Lakshmikanthan P, Sughosh P, White James, Sivakumar Babu G L
1 Indian Institute of Science, Karnataka, India.
2 University of Southampton, Southampton, UK.
Waste Manag Res. 2017 Jul;35(7):700-708. doi: 10.1177/0734242X17705722. Epub 2017 May 28.
The performance of an anaerobic bioreactor in treating mechanically biologically treated municipal solid waste was investigated using experimental and modelling techniques. The key parameters measured during the experimental test period included the gas yield, leachate generation and settlement under applied load. Modelling of the anaerobic bioreactor was carried out using the University of Southampton landfill degradation and transport model. The model was used to simulate the actual gas production and settlement. A sensitivity analysis showed that the most influential model parameters are the monod growth rate and moisture. In this case, pH had no effect on the total gas production and waste settlement, and only a small variation in the gas production was observed when the heat transfer coefficient of waste was varied from 20 to 100 kJ/(m d K). The anaerobic bioreactor contained 1.9 kg (dry) of mechanically biologically treated waste producing 10 L of landfill gas over 125 days.
采用实验和建模技术,研究了厌氧生物反应器处理机械生物处理后的城市固体废物的性能。实验测试期间测量的关键参数包括气体产量、渗滤液产生量和施加负荷下的沉降量。使用南安普顿大学的垃圾填埋场降解和传输模型对厌氧生物反应器进行建模。该模型用于模拟实际的气体产生和沉降。敏感性分析表明,最具影响力的模型参数是莫诺德生长速率和湿度。在这种情况下,pH值对总气体产量和废物沉降没有影响,当废物的传热系数从20变化到100 kJ/(m·d·K)时,仅观察到气体产量有小的变化。厌氧生物反应器装有1.9千克(干重)机械生物处理后的废物,在125天内产生了10升填埋气。