Advances in Manufacturing of Carbon-based Molecular Nanomaterials Based on Rice Husk/hull Waste

Authors

  • Padmanabhan Rengaiyah Govindarajan Department of Mechanical Engineering, Arasu Engineering College, Kumbakonam, 612501, Tamil Nadu, India
  • Joseph Arockiam Antony Department of Mechanical Engineering, Arasu Engineering College, Kumbakonam, Thanjavur (DT) – 612501, Tamil Nadu, India
  • Sivasubramanian Palanisamy Department of Mechanical Engineering, PTR College of Engineering and Technology, Austinpatti, Madurai, 625008, Tamil Nadu, India https://orcid.org/0000-0003-1926-4949
  • Nadir Ayrilmis Department of Wood Mechanics and Technology, Faculty of Forestry, Istanbul University – Cerrahpasa, Bahcekoy, Sariyer, 34473, Istanbul, Turkey
  • Tabrej Khan Department of Engineering and Management, College of Engineering, Prince Sultan University, Riyadh, 11586, Saudi Arabia
  • Harri Junaedi Department of Engineering Management, College of Engineering, Prince Sultan University, Riyadh- 11586, Saudi Arabia
  • Tamer Ali Sebaey Department of Engineering and Management, College of Engineering, Prince Sultan University, Riyadh, 11586, Saudi Arabia; Department of Mechanical Design and Production Engineering, Faculty of Engineering, Zagazig University, Zagazig 44519, Sharkia, Egypt

Keywords:

Rice-husk, Biomass, Nanomaterial, Nanostructures, Carbon, Application

Abstract

This review highlights potential application areas for carbon-based molecular nanoparticles, such as carbon dots, carbon nanotubes, graphene quantum dots, and carbon quantum dots. The success of nano-manufacturing hinges on robust collaboration between academia and industry to advance applicable manufacturing techniques. Choosing the right approach is crucial, one that integrates the carbon base of nanomaterials with the required properties and impurities, as well as the scalability of the process. Molecular, in this context, refers to the nanoscale carbon structures that form the basis of these materials, including their arrangement, bonding, and properties at the molecular level. The article also explores the characterization of different types of molecular nanomaterials. Nanomaterials are increasingly used in almost every contemporary industry, including construction, textiles, manufacturing, and computing. This article reviews the most prominent sectors globally that employ nanomaterials. Biomasses containing lignin, cellulose, and hemicellulose have become some of the most extensively studied. Initially, rice waste was utilized for bulk materials, but lately, the production of multifunctional materials has surged in interest. Carbon nanostructures derived from rice waste offer a broad spectrum of applications and enhanced biocompatibility. Recent advancements, challenges, and trends in the development of multifunctional carbon-based nanomaterials from renewable rice waste resources are considered.

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Published

2024-08-22 — Updated on 2024-10-31

How to Cite

Rengaiyah Govindarajan, P., Arockiam Antony, J., Palanisamy, S., Ayrilmis, N., Khan, T., Junaedi, H., & Sebaey, T. A. (2024). Advances in Manufacturing of Carbon-based Molecular Nanomaterials Based on Rice Husk/hull Waste. BioResources, 19(4), 9834–9852. Retrieved from https://ojs.bioresources.com/index.php/BRJ/article/view/23716

Issue

Section

Scholarly Review