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首页> 外文期刊>Acta Technologica Agriculturae >An Assessment of Anaerobic Thermophilic Co-Digestion of Dairy Cattle Manure and Separated Tomato Greenhouse Waste in Lab-Scale Reactors
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An Assessment of Anaerobic Thermophilic Co-Digestion of Dairy Cattle Manure and Separated Tomato Greenhouse Waste in Lab-Scale Reactors

机译:实验室规模反应器中奶牛粪便和分离的番茄温室废料厌氧高温共消化的评估

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Anaerobic co-digestion of dairy cow manure (DCM) and separated tomato greenhouse waste (tomato stalks and leaves (TSL) and rotten and damaged tomato fruits – TF) was conducted under batch thermophilic conditions ( T = 55 °C) for period of 45 days. Concentrations of substrates (tomato waste) were 5 and 10% (w/v). Each substrate, as well as experimental mixtures, was analysed in order to specify the content of pH, total solids (TS), volatile solids (VS), total extractable nitrogen (TN) and total organic carbon (TOC). Biogas yield and composition, as well as cumulative biogas curves, were reported. In comparison to DCM monodigestion (329.5 cmsup3/sup·gsup?1/sup VS), biogas yield was significantly improved in experiment C (365.1 cmsup3/sup·gsup?1/sup VS) (with 5% (w/v) TF added), whereas methane yield did not show any significant difference. Experiment D (with 10% (w/v) TSL added) resulted in significantly lower biogas and methane yields in contrast to the rest of experiments performed. Average methane content in all analysed experimental samples ranged from 65 to 69%. It is evident from the results that biogas production can be improved by addition of separated tomato greenhouse waste to DCM process and issue of organic waste disposal could be effectively solved.
机译:在分批高温条件下(T = 55°C)对奶牛粪便(DCM)和分离的番茄温室废物(番茄茎和叶(TSL)以及腐烂和损坏的番茄果实– TF)进行厌氧消化,时间为45天。底物(西红柿废料)的浓度为5%和10%(w / v)。分析每种底物以及实验混合物,以指定pH值,总固体(TS),挥发性固体(VS),总可萃取氮(TN)和总有机碳(TOC)的含量。报告了沼气产量和组成,以及累积沼气曲线。与DCM单消化(329.5 cm 3 ·g ?1 VS)相比,实验C的沼气产量显着提高(365.1 cm 3 · g ?1 VS)(添加了5%(w / v)TF),而甲烷收率没有显着差异。与其余的实验相反,实验D(添加了10%(w / v)TSL)导致沼气和甲烷的产率大大降低。所有分析过的实验样品中的平均甲烷含量为65%至69%。从结果可以明显看出,通过将分离的番茄温室废物添加到DCM工艺中可以改善沼气生产,并且可以有效解决有机废物处理的问题。

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