1 Science in Engineering of Energy, Federal University of Itajubá, Itajubá-MG, Brazil.
2 Federal University of Itajubá, National Reference Center in Small Hydropower, Itajubá-MG, Brazil.
Waste Manag Res. 2018 Mar;36(3):221-235. doi: 10.1177/0734242X17751846. Epub 2018 Feb 1.
The aim of the present study is to experimentally measure the volume and composition of biogas produced from the anaerobic biodigestion of laying-hen manure from poultry farms in Itanhandu-MG, Brazil, so that the biogas can be used to generate energy. Two experiments (E1 and E2) were used to characterise the biogas quantities and compositions at room temperature and at a controlled temperature of 36 °C, respectively. The biogas production and calculated net power from the exploitation of biogas energy were compared with the results obtained from methods proposed by the Environmental Company of the State of São Paulo (CETESB, an acronym in Portuguese) using the 'Biogas: Generation and energy use - effluent and rural waste' software 1.0, Brasília-DF, Brazil. In addition, after a time equal to the hydraulic retention time subsequent to biodigester loading, the parameters were analysed and correlated with the organic matter content in the substrates. The effluents were subsequently compared with verify the degree of degradability. The biogas volumes were estimated to be 0.143 m kg VTS for E1 and 0.283 m kg VTS for E2. If the poultry farm considered in this case study uses manure to generate energy, then the estimated energy generation based on the data from experiments E1 and E2 will result in net energy values of 683 MW h y and 27,160 MW h y, given 620 MW h y for sludge heating in E2. The energy production values from the simulations of the E1 and E2 experiments did not demonstrate economic viability under the studied conditions.
本研究的目的是实验测量来自巴西伊塔汉杜-米纳斯吉拉斯州家禽养殖场的鸡粪在厌氧生物消化过程中产生的沼气的体积和成分,以便将沼气用于产生能源。进行了两项实验(E1 和 E2),分别在室温下和控制温度为 36°C 下对沼气的数量和组成进行了特征描述。沼气产量和从沼气能源开发中计算出的净功率与巴西环境公司(CETESB)使用“沼气:生成和能源利用-废水和农村废物”软件 1.0 提出的方法所获得的结果进行了比较。此外,在生物消化器加载后的水力停留时间相等后,分析了参数,并与基质中的有机物含量进行了相关分析。随后对废水进行了比较,以验证可降解性程度。估计 E1 的沼气量为 0.143m3kgVTS,E2 的沼气量为 0.283m3kgVTS。如果本案例研究中的家禽养殖场使用粪便来发电,那么根据实验 E1 和 E2 的数据估计的能源产生量将导致净能源值分别为 683MW h y 和 27,160MW h y,而 E2 中的污泥加热则需要 620MW h y。在研究条件下,E1 和 E2 实验的模拟产生的能源生产值没有显示出经济可行性。