Exploring the Benefits of Rice Husk Waste: Synthesis and Characterization of Biochar and Nanobiochar for Agricultural and Environmental Sustainability
K. Nagaraju, T. N. V. K. V. Prasad, M. V. S. Naidu, M. Sreenivasa Chari, Y. Reddi Ramu, B. Ramana Murthy
International Journal of Environment and Climate Change · pp. 715–725 · Published 9 Jul 2023
10.9734/ijecc/2023/v13i92292Abstract
Rice husk waste is a significant byproduct of rice production in developing countries, with a vast annual production. This waste material has been extensively used as an adsorbent for various substances due to its adsorption capabilities. Biochar, a carbon-rich material produced through pyrolysis of biomass, has gained attention for its diverse applications in agriculture and the environment. In this study, rice husk biochar and nanobiochar were synthesized and characterized to explore their potential benefits for agricultural and environmental sustainability. The biochar was prepared by pyrolysis of rice husk at 500°C in a low-oxygen environment, followed by grinding and sieving. Nanobiochar was obtained by ball milling the biochar particles. The physical and physicochemical properties of both biochar and nanobiochar were evaluated, including bulk density (0.41 and 0.59 Mg m-3), particle density (0.49 and 0.54 Mg m-3), water holding capacity (168.6 and 178.5%), pH (8.4 and 7.3), electrical conductivity (0.31 and 0.45 dS m-1), cation exchange capacity (26.3 and 24.1cmol (p+) kg-1), volatile matter content (21.91 and 18.90%) and particle size distribution. Spectral analysis techniques such as DLS, FTIR, XRD, SEM and EDX were used to examine the size, zeta potential functional groups, crystallinity, porosity and elemental composition of the samples. The results showed that nanobiochar exhibited improved physical characteristics, such as higher porosity and water retention capacity, compared to biochar. The elemental composition and volatile matter content differed between the two materials. Nanobiochar also had significantly smaller particle size (11 nm) and a stable zeta potential. These findings suggest that rice husk nanobiochar has great potential for applications in soil fertility enhancement, adsorption of contaminants and waste management. The study contributes to the understanding of the properties and applications of rice husk waste-derived biochar and nanobiochar, promoting their utilization for sustainable agricultural and environmental practices.
Cited by 26
Selvakumari Govindarajan, Chandramani Periyakaman, Shanthi Mookiah · Biomass and Bioenergy · 2025
Asrori Asrori, Mirza Fathus Syifa Alfarisyi, Ach. Muhib Zainuri · Evrimata: Journal of Mechanical Engineering · 2024
Adewale Tolulope Irewale, Elias Emeka Elemike, Paul Ehimare Aikpokpodion · RSC Sustainability · 2025
Arpitha C H, Chandrika R, Sudisha Jogaiah · 2026
Aimée Giovanna Jerônimo, Kallyandra Amorim, Willams Albuquerque · Journal of Physics and Chemistry of Solids · 2026
Shumin Han, Xing Xing, Runhong Gao · Journal of Molecular Structure · 2026
Josely D. Fernandes, Laysa G. de Souza Laurentino, Lúcia H. G. Chaves · Revista Caatinga · 2025
Asrori Asrori, Ach. Muhib Zainuri · 2025
Vikram Jadhav, Bajirao Ahire, Asha Pawar · Environmental Nanotechnology, Monitoring & Management · 2025
Adewale T. Irewale, Elias E. Elemike, Allabakshi M. Shaik · MRS Advances · 2025
Showing 16 of 26 known citations — external sources report more than can currently be individually listed.
Related research
- Insect Pests in Agriculture Identifying and Overcoming Challenges through IPM — shares topic coverage
- Megaprojects - Socioeconomic and Environmental Dynamics in D. Pedro I-Tamoios Road Axis, São Paulo, Brazil — shares topic coverage
- The Impact of Gender-inclusive Practices on Solid Waste Management in Household Economic — shares topic coverage
- The Imperative Status of Science Reporting on Environmental Sustainability in Rivers State — shares topic coverage
- Properties and Conservation Needs of Wetland Soils along Kaduna River, Northern Guinea Nigeria — shares topic coverage
Article metrics
Real usage data collected on this platform.
0
Page views
0
PDF downloads
0
Outbound clicks
26
Citations
Views by country
Approximate, from request IP at view time — not citizenship or institution. Countries with fewer than 5 views are grouped as "Other".
No views recorded yet.
Traffic sources
Referring site, by host.
No traffic recorded yet.
Views and downloads exclude known bots/crawlers. Citations combines this platform's own DOI-resolved index with each external source's own reported total — see Cited by above for individually listed citing works. Last refreshed 0 seconds ago.