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  4. Biochar derived from pyrolysis of oily sludge waste: Structural characteristics and electrochemical properties
 
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Biochar derived from pyrolysis of oily sludge waste: Structural characteristics and electrochemical properties

Journal
Journal of Environmental Management
Journal Volume
268
Date Issued
2020
Author(s)
Bao, D.
Li, Z.
Liu, X.
Wan, C.
Zhang, R.
DUU-JONG LEE  
DOI
10.1016/j.jenvman.2020.110734
URI
https://www.scopus.com/inward/record.url?eid=2-s2.0-85084396897&partnerID=40&md5=52b5f53669a0d51f39b76390841f34f2
https://scholars.lib.ntu.edu.tw/handle/123456789/547680
Abstract
Oily sludge is the main hazardous waste produced by the petroleum industry, and its harmless disposal and recycling have become urgent problems. In this study, the pyrolysis technique was used to prepare oily sludge biochar at different temperatures (400 °C, 500 °C, 600 °C, and 700 °C). The characteristics of the biochar, including weight reduction, elemental composition, and molecular structure, were comprehensively investigated. From the perspective of the electrochemical properties of biochar, the relationship between the structure of the biochar and the redox capacity was discussed, and the feasibility of biochar as a battery cathode material was explored. The results suggested that the improper pyrolysis temperature could reduce the content of the quinone structure which was related to the redox capacity, the biochar prepared at 600 °C should have the strongest electron transfer capability. Moreover, the highest degree of condensation and aromaticity of pyrolysis products could be obtained at a higher pyrolysis temperature (700 °C), which might result in the relatively high discharge-charge capacity and good cycle performance of biochar which was used as an electrode material of a battery. This study explored the feasibility of pyrolysis as a disposal route for oily sludge waste and provided a reference for the electrochemical application of biochar prepared from oil sludge waste. © 2020
Subjects
Biochar; Electrochemical properties; Molecular structure; Oily sludge; Pyrolysis
SDGs

[SDGs]SDG12

Other Subjects
biochar; condensation; electrochemistry; electrode; hazardous waste; petroleum; pyrolysis; recycling; redox conditions; reduction; sludge; waste disposal; Article; body weight loss; chemical structure; controlled study; cyclic voltammetry; electrochemical analysis; electrochemistry; electron transport; feasibility study; pyrolysis; redox stress; reference electrode; sewage; sludge treatment; volatilization; sewage; biochar; charcoal; oil; Charcoal; Oils; Pyrolysis; Sewage
Type
journal article

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