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基于飞灰制备的沸石特征及其在麻疯树废物快速热解中的催化性能。

Characteristic of fly ash derived-zeolite and its catalytic performance for fast pyrolysis of Jatropha waste.

出版信息

Environ Technol. 2014 Sep-Oct;35(17-20):2254-61. doi: 10.1080/09593330.2014.900118.

DOI:10.1080/09593330.2014.900118
PMID:25145178
Abstract

Fly ash from pulp and paper industries was used as a raw material for synthesizing zeolite catalyst. Main compositions of fly ash consisted of 41 wt%SiO2, 20 wt%Al2O3, 14 wt%CaO, and 8 wt% Fe2O3. High content of silica and alumina indicated that this fly ash has potential uses for zeolite synthesis. Fly ash was mixed with 1-3 M NaOH solution. Sodium silicate acting as silica source was added into the solution to obtain the initial SiO2/Al2O3 molar ratio of 23.9. The mixtures were then crystallized at 160 degrees C for 24 and 72 h. Zeolites synthesized after a long synthesis time of 72 h showed superior properties in terms of high crystallinity, less impurity, and small particle size. The catalytic activities of fly ash-derived zeolites were investigated via fast pyrolysis of Jatropha wastes using analytical pyrolysis-gas chromatograph/mass spectrometer (GC/MS). Pyrolysis temperature was set at 500 degrees C with Jatropha wastes to catalyst ratio of 1:1, 1:5, and 1:10. Results showed that higher amounts of catalyst have a positive effect on enhancing aromatic hydrocarbons as well as decreasing in the oxygenated and N-containing compounds. Zeolite Socony Mobil-5 (ZSM-5) treated with 3 M NaOH at 72 h showed the highest hydrocarbon yield of 97.4%. The formation of hydrocarbon led to the high heating value of bio-oils. In addition, the presence of ZSM-5 derived from fly ash contributed to reduce the undesirable oxygenated compounds such as aldehydes, acids, and ketones which cause poor quality of bio-oil to only 0.8% while suppressed N-compounds to 1.7%. Overall, the ZSM-5 synthesized from fly ash proved to be an effective catalyst for catalytic fast pyrolysis application.

摘要

粉煤灰是从纸浆和造纸工业中回收的,可用作合成沸石催化剂的原料。粉煤灰的主要成分包括 41wt%SiO2、20wt%Al2O3、14wt%CaO 和 8wt%Fe2O3。高含量的二氧化硅和氧化铝表明,这种粉煤灰具有合成沸石的潜在用途。将粉煤灰与 1-3 M NaOH 溶液混合。将硅酸钠作为硅源加入溶液中,得到初始 SiO2/Al2O3 摩尔比为 23.9。然后将混合物在 160℃下晶化 24 和 72 小时。在 72 小时的长合成时间后合成的沸石在高结晶度、低杂质和小颗粒尺寸方面表现出优异的性能。通过使用分析热解-气相色谱/质谱联用仪(GC/MS)对麻疯树废料进行快速热解,研究了粉煤灰衍生沸石的催化活性。热解温度设定为 500℃,麻疯树废料与催化剂的比例为 1:1、1:5 和 1:10。结果表明,更多的催化剂用量对提高芳烃以及降低含氧化合物和含氮化合物有积极影响。用 3 M NaOH 在 72 小时处理的索纳 Mobil-5(ZSM-5)沸石表现出最高的烃产率 97.4%。烃的形成导致生物油具有高热值。此外,粉煤灰衍生的 ZSM-5 的存在有助于减少不良的含氧化合物,如醛、酸和酮,这些物质会导致生物油质量差,仅为 0.8%,同时将氮化合物抑制在 1.7%。总的来说,从粉煤灰中合成的 ZSM-5 被证明是一种有效的催化快速热解应用催化剂。

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