首页> 外文期刊>Journal of material cycles and waste management >Properties and potential use of biochars from residues of two rice varieties, Japanese Koshihikari and Vietnamese IR50404
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Properties and potential use of biochars from residues of two rice varieties, Japanese Koshihikari and Vietnamese IR50404

机译:来自两种稻米品种的残留物,日本Koshihikari和越南IR50404的性质和潜在使用生物脉。

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Converting rice straw or rice husk into biochars is one of the most effective ways to reuse them. This study examined the effect of rice variety and pyrolysis temperature on the properties of biochars, produced from rice straw and rice husk of Koshihikari (a typical rice variety of Japan) and IR50404 (a typical rice variety of Vietnam), in the temperature range from 300 to 800 degrees C. Biochars produced at high pyrolysis temperatures (500 degrees C) showed higher surface area (approximately 3 times) and higher Si content (by more than 15%), but lower H/C and O/C ratios in comparison with biochars produced at lower temperature. With regard to rice variety, Japanese Koshihikari biochars possessed higher Si content (almost 20%), but lower specific surface area and O/C and H/C ratios than Vietnamese IR50404 rice residue biochars. The surface area of Vietnamese-rice-straw biochars at 600 and 700 degrees C was 30% more than Japanese-rice-straw biochars, while the surface area of Vietnamese-rice-husk biochars was slightly more than that of Japanese-rice-husk biochars. Higher Si content in Japanese Koshihikari biochars was predicted as one of the main reasons for the lower surface area in their biochars, due to the higher possibility of pore-filling or blocking by silica.
机译:将稻草或稻壳转化为Biochars是重用它们的最有效的方法之一。本研究检测了水稻品种和热解温度对生物谱的性质的影响,由Koshihikari(典型的日本米兰类)和IR50404(越南典型的稻米品种)产生的稻草和稻壳生产的生物稻草和稻壳,在温度范围内在高热解温度(> 500℃)下产生的300至800℃C.生物脉体(> 500℃)显示出较高的表面积(约3次)和更高的Si含量(超过15%),但较低的H / C和O / C比与较低温度产生的生物触体的比较。关于水稻品种,日本Koshihikari Biochars具有更高的Si含量(近20%),但比越南IR50404米渣生物脉冲米渣生物肢体含量较高,但较低的表面积和o / c和h / c比率。 600和700摄氏度的越南稻草Biochars的表面积比日本稻草生物稻饼多30%,而越南稻壳生物群的表面积略多于日本稻壳生物班。日本Koshihikari Biochars中的较高的Si含量被预测为其生物脉内表面区域的主要原因之一,由于孔隙填充或阻断的可能性较高。

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