期刊论文详细信息
Frontiers in Energy Research
Effect of Pretreatment and Substrate Ratios in Biorefinery Employing Co-digestion of Plant Biomass and Poultry Waste
Rashid, Naim1  Shah, Fayyaz Ali2  Mahmood, Qaisar3 
[1] Department of Chemical Engineering, COMSATS University Islamabad, Lahore Campus, Pakistan;Department of Environmental Sciences, COMSATS University Islamabad, Abbottabad Campus, Pakistan;Military College of Engineering (MCE), National University of Sciences and Technology (NUST), Risalpur Campus, Pakistan
关键词: anaerobic digestion;    Co-digestion;    Water hyacinth;    Poultry waste;    pretreatment;   
DOI  :  10.3389/fenrg.2018.00143
学科分类:能源(综合)
来源: Frontiers
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【 摘 要 】

The current study investigated the optimization of biogas generation during co-digestion of various plant biomasses with poultry waste at different ratios and pretreatment of plant biomass. The biochemical tests were executed at 35°C in a thermostat. Water hyacinth was found as the suitable substrate for mono and co-digestion due to high volatile solids (VS) and total soluble contents. However, poultry waste was appropriate only if it was co-digested with other biomasses. The experiments evaluating biogas generation at different ratios of plant biomasses and poultry waste demonstrated that water hyacinth and poultry (50:50) produced 262 mLgVS-1, giant reed and poultry (80:20) produced 235 mL gVS-1 while maize and poultry (60:40) produced 193 mLgVS-1. However, the pretreating the plant biomass with either Fenton’s or Fenton’s plus ultrasonic had no effect on biogas generation. The volumes of biogas generated after various pretreatment were low as compared to condition without pretreatment. The codigestion can be classified as WH:P (50:50> GR:P(80:20)>M:P(60:40). So, these ratios can be applied at decentralized scale for better waste management and biogas generation due to balanced C:N ratio of plant biomass and poultry manure. Co-digestion can also be applied at large scale with optimized ratio in Pakistan and other developing countries for biogas generation and waste management and reduce the methane emission through landfills.

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