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Boosting biogas production from sewage sludge by adding small amount of agro-industrial by-products and food waste residues

机译:通过添加少量的农业工业副产品和食物残渣来促进污水污泥的沼气生产

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摘要

HighlightsAn attempt to boost biogas production of existing digesters at WWTPs is studied.Crude glycerol & food waste could be a promising perspective at WWTPs of Greece.5% addition of FW, GR, SM & CG, increase methane content 4%–8.5%Order for a higher methane production: CG>FW>CW>GR>SM.AbstractIn Greece, in many cities, wastewater treatment plants (WWTPs) operate their own anaerobic digestion (AD) facility in order to treat sewage sludge rather than achieve optimum biogas production. Nowadays, there is a growing interest regarding the addition of other co-substrates in these existing facilities in order to increase gas yield from the biomass. This practice may be possible by adding small amount of co-substrates which will not affect significantly in the designed hydraulic retention time. Nonetheless, the lack of experimental data regarding this option is a serious obstacle. In this study, the effect of co-digestion sewage sludge, with small amount of agro-industrial by-products and food wastes is examined in lab-scale experiments. Specifically, co-digestion of SS and food waste (FW), grape residues (GR), crude glycerol (CG), cheese whey (CW) and sheep manure (SM), in a small ratio of 5–10% (v/v) was investigated. The effect of agro-industrial by-products and food waste residues on biogas production was investigated using one 1L and three 3L lab-scale reactors under mesophilic conditions at a 24-day hydraulic retention time. The biogas production rate reached 223, 259, 406, 572, 682 and 1751 mlbiogas/lreactor/d for 100% SS, 5% SM & 95% SS, 10% CW & 90% SS, 5% FW & 95% SS, 5% FW & 5% CG & 90% SS and 5% CG & 95% SS respectively. Depending on the co-digestion material, the average removal of total chemical oxygen demand (TCOD) ranged between 20% (5% SM & 95% SS) and 76% (5% FW & 5% CG & 90% SS). Reduction in the volatile solids ranged between 26% (5% SM & 95% SS) and 62% (5% FW & 5% CG & 90% SS) for organic loading rates between 0.8kgVSm−3d−1and 2.0kgVSm−3d−1. Moreover, co-digestion improved biogas production from 14% (5% SM & 95% SS) to 674% (5% CG & 95% SS). This work suggests that WWTPs in Greece can increase biogas production by adding other wastes to the sewage sludge without affecting the operation of existing digesters and without requiring additional facilities.
机译: 突出显示 研究了在污水处理厂提高现有沼气池沼气产量的尝试。 粗甘油和食物垃圾可能是一个有前途的观点 添加5%的FW,GR,SM和CG,将甲烷含量提高4%–8.5% 提高甲烷产量的订单:CG> FW> CW> GR> SM。 < / ce:list-item> 摘要 −3 d − 1 和2.0kgVSm − 3 d -1 。此外,共同消化将沼气产量从14%(5%SM和95%SS)提高到674%(5%CG和95%SS)。这项工作表明,希腊的污水处理厂可以通过向污水污泥中添加其他废物来增加沼气的产量,而不会影响现有沼气池的运行,也不需要额外的设施。

著录项

  • 来源
    《Waste Management》 |2018年第1期|605-611|共7页
  • 作者单位

    Laboratory of Natural Resources, Management & Agricultural Engineering, Department of Agriculture, Technological Educational Institute of Crete,Harokopio University, Department of Geography;

    Laboratory of Natural Resources, Management & Agricultural Engineering, Department of Agriculture, Technological Educational Institute of Crete;

    Harokopio University, Department of Geography;

    Harokopio University, Department of Geography;

    Laboratory of Natural Resources, Management & Agricultural Engineering, Department of Agriculture, Technological Educational Institute of Crete;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Wastewater treatment plants; Anaerobic co-digestion; Methane; Bio-energy; Agro-industrial by-products; Food waste;

    机译:废水处理厂;厌氧共消化;甲烷;生物能源;农业工业副产品;食物垃圾;

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