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含碳废物与煤共燃烧的特性和协同效应。

Characteristics and synergistic effects of co-combustion of carbonaceous wastes with coal.

机构信息

Faculty of Science, Department of Chemistry, Ege University, 35100 Bornova, Izmir, Turkey.

BIOENERGY 2020+ GmbH, 8010 Graz, Austria.

出版信息

Waste Manag. 2018 Jan;71:192-199. doi: 10.1016/j.wasman.2017.10.041. Epub 2017 Oct 31.

Abstract

This study presents combustion behavior and emission results obtained for different fuels: poultry litter (PL) and its char (PLC), scrap tires (ST) and its char (STC) and blends of char/lignite (PLC/LIG and STC/LIG). The combustion parameters and emissions were investigated via a non-isothermal thermogravimetric method and experiments in a lab-scale reactor. Fuel indexes were used for the prediction of high temperature corrosion risks and slagging potentials of the fuels used. The addition of chars to lignite caused a lowering of the combustion reactivity (anti-synergistic effect). There was a linear correlation between the NO emissions and the N content of the fuel. The form of S and the concentrations of alkali metals in the fuel had a strong effect on the extent of SO emissions. The use of PL and PLC in blends reduced SO emissions and sulphur compounds in the fly ash. The 2S/Cl ratio in the fuel showed that only PLC and STC/PLC would show a risk of corrosion during combustion. The ratio of basic to acidic oxides in fuel indicated that ST, STC and STC/LIG have low slagging potential. The molar (Si+P+K)/(Ca+Mg) ratio, which was used for PL, PLC and PLC containing blends, showed that the ash melting temperatures of these fuels would be higher than 1000 °C.

摘要

本研究介绍了不同燃料的燃烧行为和排放结果

家禽粪便(PL)及其炭(PLC)、废轮胎(ST)及其炭(STC)以及炭/褐煤的混合物(PLC/LIG 和 STC/LIG)。通过非等温热重法和实验室规模反应器中的实验研究了燃烧参数和排放。使用燃料指数预测了燃料的高温腐蚀风险和结渣倾向。向褐煤中添加炭会降低燃烧反应性(反协同效应)。NO 排放与燃料中 N 含量之间存在线性相关性。燃料中 S 的形态和碱金属浓度对 SO 排放的程度有很大影响。PL 和 PLC 在混合物中的使用减少了 SO 排放和飞灰中的硫化合物。燃料中的 2S/Cl 比值表明,只有 PLC 和 STC/PLC 在燃烧过程中会有腐蚀风险。燃料中碱性氧化物与酸性氧化物的摩尔比(Si+P+K)/(Ca+Mg)表明 ST、STC 和 STC/LIG 的结渣潜力较低。用于 PL、PLC 和含 PLC 的混合物的摩尔比(Si+P+K)/(Ca+Mg)表明这些燃料的灰熔点将高于 1000°C。

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