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Influence of H2O2 and Ni catalysts on hydrogen production and PAHs inhibition from the supercritical water gasification of dewatered sewage sludge

机译:H2O2和Ni催化剂对脱水污水污泥超临界水气化氢生产和PAHS抑制的影响

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摘要

Dewatered sewage sludge was treated with H2O2 and/or Ni in supercritical water in a high-pressure autoclave (400 degrees C, 23MPa, 60 min). The combined application of H2O2 and Ni was more effective than applying each separately for hydrogen production and for inhibiting the formation of polycyclic aromatic hydrocarbons (PAHs). The hydrogen yield (0.79-1.28 mol/kg organic matter) of combined additives with different Ni:H2O2 ratios was 21% to 35% higher than the calculated value of the hydrogen yield from the mixture. The Ni:H2O2 ratio affected the ring number composition of PAHs (proportion of 4-6 ring PAHs increased from 13% to 44% with increasing Ni:H2O2 ratio) considerably, but had little effect on the concentration of PAHs. The mechanisms of the Ni/H2O2 additive were also investigated from the viewpoint of combined action and intermediates. Overall, the method developed herein has the potential to promote hydrogen production in an environmentally compatible manner.
机译:在高压高压釜中用H 2 O 2和/或Ni处理脱水污水污泥(400℃,23MPa,60分钟)。 H 2 O 2和Ni的组合施用比分别用于施加氢生产和抑制多环芳烃(PAH)的形成更有效。 氢产率(0.79-1.28mol / kg有机物)与不同Ni:H 2 O 2比的组合添加剂为21%至35%高于来自混合物的氢氢产率的计算值。 Ni:H 2 O 2的比例影响了PAH的环数组成(4-6个环PAH的比例从13%增加到44%,随着Ni:H 2 O 2的增加而增加,但对PAHs的浓度几乎没有影响。 从组合作用和中间体的观点来看,还研究了Ni / H 2 O 2添加剂的机制。 总体而言,本文开发的方法具有以环境相容的方式促进氢生产的可能性。

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