The relevant effect of marine salt and epiphytes on Posidonia oceanica waste pyrolysis: Removal of SO2/HCl emissions and promotion of O/ HCOOH formation

被引:1
作者
Folgueras, M. B. [1 ]
Gutierrez-Trashorras, Antonio J. [2 ]
Laine-Cuervo, G. [1 ]
Rios-Fernandez, Juan Carlos [1 ,2 ]
机构
[1] Univ Oviedo, Polytech Sch Mieres, Dept Energy, C Gonzalo Gutierrez Quiros S-N, Mieres 33600, Asturias, Spain
[2] Univ Oviedo, Polytech Sch Engn Gijon, Dept Energy, Campus Viesques, Gijon 33203, Asturias, Spain
关键词
Posidonia oceanica waste; Pyrolysis; Carbonates; Formic acid; Char gasification; Atomic oxygen; BIOMASS PYROLYSIS; ALKALI-METALS; SEAGRASS; L; MECHANISM; CHLORINE; RELEASE; FUELS; DEVOLATILIZATION; TRANSFORMATION;
D O I
10.1016/j.wasman.2024.04.014
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Significant quantities of Posidonia oceanica deposit on some beaches and coastlines every year, which generates high costs associated with the disposal of this waste. Pyrolysis may be an adequate way for its valorization. However, it would imply to know how the process takes place and if the removal of its natural detrital inorganic matter (epiphytes, marine salt and sand) is necessary, which are the objectives of this research. Pyrolysis by thermogravimetry-mass spectrometry was carried out on both the washed and unwashed samples. During this waste pyrolysis, the following occurs: (i) the high alkali metal chloride content promotes fragmentation reactions of carbohydrates and O formation, which increases HCOOH intensities at temperatures between 250 and 360 degrees C; (ii) from 500 degrees C to 650 degrees C, Fe 2 O 3 and decomposition of carbonates seem to be involved in reactions that produce O release and steam and CO 2 reforming of hydrocarbons and oxygenated organic compounds with H 2 generation; (iii) from 650 degrees C to 750 degrees C, Fe 2 O 3 , high alkali metal content and carbonate decomposition generate char gasification, an increase in O release, SO 2 capture and HCOOH formation. In general, the abundance of inorganic matter (chlorides, carbonates, etc.) minimizes the release of various compounds during pyrolysis, including SO 2 and HCl, while increasing HCOOH production. Thus, this high content of inorganic matter may represent an advantage for its pyrolysis, producing value-added chemical products with a reduced environmental impact. Therefore, this study may be the starting point for defining the optimal pyrolysis conditions for this waste valorisation.
引用
收藏
页码:101 / 113
页数:13
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