0000000000425018

AUTHOR

Binbin Li

showing 2 related works from this author

Influence of Temperature on Characteristics of Particulate Matter and Ecological Risk Assessment of Heavy Metals during Sewage Sludge Pyrolysis

2021

The formation process of Particulate Matter (PM) during sludge pyrolysis at different temperatures (300–700 °C) and the ecological risks of heavy metals were studied. The results showed that the particulate matter is mainly condensed on the quartz film in a carbon-based organic matter when the pyrolysis temperature was between 200–500 °C in a volatilization process. Inorganic particles was found in the particulate matter when the temperature was raised to 500–700 °C in a decomposition stage. Heavy metals were enriched in particulate matter with increase in pyrolysis temperature. When the temperature reached 700 °C, the concentration of Pb and Cd in the particulate matter significantly incre…

Technologyecological risk assessmentchemistry.chemical_elementArticleGeneral Materials ScienceOrganic matterheavy metalsQuartzchemistry.chemical_classificationparticulate matterMicroscopyQC120-168.85Volatilisationsewage sludgeChemistryTQH201-278.5ParticulatesEngineering (General). Civil engineering (General)DecompositionTK1-9971Descriptive and experimental mechanicsEnvironmental chemistryElectrical engineering. Electronics. Nuclear engineeringTA1-2040CarbonPyrolysisSludgeMaterials
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Experimental Investigation into the Effect of Pyrolysis on Chemical Forms of Heavy Metals in Sewage Sludge Biochar (SSB), with Brief Ecological Risk …

2021

Experimental investigations were carried out to study the effect of pyrolysis temperature on the characteristics, structure and total heavy metal contents of sewage sludge biochar (SSB). The changes in chemical forms of the heavy metals (Zn, Cu, Cr, Ni, Pb and Cd) caused by pyrolysis were analyzed, and the potential ecological risk of heavy metals in biochar (SSB) was evaluated. The conversion of sewage sludge into biochar by pyrolysis reduced the H/C and O/C ratios considerably, resulting in stronger carbonization and a higher degree of aromatic condensation in biochar. Measurement results showed that the pH and specific surface area of biochar increased as the pyrolysis temperature increa…

020209 energyecological risk assessment02 engineering and technology010501 environmental scienceslcsh:Technology01 natural sciencesArticleMetalSpecific surface areaBiochar0202 electrical engineering electronic engineering information engineeringGeneral Materials Sciencelcsh:Microscopyheavy metalslcsh:QC120-168.850105 earth and related environmental scienceslcsh:QH201-278.5sewage sludgelcsh:TCarbonizationChemistryBCR sequential extractionHeavy metalspyrolysisBioavailabilityVDP::Teknologi: 500lcsh:TA1-2040visual_artEnvironmental chemistryvisual_art.visual_art_mediumlcsh:Descriptive and experimental mechanicslcsh:Electrical engineering. Electronics. Nuclear engineeringlcsh:Engineering (General). Civil engineering (General)lcsh:TK1-9971PyrolysisSludgeMaterials
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