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利用新型多金属催化剂从废汽车催化转化器中制备生物油及其升级的海洋生物质热解。

Pyrolysis of marine biomass to produce bio-oil and its upgrading using a novel multi-metal catalyst prepared from the spent car catalytic converter.

机构信息

School of Chemistry, College of Science, University of Tehran, Tehran, Iran.

School of Chemistry, College of Science, University of Tehran, Tehran, Iran.

出版信息

Bioresour Technol. 2018 Feb;249:473-478. doi: 10.1016/j.biortech.2017.10.017. Epub 2017 Oct 7.

Abstract

In order to reduce the economic and environmental consequences caused by spent car catalyst, we herein report for the first time a novel promising multi-metal catalyst prepared from spent car catalytic converters to upgrade the pyrolysis bio-oils. The physico-chemical properties of prepared catalyst were characterized by XRD, EDS, FESEM, and FT-IR analyses. The thermal stability of the multi-metal catalyst was studied with TGA. To investigate the activity of the catalyst, Conversion of Cladophora glomerata (C. glomerata) into bio-products was carried out via a fixed bed reactor with and without catalyst at the temperature of 500°C. Although the catalyst didn't catalyze the gasification reaction, bio-oil was upgraded over the catalyst. The main effect of the catalyst on the bio-oil components is deoxygenating of nitrogen compounds and promotion the ketonization reaction, which converts acid to ketone and declines the corrosive nature of bio-oil.

摘要

为了降低废汽车催化剂造成的经济和环境后果,我们首次报道了一种由废汽车催化转化器制备的新型多金属催化剂,用于升级热解生物油。通过 XRD、EDS、FESEM 和 FT-IR 分析对制备的催化剂的物理化学性质进行了表征。通过 TGA 研究了多金属催化剂的热稳定性。为了考察催化剂的活性,在 500°C 下,在有无催化剂的情况下,通过固定床反应器将胶须藻(Cladophora glomerata)转化为生物产物。虽然催化剂没有催化气化反应,但生物油在催化剂上得到了升级。催化剂对生物油成分的主要作用是脱除含氮化合物和促进酮化反应,将酸转化为酮,降低生物油的腐蚀性。

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