Solubility and physical composition of rice husk ash silica as a function of calcination temperature and duration

IF 1.2 Q4 ENVIRONMENTAL SCIENCES
Ryoko Sekifuji, V. C. Le, M. Tateda, H. Takimoto
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引用次数: 2

Abstract

Purpose The solubility of silica is a key parameter affecting its suitability as a rice fertilizer. Therefore, this study determined the effect of calcination temperature and duration on the physical composition of silica derived from rice husk ash. Method Rice husks were calcined at 100–900 °C for 15–120 min in an electric furnace. The solubility and physical composition of the samples were measured, and the appearance of the calcined rice husk ash was determined via visual observations. Results The appearance of the rice husk ash changed drastically at a calcination temperature of 300 °C. The husk exhibited the whitest color at 500 °C and 120 min of calcination. The solubility of silica in the rice husk ash increased up to a calcination temperature of 500 °C and then started to decrease. The silica in the rice husk ash exhibited a gray zone between the amorphous and crystalline structures. Conclusion For actual field applications of silica derived from rice husk ash as a fertilizer, calcination conditions of 400–800 °C and 15 min are proposed to improve solubility. The optimal calcination temperature should be determined based on the heat recovery efficiency.
稻壳灰二氧化硅的溶解度和物理组成随煅烧温度和时间的变化
目的二氧化硅的溶解度是影响其作为水稻肥料适用性的关键参数。因此,本研究确定了煅烧温度和煅烧时间对稻壳灰制备的二氧化硅物理组成的影响。方法稻壳在电炉中于100-900℃下煅烧15-120 min。测定了样品的溶解度和物理组成,并通过目测测定了煅烧稻壳灰的外观。结果在300℃的煅烧温度下,稻壳灰分的外观发生了很大的变化。在500℃、120 min煅烧时,稻壳呈现出最白的颜色。稻壳灰中二氧化硅的溶解度在煅烧温度为500℃时呈上升趋势,随后开始下降。稻壳灰中的二氧化硅呈现出介于无定形和结晶结构之间的灰色地带。结论稻壳灰二氧化硅作为肥料在实际应用中,建议在400 ~ 800℃、15 min的煅烧条件下提高其溶解度。最佳煅烧温度应根据热回收效率确定。
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来源期刊
CiteScore
2.10
自引率
26.70%
发文量
0
审稿时长
13 weeks
期刊介绍: The International Journal of Recycling of Organic Waste in Agriculture is an open access journal that publishes high-quality solicited and unsolicited articles, in all areas of Recycling of organic waste including: -Solid waste reuse in agriculture -Waste water reuse in agriculture -Utilization of organic wastes: composting -Ways to reduce, reuse and recycle organic waste -Social and economic impact of reduction, reuse and recycling of organic waste in agriculture -Methods to raise the public awareness of recycling and reuse of organic waste in agriculture -Organic waste utilization in animal and poultry nutrition -Urban food waste composting
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