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首页> 外文期刊>Journal of Cleaner Production >Experiments and modelling of potassium release behavior from tablet biomass ash for better recycling of ash as eco-friendly fertilizer
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Experiments and modelling of potassium release behavior from tablet biomass ash for better recycling of ash as eco-friendly fertilizer

机译:片剂生物质灰分中钾释放行为的实验和建模,以更好地回收灰分作为生态肥料

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摘要

Returning of biomass ash as fertilizer to field plays great role in sustainable utilization of biomass as energy. In the fertilizer application, release rate of nutrients from ash should be controlled to avoid nutrients shock to plants. Making ash into briquettes (granulated ash, pellet, tablet) is a good choice to slow down the release rate of nutrients and prevent dust formation. However, experimental or theoretical analysis of the release behavior of nutrient from ash briquette is scarce. In this paper, different sizes (from 06 mm x 2 mm to Phi 15 mm x 5 mm) of tablets of biomass ash were made and their nutrient release behavior was investigated experimentally. Results showed that the release rate of potassium in tablet ash was about 1/20-1/60 of that in the powder ash. And that changing tablet size in the normal size range could not decrease the nutrient release rate to the value required by the norm for slow-release fertilizer. Based on the experiments, the mathematical description of the nutrients release process was established and a Matlab code was written for modelling. The theoretical model was validated and parameters required to make slow release fertilizer from the ash were predicted. It showed that, in order to produce slow release potassic fertilizer, much bigger tablet size (from Phi 15 mm x 5 mm to Phi 210 mm x 70 mm), much lower saturated concentration (from 0.17 to 0.17/14(2) kg/kg water for potassium), or much smaller effective diffusion coefficient (from 3.2 x 10(-10) to 1.6 x 10(-12)) are necessary. The theoretical model can be generalized to describe the release behavior of any nutrient and can be used in the parameters optimization for producing slow/control-release fertilizer. (C) 2017 Elsevier Ltd. All rights reserved.
机译:将生物质灰分作为肥料返还田间,对生物质作为能源的可持续利用具有重要作用。在施肥中,应控制灰分中养分的释放速率,以免养分对植物的冲击。将灰烬制成团块(颗粒状的灰烬,颗粒,片剂)是降低营养物质释放速率并防止粉尘形成的好选择。但是,缺乏对煤灰中养分释放行为的实验或理论分析。本文制备了不同大小(从06 mm x 2 mm到Phi 15 mm x 5 mm)的生物质灰分片剂,并通过实验研究了它们的养分释放行为。结果表明,片状灰中钾的释放速率约为粉状灰中钾的1/20/1/60。在正常大小范围内改变片剂大小不会使营养释放速率降低至缓释肥料规范所要求的值。在实验的基础上,建立了养分释放过程的数学描述,并编写了Matlab代码进行建模。验证了理论模型,并预测了由灰分制备缓释肥料所需的参数。结果表明,为了生产缓释钾肥,片剂的大小要大得多(从Phi 15 mm x 5 mm到Phi 210 mm x 70 mm),饱和浓度要低得多(从0.17到0.17 / 14(2)kg /公斤水(钾水),或者有效扩散系数要小得多(从3.2 x 10(-10)到1.6 x 10(-12))。该理论模型可以用来描述任何养分的释放行为,并且可以用于生产缓释/控释肥料的参数优化。 (C)2017 Elsevier Ltd.保留所有权利。

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