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首页> 外文期刊>Marine Drugs >Anaerobic Digestion of Laminaria japonica Waste from Industrial Production Residues in Laboratory- and Pilot-Scale
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Anaerobic Digestion of Laminaria japonica Waste from Industrial Production Residues in Laboratory- and Pilot-Scale

机译:实验室和中试规模的工业生产残留物对海带垃圾的厌氧消化

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The cultivation of macroalgae to supply the biofuel, pharmaceutical or food industries generates a considerable amount of organic residue, which represents a potential substrate for biomethanation. Its use optimizes the total resource exploitation by the simultaneous disposal of waste biomaterials. In this study, we explored the biochemical methane potential (BMP) and biomethane recovery of industrial Laminaria japonica waste (LJW) in batch, continuous laboratory and pilot-scale trials. Thermo-acidic pretreatment with industry-grade HCl or industrial flue gas condensate (FGC), as well as a co-digestion approach with maize silage (MS) did not improve the biomethane recovery. BMPs between 172 mL and 214 mL g−1 volatile solids (VS) were recorded. We proved the feasibility of long-term continuous anaerobic digestion with LJW as sole feedstock showing a steady biomethane production rate of 173 mL g−1 VS. The quality of fermentation residue was sufficient to serve as biofertilizer, with enriched amounts of potassium, sulfur and iron. We further demonstrated the upscaling feasibility of the process in a pilot-scale system where a CH4 recovery of 189 L kg−1 VS was achieved and a biogas composition of 55% CH4 and 38% CO2 was recorded.
机译:为供应生物燃料,制药或食品工业而种植的大型藻类会产生大量有机残留物,这代表了生物甲烷化的潜在底物。它的使用通过同时处理废弃生物材料来优化总资源开发。在这项研究中,我们通过分批,连续实验室和中试规模的试验探索了工业海带废料(LJW)的生化甲烷潜力(BMP)和生物甲烷回收率。用工业级HCl或工业烟气冷凝物(FGC)进行热酸预处理,以及与玉米青贮饲料(MS)共同消化的方法不能提高生物甲烷的回收率。记录了172 mL和214 mL g -1 挥发性固体(VS)之间的BMP。我们证明了以LJW作为唯一原料进行长期连续厌氧消化的可行性,显示出稳定的生物甲烷产率为173 mL g -1 VS。发酵残渣的质量足以用作生物肥料,其中富含钾,硫和铁。我们进一步证明了该工艺在中试规模系统中的规模升级可行性,该系统的CH 4 回收量为189 L kg -1 VS,沼气成分为55%记录了CH 4 和38%CO 2

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