Skip to content
Research Article Open access CC BY 4.0

Production and Effectiveness of Amorphous Silica Fertilizer from Rice Husks Using a Sustainable Local Energy System

Masafumi Tateda

Journal of Scientific Research and Reports · pp. 1–12 · Published 19 Oct 2015

10.9734/JSRR/2016/21825

Abstract

Aims: In rice-producing countries, rice husk has long been considered a waste material. This research aimed to establish a sustainable local energy system by combustion of the rice husk, as well as to evaluate the effectiveness of the rice husk ash as silica fertilizer. Study Design: The amorphous silica in the rice husk ash was produced in an actual size (plant-scale) boiler, and the ash was used in pot and field experiments to assess its effectiveness as fertilizer for plant growth. Place and Duration of Study: This study was conducted over a period of four years (2011–2014) at the rice-processing center of a local agriculture association in the Toyama Prefecture, Japan. Methodology: The rice husk was combusted in a boiler under the conditions: 1) burning the rice husk as is, 2) incinerating in an oxygen rich atmosphere, and 3) incinerating at low temperatures of approximately 500–900°C, for heat production and the effectiveness of the rice husk ash as silica fertilizer was evaluated. Results: This study investigated the use of rice husk ash as a silica fertilizer for rice crops, and established a boiler system for rice husk combustion. As the estimated income (97,176 USD) derived from our proposed boiler system is expected to exceed the estimated expenses (81,600 USD), the system could be considered sustainable. An ideal agriculture system is proposed in this study, i.e., the rice harvest is sent to a rice-processing center for milling and the rice husk is combusted in a boiler to produce hot water. The hot water is used in the rice drying process and is piped to greenhouses for heating. Furthermore, the ash generated by the combustion of the rice husk is used effectively in the rice paddies as fertilizer. In the rice fields, the rice plants absorb the silica for growth to produce the rice crop for the next season. Consequently, this farming cycle could be expected to continue indefinitely. Conclusion: The system described in this study could be applied wherever rice is cultivated, to the considerable advantage of the producers.

Rice husk amorphous ash solubility heat recovery sustainable energy.

Cited by 21

The potential of silicate fertilizer for salinity stress alleviation on red rice (Oryza sativa L. ‘Sembada Merah’)

D. Rachmawati, Z. Fatikhasari, M. F. Lestari · IOP Conference Series: Earth and Environment · 2020

Rice wastes for green production and sustainable nanomaterials: An overview

Hussien M AboDalam, Vijay Devra, F. Ahmed · Agri-Waste and Microbes for Production of Sustainable Nanomaterials · 2022

Archive of SID

Ryoko Sekifuji, Le Van Chieu, M. Tateda · 2021

Effects of Compaction on Silica Solubility and Physical Properties of Rice Husk Ash for Fertilizer Use

Ryoko Sekifuji, Le Van Chieu, M. Tateda · Japanese Journal of Water Treatment Biology · 2021

Nanosilica from geothermal sludge using sol-gel method with addition of CTAB surfactants

Imala Septi Cahyani, Agus Prasetya, Himawan Tri Bayu M. P. · AIP Conference Proceedings · 2022

Article metrics

Real usage data collected on this platform.

0

Page views

0

PDF downloads

0

Outbound clicks

21

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.