[On-site measurement of landfill gas yield and verification of IPCC model].

Huan Jing Ke Xue

Department of Environmental Science and Engineering, Tsinghua University, Beijing 100084, China.

Published: November 2009

AI Article Synopsis

  • An improved pumping test was conducted at Yulongkeng Landfill in Shenzhen to determine the accurate yield of landfill gas, revealing methane production rates ranging from 4.28 x 10(-5) to 14.67 x 10(-5) m3/(t x h).
  • The total methane yield for the landfill in 2005 was calculated at 322 m3/h, indicating it had reached a stationary phase, making the recycling of landfill gas unfeasible.
  • The study highlighted the importance of the degradation half-life of waste in predicting landfill gas yields accurately, suggesting that the parameters in the IPCC model should be adjusted based on local waste characteristics in China, particularly due to the predominance of kitchen waste.

Article Abstract

In order to obtain the accurate yield of landfill gas in Yulongkeng Landfill, Shenzhen, improved pumping test was conducted. The methane production rates of the influence region were figured out as 14.67 x 10(-5), 9.46 x 10(-5), 9.55 x 10(-5), and 4.28 x 10(-5) m3/(t x h), respectively. According to the methane production rate, the whole methane yield of Yulongkeng Landfill in 2005 was 322 m3/h, which indicated that Yulongkeng Landfill had went into stationary phase and the recycle of landfill gas was not valuable. IPCC model was verified by the measured data. Degradation half life of the waste was the key parameter concerned to the prediction accuracy of IPCC model. In China, the degradable waste in municipal solid waste was mainly kitchen waste leading to a short degradation period, which caused the degradation half life was shorter than the proposed value in IPCC model. For the improvement in prediction accuracy of landfill gas yield, the model parameters should be adopted reasonably based on a full survey of waste characterization in China, which will boost the applicability of IPCC model.

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