首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Anaerobic Co-Digestion of table olive debittering & washing Effluent, cattle manure and pig manure in batch and high volume laboratory anaerobic digesters: Effect of temperature
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Anaerobic Co-Digestion of table olive debittering & washing Effluent, cattle manure and pig manure in batch and high volume laboratory anaerobic digesters: Effect of temperature

机译:食用橄榄去苦味和洗菜液的厌氧共消化分批和大容量实验室厌氧消化池中的废水,牛粪和猪粪:温度的影响

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摘要

The prospective of table olive debittering & washing Effluent (DWE) as feed stock wastewater for anaerobic digestion (AD) systems was investigated in batch and continuous systems together with cattle and pig manures. While DWE considered unsuitable for biological treatment methods due to its unbalanced nature, the co-digestion of the wastewaters resulted in a 50% increase in the methane production/gram volatile solids_(added) (CH_4/gVS_(added)), accompanied by 30% phenol reduction and 80% total organic carbon removal (TOC). pH increase during the co-digestion period was not identified as an inhibitory factor and all reactors were able to withstand this operational condition change. Moreover, no volatile fatty acid (VFA) accumulation was observed, indicating that the reactors were not operating under stress-overloading state. Under thermophilic conditions a 7% increase on the TOC removal efficiency was achieved when compared to the mesophilic systems while, under mesophilic conditions phenolic compounds reduction was 10% higher compared to the thermophilic systems.
机译:用分批和连续系统以及牛和猪粪便研究了食用橄榄去苦味和洗涤废水(DWE)作为厌氧消化(AD)系统的原料废水的前景。尽管DWE因其不平衡的特性而被认为不适合生物处理方法,但废水的共消化导致甲烷产量/克挥发性固体(添加)(CH_4 / gVS_(添加))增加了50%,伴随着30减少了90%的苯酚,去除了80%的总有机碳(TOC)。共消化期间pH的升高并未被确定为抑制因素,并且所有反应器都能够承受这种运行条件的变化。此外,未观察到挥发性脂肪酸(VFA)积累,表明反应堆不在应力超载状态下运行。在高温条件下,与中温系统相比,TOC去除效率提高了7%,而在中温条件下,与高温系统相比,酚类化合物的减少量高出10%。

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