzymes (e.g., Cellulases, Xylanases, Lytic Polysaccharide Monooxygenases, Amylases, Ligninases, Pectinases, Esterases, and Chitinases) which can be used in several biotechnological processes. In addition, the authors present expert knowledge on how to engineer enzymes for enhanced conversion of lignocellulosic feedstocks to biofuels.Extremozymes play important roles in many kinds of bioprocessing e.g., in conversion of non-food biomass into usable power. Existing enzymatic technologies, including hydrolysis of lignocellulose into sugars, have several limitations such as they have very slow enzymatic hydrolysis rates, yields low products, requires high dosages of enzymes, and are sensitive to microbial contamination problems. These limitations could be overcome using extremophilic enzymes.

作者简介

Rajesh K. Sani is an Associate Professor in the Department of Chemical and Biological Engineering and Chemistry and Applied Biological Sciences at the South Dakota School of Mines and Technology, South Dakota. He joined the South Dakota School of Mines and Technology as an Assistant Professor in 2006. Prior to this, he worked as a Post-doctoral Researcher and Research Assistant Professor at the Washington State University, Pullman, WA, and focused his research on Waste Bioprocessing. He also served as an Associate Director of NSF Center for Multiphase Environmental Research at the Washington State University. He received his BS in Mathematics from the Meerut University in India, his MS in Enzyme Biotechnology from Devi Ahilya University in India, and his PhD in Environmental Biotechnology from the Institute of Microbial Technology in India.

Due to his interdisciplinary background, Sani has been integrating engineering with biological sciences in his teaching as well research endeavors. For over twelve years, Sani has engaged in a constant endeavor to improve his teaching skills to become an effective instructor and communicator. In Washington State University’s School of Chemical and Bioengineering and Center for Multiphase Environmental Research, he taught a variety of engineering courses including Integrated Environmental Engineering for Chemical Engineers, Bioprocess Engineering, and Current Topics in Multiphase Environmental Research - a team taught interdisciplinary course to undergraduate and graduate students. Over the last nine years at the South Dakota School of Mines and Technology, he has been teaching various science and engineering curses including Microbiology for Engineers, Biochemistry Laboratories, Bioinformatics, Molecular Biology for Engineers, Microbial Genetics, and Microbial and Enzymatic Processing to students of various disciplines of Chemical Engineering, Environmental Engineering, Applied Biological Sciences, Chemistry, Interdisciplinary Studies, Biology, Medical, and Paleontology. Sani has received several awards including the outstanding student research (India), Department of Biotechnology Scholarship (India), the Council of Scientific and Industrial Research (India), and Science and Technology Agency (Japan).

Sani group’s research includes extremophilic bioprocessing of lignocellulose-based renewables for biofuels and bioproducts and bioprospecting of extremophilic microorganisms for developing more efficient and cost-effective biofuel (bioenergy) production technologies. Over the past 11 years, he has been the PI or co-PI on over $12 million in funded research. Several of his accomplishments in research and advising include: i) Postdocs supervised (7); ii) Graduate students supervised (MS students, 10 and PhD, 6), and iii) Undergraduate students and K12 teachers supervised (over 35). He has one patent, five invention disclosures, and published over 55 peer-reviewed articles in high impact factor journals, and has contributed in several book chapters. He is currently acting as editor and co-editor for three text books which will be published by Springer International Publishing AG. In addition, he has been a proposal reviewer and panelist for the Federal Agencies i) National Science Foundation, ii) U.S. Army Research Office, iii) Department of Energy, iv) U.S. Geological Survey, and v) User Facility - Environmental Molecular Sciences Laboratory. He also serve the Industrial Microbiology profession as “Biocatalysis Program Committee Member” of the Society for Industrial Microbiology and Biotechnology (SIMB), technical session chair at the Annual American Institute of Chemical Engineers (AIChE) and SIMB, an associate editor.

R.Navanietha Krishnaraj is currently a B-ACER fellow and Research Professor at the Department of Chemical and Biological Engineering, South Dakota School of Mines and Technology, USA. Prior to this, he worked at the Department of Biotechnology, National Institute of Technology Durgapur, India. He received his B.Tech in Biotechnology and PhD in Chemical Engineering in the field of microbial fuel cells from the CSIR—Central Electrochemical Research Institute, Karaikudi, India. He recently received the prestigious Bioenergy Award for Cutting Edge Research (B-ACER) from the Department of Biotechnology, Government of India, and the Indo-U.S. Science and Technology Forum. His areas of research interest include bioelectrocatalysis and bioenergy. He has taught bioinformatics and computational biology courses to undergraduate students. He is a life member of several renowned professional societies. He is the faculty advisor for the Indian Society for Technical Education, Durgapur Chapter.

为此电子书评分

欢迎向我们提供反馈意见。

如何阅读

智能手机和平板电脑
只要安装 AndroidiPad/iPhone 版的 Google Play 图书应用,不仅应用内容会自动与您的账号同步,还能让您随时随地在线或离线阅览图书。
笔记本电脑和台式机
您可以使用计算机的网络浏览器聆听您在 Google Play 购买的有声读物。
电子阅读器和其他设备
如果要在 Kobo 电子阅读器等电子墨水屏设备上阅读,您需要下载一个文件,并将其传输到相应设备上。若要将文件传输到受支持的电子阅读器上,请按帮助中心内的详细说明操作。