首页> 外文会议>Petroleum Phase Behavior and Fouling International Conference >Simultaneous Removal of Toluene (Mode! Tar), NH3, and H2S, from Biomass-Generated Producer Gas Using Biochar-Based and Mixed-Metal Oxide Catalysts
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Simultaneous Removal of Toluene (Mode! Tar), NH3, and H2S, from Biomass-Generated Producer Gas Using Biochar-Based and Mixed-Metal Oxide Catalysts

机译:使用Biochar基和混合金属氧化物催化剂同时从生物质产生的生产者气体中除去甲苯(模式!焦油),NH3和H2S

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Effectiveness of four catalysts (biochar, activated carbon, acidic surface activated carbon, and mixed metal oxide) was studied for simultaneous removal of toluene, NH3, and H2S from biomass-generated producer gas. NH3 (0.03%), H2S (0.015%), and toluene at a flow rate of 2 mL/h were mixed with a synthetic producer gas composition (H2: 8.5%, N2: 58%, CO: 17%, CH4: 2%, and CO2: 11%) and passed over a catalyst bed in a fixed-bed reactor tube maintained at 800 °C. Results indicate that simultaneous removal of contaminants from producer gas is feasible using hiochar-based catalysts. High surface area mixed metal oxides synthesized using microwave and ultrasonication were also effective for simultaneous removal of contaminants. Among the four catalysts, addic surface activated carbon resulted in the highest toluene removal efficiency of 97.5% and highest breakthrough time of 145 min for NH3. For H2S removal, mixed metal oxides resulted iri the highest breakthrough time of 105 min. For simultaneous removal of toluene, H2S and NH3, activated carbon showed good removal capacity (91% toluene removal efficiency; NH3 adsorption capacity of 0.03g-NH3/g-activated carbon; H2S adsorption capacity of 0.008 g-H2S/g-activated carbon), whereas biochar had moderate removal capacity (86% toluene removal efficiency; NH3 adsorption capacity of 0.008 g-NH3/g-biochar; H2S adsorption capacity of 0.008 g-H2S/g-biochar).
机译:研究了四种催化剂(生物炭,活性炭,酸性表面活性炭和混合金属氧化物)的有效性,用于同时除去生物质产生的生产者气体的甲苯,NH3和H2。与合成生产者气体组合物混合NH 3(0.03%),H 2 S(0.015%)和甲苯,与合成生产的气体组合物(H2:8.5%,N 2:58%,CO:17%,CH 4:2 %,CO 2:11%)并在固定床反应器管中通过催化剂床,保持在800℃。结果表明,使用基于Hiochar基催化剂,同时去除生产者的污染物是可行的。使用微波和超声处理合成的高表面积混合金属氧化物也有效地同时去除污染物。在四种催化剂中,加性表面活性炭在NH 3中最高甲苯去除效率为97.5%,最高突破时间为145分钟。对于H 2 S去除,混合金属氧化物导致IRI最高突破时间105分钟。用于同时除去甲苯,H 2 S和NH 3,活性炭显示出良好的去除能力(91%甲苯去除效率; NH 3吸附容量为0.03g-NH3 / G-活性炭; H2S吸附容量为0.008g-H2S / G活性炭),而Biochar具有中度去除能力(86%甲苯去除效率; NH 3吸附容量为0.008g-NH3 / G-BioChON; H2S吸附容量为0.008g-H2S / G-Biochar)。

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