Influence of calcination and cooling conditions on pozzolanic reactivity of paper mill sludge

  • Hong seok Jang
  • , Yong Taek Lim
  • , Je Hong Kang
  • , Seung young So
  • , Hyoung seok So*
  • *Corresponding author for this work

Research output: Contribution to journalJournal articlepeer-review

Abstract

The purpose of this study is to investigate influence of calcination and cooling conditions on pozzolanic reactivity of waste paper sludge. Calcined paper sludge (CPS) is prepared by different temperatures of calcination, duration of calcination and cooling methods. Pozzolanic activity of CPS was investigated by using API (Assessed Pozzolanic Activity Index) and SAI (Strength Activity Index) in accordance with ASTM C618-17 (KS L 5405) and consumption of Ca(OH)2 hydrate in mortars with CPS in detail, and compared to that of commercial fly ash (FA) and blast furnace slag (BFS) used in the concrete industry. Results revealed CPS produced from waste paper sludge had excellent pozzolanic activity compared with commercial pozzolanic admixtures such as FA or BFS. Their pozzolanic activity was most excellent in calcination temperature of 700 °C, calcination duration of 2 h and cooling method of water quenching. SAI (%) of mortar with CPS produced under optimal conditions was 96% at 28 days of age, and satisfied the quality of fly ash (Class F) as specified in ASTM C618-17 (KS L 5405). There was linear relation between API (%) and SAI (%) of mortars with CPS, and the correlation coefficient was relatively good as 0.8 at 28 days of age. The API method is recommended as rapid and appropriate evaluation of the pozzolanic activity of the CPS.

Original languageEnglish
Pages (from-to)257-270
Number of pages14
JournalConstruction and Building Materials
Volume166
DOIs
StatePublished - 2018.03.30

Keywords

  • Calcinations and cooling condition
  • Calcined paper sludge
  • Paper sludge
  • Pozzolanic activity
  • Pozzolanic admixtures

Quacquarelli Symonds(QS) Subject Topics

  • Materials Science
  • Engineering - Civil & Structural
  • Architecture

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