Department of Biotechnology, Lund University, Getingevägen 60, 221 00 Lund, Sweden.
Bioprocess Control, Scheelevägen 22, 223 63 Lund, Sweden.
Waste Manag. 2014 Nov;34(11):1939-48. doi: 10.1016/j.wasman.2014.07.018. Epub 2014 Aug 21.
The Biochemical Methane Potential (BMP) test is increasingly recognised as a tool for selecting and pricing biomass material for production of biogas. However, the results for the same substrate often differ between laboratories and much work to standardise such tests is still needed. In the current study, the effects from four environmental factors (i.e. ambient temperature and pressure, water vapour content and initial gas composition of the reactor headspace) on the degradation kinetics and the determined methane potential were evaluated with a 2(4) full factorial design. Four substrates, with different biodegradation profiles, were investigated and the ambient temperature was found to be the most significant contributor to errors in the methane potential. Concerning the kinetics of the process, the environmental factors' impact on the calculated rate constants was negligible. The impact of the environmental factors on the kinetic parameters and methane potential from performing a BMP test at different geographical locations around the world was simulated by adjusting the data according to the ambient temperature and pressure of some chosen model sites. The largest effect on the methane potential was registered from tests performed at high altitudes due to a low ambient pressure. The results from this study illustrate the importance of considering the environmental factors' influence on volumetric gas measurement in BMP tests. This is essential to achieve trustworthy and standardised results that can be used by researchers and end users from all over the world.
生物化学甲烷潜能(BMP)测试越来越被认为是选择和定价用于生产沼气的生物质材料的工具。然而,对于相同的基质,不同实验室的结果往往存在差异,仍需要大量工作来标准化此类测试。在当前的研究中,通过 2(4)完全析因设计评估了四个环境因素(即环境温度和压力、水蒸气含量以及反应器顶部空间的初始气体组成)对降解动力学和确定的甲烷潜能的影响。研究了四种具有不同生物降解特征的基质,结果发现环境温度是导致甲烷潜能测量误差的最主要因素。就该过程的动力学而言,环境因素对计算得出的速率常数几乎没有影响。根据一些选定的模型地点的环境温度和压力,通过调整数据来模拟在世界不同地理位置进行 BMP 测试时环境因素对动力学参数和甲烷潜能的影响。由于环境压力低,在高海拔地区进行的测试对甲烷潜能的影响最大。本研究结果说明了在 BMP 测试中考虑环境因素对体积气体测量影响的重要性。这对于获得可信赖和标准化的结果至关重要,这些结果可被来自世界各地的研究人员和最终用户使用。