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Biogas production from high solids anaerobic co-digestion of food waste, yard waste and waste activated sludge

机译:沼气从高固体厌氧共消化食品废物,院子里的废物和废物活性污泥

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摘要

High-solids anaerobic co-digestion (HS-AcD) has the potential to recover energy and reduce environmental impacts of the organic fraction of municipal solid waste and waste activated sludge. We investigated the impact of substrate to inoculum (S/I) ratios, alkalinity sources (sodium bicarbonate and oyster shells), co-substrate mixing ratios and inoculum acclimation on HS-AcD of food waste, yard waste, and waste activated sludge using batch studies. Long-term HS-AcD performance was evaluated under the optimal conditions through a semi-continuous biodigester study with leachate recirculation. The digester with S/I = 1 using a mixture of crushed oyster shells and sodium bicarbonate as alkalinity sources had the highest methane yields (183 mL CH_4/g VS). Addition of waste activated sludge to food waste and yard waste alleviated acidification (pH 6.86 ± 0.12) during the start-up period, which and improved digester stability. Mixtures with FW/YW/WAS = 0.8:1.7:0.5 had higher methane yields (134±15mL CH_4/gVS) than mixtures with FW/YW/WAS = 1:1:1, but required a longer time (10 days) for self-recovery from volatile fatty acid inhibition. The use of an acclimated inoculum eliminated the lag time during startup and produced 38% higher methane yield. In the semi-continuous biodigester, an average volatile solids reduction of 38% and methane yield of 186 mL/gVS was achieved. Improved performance in the semi-continuous biodigester compared with batch reactors was likely due to leachate recirculation, which can improve mass transfer of substrates to the microbial community. Digestate produced from HS-AcD of waste organics had a 1.7-2.3 fold higher nitrogen, similar phosphorous and 0.2-0.3 fold lower potassium content than commercially available bioorganic fertilizer.
机译:高固体厌氧共消化(HS-ACD)有可能收回能量,减少城市固体废物和废物活性污泥的有机分数的环境影响。我们研究了基质对接种物(S / I)比率,碱度源(碳酸氢钠和牡蛎壳)的影响,对食物废物,院子废物和废物活性污泥的HS-ACD的同族衬底混合比和接种物顺序使用批次学习。通过渗滤液再循环的半连续生物核酯研究在最佳条件下评估长期HS-ACD性能。用S / I = 1的蒸煮器使用碎牡蛎壳和碳酸氢钠作为碱度源的混合物具有最高的甲烷产率(183ml CH_4 / g Vs)。在启动期间添加废物活性污泥与食物废物和围场废物缓解酸化(pH 6.86±0.12),这改善了消化器稳定性。具有FW / YW /的混合物= 0.8:1.7:0.5具有比具有FW / YW / = 1:1:1的混合物的甲烷产率(134±15ml CH_4 / GV),但需要较长的时间(10天)从挥发性脂肪酸抑制中自我回收。使用适应的接种物在启动期间消除了滞后时间,并产生了38%的甲烷产率。在半连续生物硫代酯中,实现了38%的平均挥发性固体和186ml / gvs的甲烷产率。与批量反应器相比,在半连续生物硫代酯中的性能提高了渗滤液再循环,这可以改善底物的质量转移到微生物群落。废物有机物的HS-ACD产生的消化具有1.7-2.3倍的氮,相似的磷和0.2-0.3倍,钾含量低于市售生物无机肥料。

著录项

  • 来源
    《Waste Management》 |2019年第7期|432-439|共8页
  • 作者单位

    Department of Civil & Environmental Engineering University of South Florida 4202 E Fowler Ave ENG 030 Tampa FL 33620 United States;

    Department of Mechanical Engineering University of South Florida 4202 E Fowler Ave ENG 030 Tampa FL 33620 United States;

    Department of Civil & Environmental Engineering University of South Florida 4202 E Fowler Ave ENG 030 Tampa FL 33620 United States;

    Department of Civil & Environmental Engineering University of South Florida 4202 E Fowler Ave ENG 030 Tampa FL 33620 United States Kimley-Horn and Associates INC. 655 N Franklin St#150 Tampa FL 33602 United States;

    Department of Civil & Environmental Engineering University of South Florida 4202 E Fowler Ave ENG 030 Tampa FL 33620 United States Department of Energy & Mineral Engineering Pennsylvania State University 113 Hosler Building State College PA 16802 United States;

    Department of Civil & Environmental Engineering University of South Florida 4202 E Fowler Ave ENG 030 Tampa FL 33620 United States;

    Department of Civil & Environmental Engineering University of South Florida 4202 E Fowler Ave ENG 030 Tampa FL 33620 United States;

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

    Biogas; Biosolids; High-solids anaerobic digestion; Municipal solid waste; Solid state anaerobic digestion;

    机译:沼气;生物溶胶;高固体厌氧消化;城市生活垃圾;固态厌氧消化;
  • 入库时间 2022-08-18 21:49:50

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