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Anaerobic batch digestion of solid potato waste alone and in combination with sugar beet leaves

机译:单独或与甜菜叶组合进行厌氧分批消化固体马铃薯废物

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The objective of this study was to characterise anaerobic batch biodegradation of potato waste alone and when co-digested with sugar beet leaves. The effects of increasing concentration of potato waste expressed as percentage of total solids (TS) and the initial inoculum-to-substrate ratio (ISR) on methane yield and productivity were investigated. The ISRs studied were in the range 9.0-0.25 and increasing proportions of potato waste from 10% to 80% of TS. A maximum methane yield of 0.32 1 CH_4/g VS_(degraded) was obtained at 40% of TS and an ISR of 1.5. A methane content of up to 84% was obtained at this proportion of potato waste and ISR. Higher ISRs led to faster onset of biogas production and higher methane productivity. Furthermore, co-digestion of potato waste and sugar beet leaves in varying proportions was investigated at constant TS. Co-digestion improved the accumulated methane production and improved the methane yield by 31-62% compared with digestion of potato waste alone.
机译:这项研究的目的是表征单独和与甜菜叶一起消化时马铃薯废弃物的厌氧分批生物降解。研究了以总固体百分比(TS)和初始接种物与底物之比(ISR)表示的马铃薯废物浓度增加对甲烷产量和生产率的影响。研究的ISR在9.0-0.25范围内,并将马铃薯废物的比例从TS的10%增加到80%。在40%的TS和1.5的ISR下,最大甲烷产量为0.32 1 CH_4 / g VS_(降解)。在此比例的马铃薯废物和情监侦中,甲烷含量高达84%。较高的ISR导致更快地开始生产沼气和提高甲烷生产率。此外,在恒定TS下研究了不同比例的马铃薯废料和甜菜叶的共消化。与单独消化马铃薯废物相比,共消化提高了甲烷的累积产量,并使甲烷产率提高了31-62%。

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