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首页> 外文期刊>International Journal of Global Warming >Batch anaerobic digestion of simulated Bangladeshi food waste: methane production at different inoculum-to-substrate ratios and kinetic analysis
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Batch anaerobic digestion of simulated Bangladeshi food waste: methane production at different inoculum-to-substrate ratios and kinetic analysis

机译:孟加拉国模拟食物垃圾的分批厌氧消化:不同接种物与底物比例的甲烷生产量和动力学分析

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摘要

This study investigates the anaerobic biodegradation characteristics of a simulated Bangladeshi food waste. Biochemical methane potential experiments carried out in 500 mL batch digesters showed the methane yields of cooked meat, cooked fish, boiled rice, vegetable and mixed food waste (MFW) to be 541, 402, 319, 274 and 484 ml CH4/gVS, respectively. The biodegradability of 87%, 83%, 75%, 76% and 82% were obtained for cooked meat, cooked fish, boiled rice, vegetable and MFW, respectively. At mesophilic temperature (35 degrees C), a maximum of 484.41 ml CH4/g VS was observed at an inoculum to substrate ratio (ISR) of 1 followed by 280, 166, 194 and 43 mL CH4/g VS at ISRs 10, 2, 0.1 and 0.05, respectively. The modified Gompertz model utilised for estimating the kinetic parameters of methane production revealed the maximum methane production rate as 16.02 ml CH4/g VS.d at an ISR of 1 with lag phase of 3.8 days.
机译:这项研究调查了模拟的孟加拉国食物垃圾的厌氧生物降解特性。在500毫升间歇式消化池中进行的生化甲烷潜力实验表明,熟肉,熟鱼,米饭,蔬菜和混合食品废物(MFW)的甲烷产量分别为541、402、319、274和484毫升CH4 / gVS。 。熟肉,熟鱼,米饭,蔬菜和MFW的生物降解率分别为87%,83%,75%,76%和82%。在中温温度(35摄氏度)下,接种物与底物之比(ISR)为1时观察到最大484.41 ml CH4 / g VS,然后在ISR 10、2观察到280、166、194和43 mL CH4 / g VS ,分别为0.1和0.05。用于估计甲烷生成动力学参数的改进的Gompertz模型显示,在ISR为1且滞后阶段为3.8天时,最大甲烷生成速率为16.02 ml CH4 / gVS.d。

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