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Investigation into solar drying of potato: effect of sample geometry on drying kinetics and CO2 emissions mitigation

机译:马铃薯太阳能干燥的研究:样品几何形状对干燥动力学和减少CO2排放的影响

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摘要

Drying experiments have been performed with potato cylinders and slices using a laboratory scale designed natural convection mixed-mode solar dryer. The drying data were fitted to eight different mathematical models to predict the drying kinetics, and the validity of these models were evaluated statistically through coefficient of determination (R2), root mean square error (RMSE) and reduced chi-square (χ2). The present investigation showed that amongst all the mathematical models studied, the Modified Page model was in good agreement with the experimental drying data for both potato cylinders and slices. A mathematical framework has been proposed to estimate the performance of the food dryer in terms of net CO2 emissions mitigation potential along with unit cost of CO2 mitigation arising because of replacement of different fossil fuels by renewable solar energy. For each fossil fuel replaced, the gross annual amount of CO2 as well as net amount of annual CO2 emissions mitigation potential considering CO2 emissions embodied in the manufacture of mixed-mode solar dryer has been estimated. The CO2 mitigation potential and amount of fossil fuels saved while drying potato samples were found to be the maximum for coal followed by light diesel oil and natural gas. It was inferred from the present study that by the year 2020, 23 % of CO2 emissions can be mitigated by the use of mixed-mode solar dryer for drying of agricultural products.
机译:已经使用实验室规模设计的自然对流混合模式太阳能干燥机对马铃薯圆筒和切片进行了干燥实验。将干燥数据拟合到八个不同的数学模型以预测干燥动力学,并通过测定系数(R 2 ),均方根误差(RMSE)和降低的系数对这些模型的有效性进行统计评估。卡方(χ 2 )。本研究表明,在所研究的所有数学模型中,改进的Page模型与马铃薯圆柱体和切片的干燥实验数据都非常吻合。已经提出了数学框架来估计食品干燥机的性能,其依据是减少二氧化碳净排放的潜力以及由于用可再生太阳能替代不同的化石燃料而产生的二氧化碳减排的单位成本。对于每种替换的化石燃料,已经估算了混合模式太阳能干燥器制造中包含的CO2排放量的年度CO2总量以及年度CO2减排潜力的净额。发现在干燥马铃薯样品时,减少二氧化碳的潜力和节省的化石燃料的量最大,其次是煤炭,其次是轻柴油和天然气。从目前的研究中可以推断,到2020年,使用混合模式太阳能干燥机干燥农产品可以减少23%的二氧化碳排放。

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