<P>Polycrystalline silicon (commonly called "polysilicon") is the material of choice for photovoltaic (PV) applications. Polysilicon is the purest synthetic material on the market, though its processing through gas purification and decomposition (commonly called "Siemens" process) carries high envir
Solar Silicon Processes: Technologies, Challenges, and Opportunities
β Scribed by Bruno Ceccaroli, Eivind Γvrelid, Sergio Pizzini
- Publisher
- CRC Press, Taylor & Francis Group
- Year
- 2017
- Tongue
- English
- Leaves
- 265
- Category
- Library
No coin nor oath required. For personal study only.
β¦ Synopsis
Polycrystalline silicon (commonly called "polysilicon") is the material of choice for photovoltaic (PV) applications. Polysilicon is the purest synthetic material on the market, though its processing through gas purification and decomposition (commonly called "Siemens" process) carries high environmental risk. While many current optoelectronic applications require high purity, PV applications do not and therefore alternate processes and materials are being explored for PV grade silicon. Solar Silicon Processes: Technologies, Challenges, and Opportunities reviews current and potential future processing technologies for PV applications of solar silicon. It describes alternative processes and issues of material purity, cost, and environmental impact. It covers limits of silicon use with respect to high-efficiency solar cells and challenges arising from R&D activities. The book also defines purity requirements and purification processes of metallurgical grade silicon (MG-Si) and examines production of solar grade silicon by novel processes directly from MG-Si and/or by decomposition of silane gas in a fluidized bed reactor (FBR). Furthermore, the book:
Analyzes past research and industrial development of low-cost silicon processes in view of understanding future trends in this field.
Discusses challenges and probability of success of various solar silicon processes.
Covers processes that are more environmentally sensitive.
Describes limits of silicon use with respect to high-efficiency solar cells and challenges arising from R&D activities.
Defines purity requirements and purification processes of MG-Si.
Examines production of solar grade silicon directly from MG-Si.
π SIMILAR VOLUMES
Plasma processing of materials is a critical technology to several of the largest manufacturing industries in the world - electronics, aerospace, automotive, steel, biomedical, and toxic waste management. This book describes the relationship between plasma processes and the many industrial applicati
<p>This book covers challenges and opportunities related to solar-energy based systems. It covers a wide variety of topics related to solar energy, including applications-based systems such as solar thermal systems that are focused on drying, desalination, space cooling, refrigeration, and processin
<p><span>In solar cell production, metallization is the manufacturing of metal contacts at the surfaces of solar cells in order to collect the photo-generated current for use. Being one of the most expensive steps in solar cell fabrication, it plays both an electrical and an optical role, because th
This book offers broad evidence on how new information and communication technologies (ICT) impact social development and contribute to social welfare. Its aim is to show how new technological solutions may contribute to societyβs welfare by encouraging new βsocially responsibleβ initiatives and pra
<p><p>This book interrogates the ways in which new technological advances impact the thought and practices of humanism. Chapters investigate the social, political, and cultural implications of the creation and use of advanced forms of technology, examining both defining benefits and potential danger