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Cost-effective, low thermo-chemo disperser pretreatment for biogas production potential of marine macroalgae Chaetomorpha antennina

机译:具有成本效益的低热化学分散器预处理技术,可用于海洋大型藻类拟南芥的沼气生产潜力

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摘要

In this study, a novel attempt has been made to generate energy-efficient biomethane from marine macroalgae (Chaetomorpha antennina) by coupling thermochemical liquefaction with a disperser (thermo-chemo disperser (TCD) liquefaction). A temperature of (80 degrees C), pH 11 and disperser g-force of 1613 g were considered optimal parameters for effective solubilization and energy-efficient methane generation. This combinative liquefaction considerably reduced the treatment time and specific energy from 60 to 15 min and 6294 to 800 kJ/kg TS. The highest volatile fatty acids (VFA) accumulation of 890 mg/L was recorded in TCD compared to a thermo disperser (TD) (750 mg/L) and disperser (D) (322 mg/L) during anaerobic fermentation. TCD enhances the methane production potential of macro algal biomass and a higher methane production of 215 mL/g VS was achieved for TCD compared to TD (149 mL/g VS) and D samples (100 mL/g VS), respectively. Cost analysis confirmed the field applicability of TCD liquefaction with a net profit of 90 USD/ton of marine macroalgae. A high energy ratio of 1.5 was achieved with the proposed mode of pretreatment (TCD) compared to TD (0.95) and D (0.28) pretreatment. Therefore, C. antennina is considered a suitable feedstock for methane generation. (C) 2018 Elsevier Ltd. All rights reserved.
机译:在这项研究中,已进行了一种新颖的尝试,即通过将热化学液化与分散剂(热化学分散剂(TCD)液化)耦合,从海洋大型藻类(Chaetomorpha antennina)中生产节能生物甲烷。温度(80摄氏度),pH 11和1613 g分散剂g力被认为是有效溶解和产生高能效甲烷的最佳参数。这种组合液化将处理时间和比能从60减少到15分钟,将比能从6294减少到800 kJ / kg TS。与厌氧发酵过程中的热分散器(TD)(750 mg / L)和分散器(D)(322 mg / L)相比,TCD中记录的最高挥发性脂肪酸(VFA)积累为890 mg / L。 TCD增强了大型藻类生物质的甲烷生产潜力,与TD(149 mL / g VS)和D样品(100 mL / g VS)相比,TCD的甲烷产量更高,达到215 mL / gVS。成本分析证实了TCD液化的现场适用性,每吨海洋大型藻类的净利润为90美元。与TD(0.95)和D(0.28)预处理相比,建议的预处理模式(TCD)达到了1.5的高能量比。因此,C.antennina被认为是适合产生甲烷的原料。 (C)2018 Elsevier Ltd.保留所有权利。

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