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Autoclaving treatment of wasted disposable bamboo chopsticks

  • Zang Sie Hung
  • , Chia Chi Chang
  • , Chung Fang Ho Chang
  • , Yi Shiou Lin
  • , Dar Ren Ji
  • , Ching Yuan Chang
  • , Jyi Yeong Tseng
  • , Sheng Wei Chiang
  • , Je Lueng Shie
  • , Yi Hung Chen
  • , Chun Han Ko
  • , Yuan Shen Li

Research output: Contribution to journalArticlepeer-review

14 Scopus citations

Abstract

The autoclaving combined with mechanical separation, known as the mechanical heat treatment, is one of the promising alternatives to treat the mixed wastes consisting of organics and inorganics. After autoclaving, the organics can then be sorted, separated and recovered for the re-utilization. In this study, the steam autoclaving of bamboo chopstick (BC), which is one of the major biomasses in the municipal solid waste, was performed. The effects of steam autoclaving temperature (T) and autoclaving reaction time (t) on the characteristics of BC were examined. The thermal gravimetric and differential thermo-gravimetric analyses were conducted to assess the pyrolysis behavior of autoclaved BC which can be further treated to produce up-graded refuse derived fuel or bio-char. The results indicated that the autoclaving extent of BC (=(initial mass-mass at t)/initial mass, in dry basis) increases with increasing T and t. The high heating value per mass in dry basis (HHMD) of raw BC after autoclaving increases from 4365kcal/kg to about 4975kcal/kg at T=428K with t=60min (A428-60) and to 5044-5158kcal/kg at 453K with 30 (A453-30) and 60min (A453-60), enhancing the energy densification ratio (ratio of HHMD after to that before autoclaving) to 1.06-1.17. However, on the wet basis, the water content of autoclaved product for the case of A428-60 is 35.85wt.% being less than those of A453-30 and A453-60 of 45.33-55.20wt.%. The comparison indicated that the conditions at 428K with 60min are more appropriate than the others, giving satisfactory HHMD with less water content. The pyrolysis behaviors of autoclaved BCs employing T=428-453K and t=15-60min are closed to that of raw BC, thus retaining the pyrolytic quality of BC. The information obtained in the present study is useful for the rational design and proper operation of autoclaving system for treating the wasted BC.

Original languageEnglish
Pages (from-to)1010-1015
Number of pages6
JournalJournal of the Taiwan Institute of Chemical Engineers
Volume44
Issue number6
DOIs
StatePublished - Nov 2013

Bibliographical note

Funding Information:
The authors are grateful for the financial supports of this research provided by the National Science Council of Taiwan .

UN SDGs

This output contributes to the following UN Sustainable Development Goals (SDGs)

  1. SDG 11 - Sustainable Cities and Communities
    SDG 11 Sustainable Cities and Communities
  2. SDG 12 - Responsible Consumption and Production
    SDG 12 Responsible Consumption and Production

Keywords

  • Autoclaving
  • Bamboo
  • Bio-energy
  • Bio-mass
  • Chopsticks
  • Mechanical heat treatment

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