Effect of nano-metal oxides types on oil sludge during microwave pyrolysis

Xingyuan Chen, L. Wang, Xiangpeng Wang, Ruixuan Wang, Wentao Su
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引用次数: 1

Abstract

In this paper, based on the analysis of oil sludge composition and environmental hazards, the microwave catalytic pyrolysis of oil sludge for recovering combustible gas and chain hydrocarbon light oil disposal process, is proposed to perform the recycling of oil sludge and reduce the risk of environmental pollution. In order to improve the yield of combustible gas and light oil in oil sludge pyrolysis, the impact of adding four catalysts (nano-CuO, nano-NiO, nano-MgO, and nano-γ-Al 2 O 3 ) on the heating characteristics of oil sludge and the composition and quality of products during microwave pyrolysis, were experimentally studied and analyzed. The results show that the catalyst can increase the heating rate of sludge and the yield of pyrolysis oil and gas. The increasing order of heating is: nano-CuO > nano-γ-Al 2 O 3 > nano-MgO > nano-NiO > blank group. Compared with the blank group, the content of combustible gas (H 2 + CH 4 + CO) increases by 18.824wt% (MgO), 4.511wt% (CuO), 9.28wt% (NiO), and 16.164wt% (γ-Al 2 O 3 ), respectively. It can be deduced that nano-metal oxide catalysts, especially γ-Al 2 O 3 , can promote the decomposition of oil sludge, improve the content of low carbon straight chain hydrocarbons and alcohols, and improve the quality of pyrolysis oil products.
微波热解过程中纳米金属氧化物类型对油泥的影响
本文在分析油泥组成及环境危害的基础上,提出采用微波催化热解油泥回收可燃气体及链式烃轻油处置工艺,对油泥进行资源化利用,降低环境污染风险。为了提高油泥热解过程中可燃气体和轻质油的产率,实验研究和分析了在微波热解过程中添加纳米cuo、纳米nio、纳米mgo和纳米γ- al 2o3四种催化剂对油泥加热特性以及产物组成和质量的影响。结果表明,该催化剂能提高污泥升温速率和热解油气收率。加热的大小顺序为:纳米cuo >纳米-γ-Al 2o3 >纳米mgo >纳米nio >空白组。与空白组相比,可燃气体(h2 + ch4 + CO)含量分别增加18.824wt% (MgO)、4.511wt% (CuO)、9.28wt% (NiO)和16.164wt% (γ-Al 2o3)。可以推断,纳米金属氧化物催化剂,尤其是γ-Al 2o3催化剂,可以促进油泥分解,提高低碳直链烃和醇的含量,提高热解油品的质量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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