Conceptual energy and water recovery system for self-sustained nano membrane toilet

被引:25
作者
Hanak, Dawid P. [1 ]
Kolios, Athanasios J. [2 ]
Onabanjo, Tosin [2 ]
Wagland, Stuart T. [3 ]
Patchigolla, Kumar [4 ]
Fidalgo, Beatriz [3 ]
Manovic, Vasilije [1 ]
McAdam, Ewan [5 ]
Parker, Alison [5 ]
Williams, Leon [6 ]
Tyrrel, Sean [5 ]
Cartmell, Elise [5 ]
机构
[1] Cranfield Univ, Combust & CCS Ctr, Bedford MK43 0AL, Beds, England
[2] Cranfield Univ, Offshore Renewable Energy Engn Ctr, Bedford MK43 0AL, Beds, England
[3] Cranfield Univ, Bioenergy & Resource Management Ctr, Bedford MK43 0AL, Beds, England
[4] Cranfield Univ, Power Engn Ctr, Bedford MK43 0AL, Beds, England
[5] Cranfield Univ, Cranfield Water Sci Inst, Bedford MK43 0AL, Beds, England
[6] Cranfield Univ, Competit Creat Design Ctr, Bedford MK43 0AL, Beds, England
关键词
Thermochemical conversion; Energy recovery; Non-sewered sanitary systems; Nano Membrane Toilet; Process modelling; Reinvent the Toilet Challenge; THERMODYNAMIC ANALYSIS; HUMAN FECES; GASIFICATION; WASTE; HEMICELLULOSE; OPTIMIZATION; TEMPERATURE; CELLULOSE; LIGNIN; ENGINE;
D O I
10.1016/j.enconman.2016.07.083
中图分类号
O414.1 [热力学];
学科分类号
摘要
With about 2.4 billion people worldwide without access to improved sanitation facilities, there is a strong incentive for development of novel sanitation systems to improve the quality of life and reduce mortality. The Nano Membrane Toilet is expected to provide a unique household-scale system that would produce electricity and recover water from human excrement and urine. This study was undertaken to evaluate the performance of the conceptual energy and water recovery system for the Nano Membrane Toilet designed for a household of ten people and to assess its self-sustainability. A process model of the entire. system, including the thermochemical conversion island, a Stirling engine and a water recovery system was developed in Aspen Plus (R). The energy and water recovery system for the Nano Membrane Toilet was characterised with the specific net power output of 23.1 Wh/kg(settledsolids) and water recovery rate of 13.4 dm(3)/day in the nominal operating mode. Additionally, if no supernatant was processed, the specific net power output was increased to 69.2 Wh/kg(settledsolids). Such household-scale system would deliver the net power output (1.9-5.8 W). This was found to be enough to charge mobile phones or power clock radios, or provide light for the household using low-voltage LED bulbs. (C) 2016 The Authors. Published by Elsevier Ltd. This is an open access article under the CC BY license
引用
收藏
页码:352 / 361
页数:10
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