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Catalytic hydrothermal gasification of activated sludge

机译:活性污泥催化水热气化

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摘要

this paper, Raney nickel is used as catalyst to gasify activated sludge in near-critical water (NCW) at a temperature range of 320-410°C and a corresponding pressure range of 11.3-28.1 MPa in a batch reac- At 380 °C and with 15 min reaction time, carbon gasification ratios (CGR) increased with increasing catalyst loading and reached 69% at 1.8 g catalyst/g dry sludge. Methane yield also linearly increased with catalyst loading while hydrogen production exhibited a maximum at about 1.5 g catalyst/g dry sludge. The gaseous product in this case consisted of 46% hydrogen, 25% methane and 29% carbon dioxide with trace amounts of carbon monoxide. The amount of generated gas as well as its composition did not change significantly after 30 min; however, increasing the temperature had a positive effect on the total yield up to 380 °C. The addition of sulfur to activated sludge resulted in a significant reduction of the carbon gasification ratio. CGR dropped by about 25% as the sulfur content of the feed increased from 0.8% to 3.0% The deactivation of the catalyst due to hydrothermal sintering was also examined. Raney nickel significantly lost its activity upon pre-exposure to near-critical water at 380 °C for 8 min. This loss in activity had a major impact on methane production where methane yield dropped by six folds to a level similar to the catalyst-free gasification reaction and hydrogen yield was decreased by 50%. The decrease in catalytic activity of Raney nickel was likely due to an increase in average nickel crystallite size caused by hydrothermal sintering.
机译:本文将阮内镍用作催化剂,以间歇式反应在近临界水(NCW)中在320-410°C的温度和相应压力范围11.3-28.1 MPa的条件下气化活性污泥。反应时间为15分钟时,碳气化率(CGR)随着催化剂负载量的增加而增加,在1.8 g催化剂/ g干污泥下达到69%。甲烷的产率也随催化剂的加入量线性增加,而制氢量则显示出最大值,约为每克干污泥1.5克。在这种情况下,气态产物由46%的氢气,25%的甲烷和29%的二氧化碳以及痕量的一氧化碳组成。 30分钟后,产生的气体量及其组成没有明显变化。但是,升高温度对高达380°C的总收率产生积极影响。向活性污泥中添加硫可显着降低碳气化率。随着进料中硫含量从0.8%增加到3.0%,CGR下降了约25%。还研究了由于水热烧结引起的催化剂失活。阮内镍在380°C下暴露于近临界水8分钟后,镍的活性明显下降。这种活性的降低对甲烷的产生有重大影响,其中甲烷的产率下降了六倍,达到与无催化剂气化反应相似的水平,氢气的产率降低了50%。阮内镍的催化活性降低可能是由于水热烧结引起的平均镍微晶尺寸的增加。

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