Evolution of S/N containing compounds in pyrolysis of highly oily petroleum sludge

IF 7.5 1区 工程技术 Q2 ENERGY & FUELS
Fuel Pub Date : 2022-06-15 DOI:10.1016/j.fuel.2022.123687
Ziyi Wang , Zhenbo Wang , Zhiqian Sun , Kesheng Ma , Lianmeng Du , Rui Yuan
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引用次数: 11

Abstract

Pyrolysis of oily sludge in inert environment has a strong potential for energy recovery, in which the transformation of S/N containing compounds is a key to influence the quality of various products. This work addresses the evolution of S/N containing compounds in pyrolysis process of two oily sludge samples with high oil content by comparing the species and distribution of S/N containing compounds in origin samples and char. The results demonstrate that aromatic and saturated completed volatilize or react completely at 500 °C while the resin completed the reaction at 750 °C–800 °C. The S-containing compounds are mainly Sulfate-S. At 500 °C, most sulfate remained unchanged, and continued heating led to a large-scale decomposition. After condensation and cyclization, the S/N compounds were transformed into components with high thermal stability. Sulfoxide-S, Thiophenic-S and Aromatic-S with more stable thermal stability held the main position at higher temperature. The transformation of N-containing compounds was almost based on Proteins-N. As the temperature rising from 500 °C to 700 °C and 900 °C, the content of protein-N decreased continuously and transformed into high thermal stability Pyridine-N, Pyrrole-N and Quaternary graphic-N, which could account for more than 90%. This work provides a theoretical basis for the distribution and transformation of S/N in char, the deep application of char and the pollution prevention in subsequent treatment.

Abstract Image

高含油污泥热解过程中含硫氮化合物的演化
含油污泥在惰性环境下的热解具有很强的能量回收潜力,其中含S/N化合物的转化是影响各种产物质量的关键。这项工作地址包含化合物S / N的进化在热解过程中两个含油污泥样品的高含油量比较S / N包含化合物的种类和分布在原点样品和char。结果表明,芳烃和饱和烃在500℃时完全挥发或完全反应,树脂在750℃- 800℃时完全反应。含s化合物主要为硫酸盐- s。在500℃时,大多数硫酸盐保持不变,持续加热导致大规模分解。经缩合和环化后,S/N化合物转化为具有高热稳定性的组分。在较高温度下,热稳定性较稳定的亚砜- s、噻吩- s和芳烃- s占据主导地位。含n化合物的转化几乎是基于蛋白质- n。随着温度从500℃升高到700℃和900℃,蛋白质- n含量不断下降,转化为高热稳定性的吡啶- n、吡咯- n和第四纪图- n,占比可达90%以上。本研究为煤焦中S/N的分布与转化、煤焦的深度应用以及后续处理中的污染防治提供了理论依据。
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来源期刊
Fuel
Fuel 工程技术-工程:化工
CiteScore
12.80
自引率
20.30%
发文量
3506
审稿时长
64 days
期刊介绍: The exploration of energy sources remains a critical matter of study. For the past nine decades, fuel has consistently held the forefront in primary research efforts within the field of energy science. This area of investigation encompasses a wide range of subjects, with a particular emphasis on emerging concerns like environmental factors and pollution.
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