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ISBN13: | 9780443135293 |
ISBN10: | 04431352911 |
Binding: | Paperback |
No. of pages: | 660 pages |
Size: | 229x152 mm |
Language: | English |
700 |
Biotechnology
Physical chemistry
Crop production
Chemical engineering and industry
Mechanical Engineering Sciences
Civil and construction engineering
Engineering sciences
Environmental sciences
Environmental chemistry
Textiles, leather, clothing and footwear industry
Rubber and plastics industry
Environmental protection
Environmental sciences in general
Bio-polymerized Sulfur for Sustainable Practice in Applied Sciences and Engineering
EUR 140.99
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Bio-polymerized Sulfur for Sustainable Practice in Applied Sciences and Engineering explores innovative approaches in sustainable chemistry by leveraging renewable resources and sulfur as foundational elements for creating sustainable functional materials. The book highlights the potential of bio-polymeric materials derived from sulfur and renewable sources, offering new avenues for environmentally-friendly manufacturing. Additionally, the text delves into lifecycle assessment studies and the principles of a circular economy, emphasizing the importance of sustainability in modern engineering. The work emphasizes the criticality of sustainable practices, highlighting the intersection of bio-polymeric materials and circular economy principles, ultimately guiding the reader towards a more sustainable future.
The book also presents an in-depth analysis of bio-polymerized sulfur's role in promoting sustainable development. It discusses how polymerized sulfur can be used to develop engineered products that align with sustainability goals.
- Introduces the basic principles of bio and sulfur polymerization
- Outlines the methods for conducting lifecycle assessment in the manufacturing of bio polymerized sulfur for use in waste management, agriculture, ground treatment, construction, road infrastructures, and in the production of high functional materials
- Contributes to the achievement of the UN Sustainable Development Goals
- Polymerized sulfur contribution to circular economy
- Sulfur global impacts and its properties
- Bio-based polymeric materials
- Bio-polymerized sulfur
- Greening building construction: The emerging frontier of bio-polymerized sulfur
- Revolutionizing asphalt pavement: harnessing the potential of bio-polymerized sulfur
- Bio-polymerized sulfur: A novel and sustainable ground improvement technology
- Leveraging bio-polymerized sulfur for sustainable farming
- Harnessing the diverse production pathways of bio-polymerized sulfur for advanced waste treatment
- Unleashing the potential: Polymerized sulfur indiverse energy storage applications