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Effect of Biochar Addition and Temperature on Hydrogen Production from the First Phase of Two-Phase Anaerobic Digestion of Carbohydrates Food Waste

机译:生物炭加入和温度对碳水化合物食品废弃物两相厌氧消化第一阶段的氢气产生的影响

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This paper reports an experimental study of the effect of biochar addition and temperature on hydrogen production in the first phase of the two-phase anaerobic digestion (TPAD) of carbohydrates food waste. Anaerobic digestion experiments using white bread as a representative of carbohydrate food wastes were conducted in bench scale 100 ml reactors. The cultures with biochar addition were placed in the reactors and incubated at different temperatures (18, 35 and 52 °C) over a period of 8 days. The biochar addition ratio was varied from 0 to 18.6 g.l~(-1). The daily volumetric hydrogen production was measured, and the cumulative yield (Y_H) and daily production rate (R_H) of hydrogen were calculated. Both biochar addition and temperature affected hydrogen production significantly. Y_H and maximum R_H increased as the biochar addition ratio increased from 0 to 10 g.l~(-1), then decreased as the biochar addition ratio further increased up to 18.6 g.l~(-1). At different temperatures, Y_H varied significantly, increasing from 846±18 ml.l~(-1) at 18 °C to 1424±79 ml.l~(-1) at 35°C and dropped to 1149±26 ml.l~(-1) at 52 °C. The maximum R_H also peaked at 35°C, reaching 858±57.1 ml.l~(-1).day~(-1). The effect of biochar was more profound under mesophilic conditions. The results of this study confirmed the beneficial effect of biochar addition in hydrogen production of carbohydrate food waste in the TPAD process.
机译:本文报道的生物炭加入在氢气生产的碳水化合物食品废物的两相厌氧消化(TPAD)的第一阶段的影响,温度的实验研究。使用白面包碳水化合物食物废物的代表性厌氧消化实验在实验室规模100毫升反应器中进行。与生物炭除了将培养物放置在反应器中,并在一段8天不同的温度(18,35和52℃)温育。生物炭添加率从0变化到18.6 G.L〜(-1)。每日体积制氢进行测定,并计算氢的累积产率(Y_H)和日常生产速率(R_H)。两个生物炭加法和温度显著影响制氢。 Y_H和最大R_H随着生物碳添加比例从0增加至10 G.L〜(-1),则随着所述生物炭添加率进一步提高至18.6 G.L〜(-1)。在不同温度下,Y_H显著变化,从846±18 ml.l〜18(-1)℃至1424±79 ml.l〜(-1),在35℃增加,下降到1149个±26 ml.l 〜(-1)在52℃。最大R_H也达到峰值,在35℃,达到858±57.1 ml.l〜(-1)·天〜(-1)。生物炭的作用是温条件下,更加深刻。这项研究的结果证实了生物炭除了在产氢的过程TPAD碳水化合物的食物垃圾的有益作用。

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