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Ultrasound pretreatment of filamentous algal biomass for enhanced biogas production

机译:超声预处理丝状藻类生物质以提高沼气产量

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摘要

The filamentous alga Hydrodictyon reticulatum harvested from a bench-scale wastewater treatment pond was used to evaluate biogas production after ultrasound pretreatment. The effects of ultrasound pretreatment at a range of 10-5000 J/mL were tested with harvested H. reticulatum. Cell disruption by ultrasound was successful and showed a higher degree of disintegration at a higher applied energy. The range of 10-5000 J/mL ultrasound was able to disintegrated H. reticulatum and the soluble COD was increased from 250mg/L to 1000 mg/L at 2500J/mL. The disintegrated algal biomass was digested for biogas production in batch experiments. Both cumulative gas generation and volatile solids reduction data were obtained during the digestion. Cell disintegration due to ultrasound pretreatment increased the specific biogas production and degradation rates. Using the ultrasound approach, the specific methane production at a dose of 40J/mL increased up to 384 mL/g-VS fed that was 2.3 times higher than the untreated sample. For disintegrated samples, the volatile solids reduction was greater with increased energy input, and the degradation increased slightly to 67% at a dose of 50 J/mL. The results also indicate that disintegration of the algal cells is the essential step for efficient anaerobic digestion of algal biomass.
机译:从台式废水处理池中收获的丝状藻网状网藻被用于评估超声预处理后的沼气产量。用收获的网状嗜血杆菌测试了超声预处理在10-5000 J / mL范围内的效果。超声波对细胞的破坏是成功的,并且在较高的施加能量下显示出较高的崩解度。在10-5000 J / mL的超声范围内能够分解网状嗜血杆菌,可溶性COD在2500J / mL时从250mg / L增加到1000 mg / L。分批实验将分解的藻类生物质进行消化以生产沼气。消化过程中同时获得了累积的气体生成量和挥发性固体减少量数据。由于超声预处理而导致的细胞分解增加了特定沼气的产生和降解速率。使用超声方法,进料量为40J / mL时的比甲烷产量增加到384 mL / g-VS,比未处理的样品高2.3倍。对于崩解的样品,随着能量输入的增加,挥发性固体的减少量更大,并且在50 J / mL的剂量下降解量略有增加,达到67%。结果还表明,藻类细胞的分解是藻类生物质高效厌氧消化的必要步骤。

著录项

  • 来源
    《Waste Management》 |2014年第6期|1035-1040|共6页
  • 作者单位

    Department of Civil and Environmental System Engineering, Konkuk University. 120 Neungdong-ro, Gwangjin-gu, Seoul 143-701, Republic of Korea;

    Department of Civil and Environmental System Engineering, Konkuk University. 120 Neungdong-ro, Gwangjin-gu, Seoul 143-701, Republic of Korea;

    Department of Civil and Environmental System Engineering, Konkuk University. 120 Neungdong-ro, Gwangjin-gu, Seoul 143-701, Republic of Korea;

    EPS Solution Ltd., 126-1 Pyeongchon-dong, Dongan-gu, Anyang, Cyeonggi-do 431-755, Republic of Korea;

    Department of Civil and Environmental System Engineering, Konkuk University. 120 Neungdong-ro, Gwangjin-gu, Seoul 143-701, Republic of Korea;

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

    Algae; Biogas production; Hydrodictyon reticulatum; Pretreatment; Ultrasound;

    机译:藻类;沼气生产;网状水dict预处理;超音波;

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