Microwave Hydrothermal Carbonization of Human Biowastes

被引:65
作者
Afolabi, Oluwasola O. D. [1 ,2 ]
Sohail, M. [2 ]
Thomas, C. P. L. [1 ]
机构
[1] Univ Loughborough, Dept Chem, Loughborough LE11 3TU, Leics, England
[2] Univ Loughborough, Sch Civil & Bldg Engn, Water Engn & Dev Ctr, Loughborough LE11 3TU, Leics, England
基金
比尔及梅琳达.盖茨基金会;
关键词
Human biowastes; Microwave heating; Carbonization; Solid chars; Ammonia recovery; BIOMASS; IRRADIATION; SLUDGE; TEMPERATURE; PYROLYSIS; FUEL;
D O I
10.1007/s12649-014-9333-4
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
The challenges of poor sanitation due to poor faecal sludge management, particularly in the developing and other remote regions of developed countries, are well documented. As a potential technological and complementary approach to managing human biowastes, microwave hydrothermal carbonization (M-HTC), a thermochemical process, was used in this study to convert human biowastes into a safe material without any foul odour. The process also recovered value-added products i.e. solid chars and liquid ammonia concentrate. Primary sewage and raw human faecal sludges were subjected to microwave heating at 160, 180 and 200 A degrees C, at different residence times: 30, 60 and 120 min under autogenous pressure. As a result, up to 60 % energy densified chars were recovered from the raw biowastes. The calorific (higher heating) values of chars recovered after the process, particularly those from human faecal sludge, increased from 19.79 up to 25.01 MJ/kg. Also, up to 80 % ammonia was recovered in the liquid fraction of carbonized human biowastes. Solid char yield and other estimated physicochemical properties were observed to be dependent on both the reaction temperatures and residence times of the process. The results of this study show M-HTC is a potential value-added recovery process for managing human biowastes and further provides essential information useful for the design and optimization of a self-sustainable sanitation facility.
引用
收藏
页码:147 / 157
页数:11
相关论文
共 38 条
  • [1] [Anonymous], 2012, Report 2012: Estimates developed by the UN Interagency Group for Child Mortality Estimation
  • [2] [Anonymous], 2005, Standard methods for the examination of water and waste- water
  • [3] [Anonymous], 2013, Progress on Sanitation and Drinking Water
  • [4] Livestock waste-to-bioenergy generation opportunities
    Cantrell, Keri B.
    Ducey, Thomas
    Ro, Kyoung S.
    Hunt, Patrick G.
    [J]. BIORESOURCE TECHNOLOGY, 2008, 99 (17) : 7941 - 7953
  • [5] Supercritical water gasification of hydrochar
    Castello, Daniele
    Kruse, Andrea
    Fiori, Luca
    [J]. CHEMICAL ENGINEERING RESEARCH & DESIGN, 2014, 92 (10) : 1864 - 1875
  • [6] Hydrothermal carbonization of sugarcane bagasse via wet torrefaction in association with microwave heating
    Chen, Wei-Hsin
    Ye, Song-Ching
    Sheen, Herng-Kuang
    [J]. BIORESOURCE TECHNOLOGY, 2012, 118 : 195 - 203
  • [7] Biowastes-to-biofuels
    Demirbas, M. Fatih
    Balat, Mustafa
    Balat, Havva
    [J]. ENERGY CONVERSION AND MANAGEMENT, 2011, 52 (04) : 1815 - 1828
  • [8] Decreasing activated sludge thermal hydrolysis temperature reduces product colour, without decreasing degradability
    Dwyer, Jason
    Starrenbury, Daniel
    Tait, Stephan
    Barr, Keith
    Batstone, Damien J.
    Lant, Paul
    [J]. WATER RESEARCH, 2008, 42 (18) : 4699 - 4709
  • [9] Morphological and structural differences between glucose, cellulose and lignocellulosic biomass derived hydrothermal carbons
    Falco, Camillo
    Baccile, Niki
    Titirici, Maria-Magdalena
    [J]. GREEN CHEMISTRY, 2011, 13 (11) : 3273 - 3281
  • [10] Feachem R.G., 1983, Sanitation and Disease: Health Aspects of Excreta and Wastewater Management