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热解温度对废弃大型海藻(裙带菜根)制备生物炭特性及磷酸盐吸附性能的影响。

Influence of pyrolysis temperature on characteristics and phosphate adsorption capability of biochar derived from waste-marine macroalgae (Undaria pinnatifida roots).

机构信息

Center for Water Resources Cycle Research, Korea Institute of Science and Technology, P.O. Box 131, Cheongryang, Seoul 130-650, South Korea.

Environmental Business Team, R&D Division, KG Chemical, Sihwa Industrial Complex 1Da 106, 5, Somanggongwon-ro, Siheung-si, Gyeonggi-do 429-848, South Korea.

出版信息

Bioresour Technol. 2016 Jan;200:1024-8. doi: 10.1016/j.biortech.2015.10.016. Epub 2015 Oct 22.

Abstract

The collected roots of Undaria pinnatifida, the main waste in farming sites, accounting for 40-60% of annual production, was pyrolyzed under temperature ranging from 200 to 800°C to evaluate the influence of pyrolysis temperature on biochar properties and phosphate adsorption capacity. It was confirmed that an increase in the pyrolysis temperature led to a decrease of the yield of biochar, while ash content remained almost due to carbonization followed by mineralization. Elemental analysis results indicated an increase in aromaticity and decreased polarity at a high pyrolysis temperature. When the pyrolysis temperature was increased up to 400°C, the phosphate adsorption capacity was enhanced, while a further increase in the pyrolysis temperature lowered the adsorption capacity due to blocked pores in the biochar during pyrolysis. Finally, a pot experiment revealed that biochar derived from waste-marine macroalgae is a potent and eco-friendly alternative material for fertilizer after phosphate adsorption.

摘要

裙带菜的根是农业生产中的主要废弃物,占年产量的 40-60%。本研究将裙带菜根在 200-800°C 的温度范围内热解,以评估热解温度对生物炭特性和磷酸盐吸附能力的影响。结果表明,随着热解温度的升高,生物炭的产率降低,而灰分含量几乎不变,这是由于碳的碳化和随后的矿化作用。元素分析结果表明,在高温下生物炭的芳香度增加,极性降低。当热解温度升高到 400°C 时,磷酸盐的吸附能力增强,而进一步提高热解温度会降低吸附能力,这是由于在热解过程中生物炭的孔被堵塞。最后,盆栽实验表明,吸附磷酸盐后的废弃海洋大型藻类生物炭是一种有潜力的、环保的肥料替代材料。

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