论文标题

连续热液液化的高度硝基生物辐射的两阶段催化水理:稳定阶段的合理设计

Two-stage catalytic hydrotreatment of highly nitrogenous biocrude from continuous hydrothermal liquefaction: A rational design of the stabilization stage

论文作者

Haider, Muhammad Salman, Castello, Daniele, Rosendahl, Lasse Aistrup

论文摘要

探索了探索源自原代污水污泥和Microalga Spirulina Biomass的水热液化(HTL)的高度硝基生物涂线的有效催化水理。一个关键的问题是在严重的条件下(〜400°C)缺乏原始HTL生物侵蚀的热稳定性。这一事实表明需要采用两阶段的方法,涉及第一个低温稳定阶段,然后在较高温度下进行另一个方法。在这项研究中,DSC成功地用于指示这两种生物的热稳定性。在氢化过程中,观察到在350°C的第一阶段已经实现了完全的脱氧,而焦炭形成有限。此外,在第二阶段中,两种生物均获得了与较高的氢消耗相关的92%的硝化作用(螺旋藻的39.9 g kg -1和36.9 g kg -1,用于污水污泥)。因此,与在400°C下的直接加工(螺旋藻为9.1%,污水污泥为3.4%)相比,在两个阶段升级期间记录了可比较的油产量,但可比的焦炭产量明显降低(螺旋藻为1.0%,污水污泥为0.7%)。另外,通过在第一阶段(分别为310°C,330°C和350°C)升高温度来增强升级的油的性能。最后,结果表明,在两个阶段的氢化过程中,相对于杂原子(O和N)的去除,HHV和H/C比显着下降。因此,提出了两阶段的水力处理,作为一种成功的方法,用于升级具有高氮含量的HTL Biocrudes。

Effective catalytic hydrotreatment of highly nitrogenous biocrudes derived from the hydrothermal liquefaction (HTL) of primary sewage sludge and microalga Spirulina biomass was explored. A critical issue is the lack of thermal stability of raw HTL biocrudes at the severe conditions (~400 °C) required for hydrodenitrogenation. This fact suggests the need for a two-stage approach, involving a first low-temperature stabilization stage followed by another one operated at higher temperature. In this study, DSC was successfully used to indicate the thermal stability of both biocrudes. During hydrotreating, it was observed that complete deoxygenation was already achieved in the first stage at 350 °C, with limited coke formation. Moreover, after second stage up to 92% denitrogenation associated with the higher hydrogen consumption (39.9 g kg -1 for Spirulina and 36.9 g kg -1 for sewage sludge) was obtained for both biocrudes. Consequently, comparable oil yields but significantly less coke yields were recorded during two stage upgrading (1.0% for Spirulina and 0.7% for sewage sludge), compared to direct processing at 400 °C (9.1% for Spirulina and 3.4% for sewage sludge). In addition, the properties of the upgraded oils were enhanced by increasing the temperature in the first stage (310 °C, 330 °C and 350 °C respectively). Finally, the results indicated that remarkable drop in fuel properties were obtained, with respect to heteroatom (O and N) removal, HHV, and H/C ratio during the two stage hydrotreatment. Two-stage hydrotreating is therefore proposed as a successful approach for the upgrading of HTL biocrudes with high nitrogen content.

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