首页> 外文期刊>The Journal of Supercritical Fluids >Oxidative gasification of olive mill wastewater as a biomass source in supercritical water: Effects on gasification yield and biofuel composition
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Oxidative gasification of olive mill wastewater as a biomass source in supercritical water: Effects on gasification yield and biofuel composition

机译:橄榄磨坊废水作为超临界水中生物质来源的氧化气化:对气化产量和生物燃料成分的影响

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In this study the partial oxidation of a biomass source, namely olive mill wastewater (OMW) was investigated in supercritical water. OMW is a by-product obtained in olive oil production and it has a very complex nature that is characterized by a high content of polyphenols and organic compounds. The partial oxidation experiments were carried out at five different reaction temperatures (400,450,500,550 and 600°C) and five different oxygen concentrations (9.11,18.22,45.55,91.10 and 182.20 mmol O2/L) with a reaction time of 30 s, under a pressure of 25 MPa. In addition, various OMW concentrations were tested in order to comprehend the effects on biofuel yield and composition. The gaseous products were generally composed of hydrogen, carbon monoxide, carbon dioxide and C1-C4 hydrocarbons like methane, ethane, propane and propylene. The maximum yield of the obtained gaseous product was 5.55 m~3/kg carbon in OMW with feed total organic carbon (TOC) concentration of 2500 mg/L, at a temperature of 550 °C. At these reaction conditions, the aforementioned product composition was 7.93% for hydrogen, 28.91% for methane, 5.85% for ethane, 0.47% for propane, 0.55% for propylene, 54.04% for carbon dioxide and 0.16% for minor components such as n-butane, i-butane, 1-butene, i-butene, t-2-butene, 1,3-butadiene and nitrogen.
机译:在这项研究中,在超临界水中研究了生物质源(即橄榄厂废水(OMW))的部分氧化。 OMW是在橄榄油生产中获得的副产品,它具有非常复杂的性质,其特征在于多酚和有机化合物的含量很高。在五个不同的反应温度(400,450,500,550和600°C)和五个不同的氧气浓度(9.11,18.22,45.55,91.10和182.20 mmol O2 / L)下进行部分氧化实验,反应时间为30 s,在压力下25 MPa。此外,测试了各种OMW浓度,以了解对生物燃料产量和组成的影响。气态产物通常由氢,一氧化碳,二氧化碳和C1-C4烃如甲烷,乙烷,丙烷和丙烯组成。在550°C下,以OMW为原料,得到的气态产物的最大产量为5.55 m〜3 / kg碳,进料总有机碳(TOC)浓度为2500 mg / L。在这些反应条件下,上述产物组成为氢的7.93%,甲烷的28.91%,乙烷的5.85%,丙烷的0.47%,丙烯的0.55%,二氧化碳的54.04%和次要组分(例如正丁烷)的0.16%。丁烷,异丁烷,1-丁烯,异丁烯,叔-2-丁烯,1,3-丁二烯和氮。

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