Fatima Faryal, Kommalapati Raghava R
Center for Energy and Environmental Sustainability, Prairie View A&M University, Prairie View, TX 77446, USA.
Department of Civil and Environmental Engineering, Prairie View A&M University, Prairie View, TX 77446, USA.
Bioengineering (Basel). 2025 Jun 29;12(7):712. doi: 10.3390/bioengineering12070712.
This study examines biodegradability (BD) and optimum conditions for the solid-state anaerobic digestion (SS-AD) of organic solid poultry waste (organs, intestines, offal, and unprocessed meat) to maximize biomethane production. Three main parameters, substrate-to-inoculum (S/I) ratio, pH, and temperature, were evaluated for the SS-AD of organic solid poultry waste. pH was evaluated at non-adjusted pH, initially adjusted pH, and controlled pH conditions at a constant S/I ratio of 0.5 and temperature of 35 ± 1 °C. The S/I ratios were examined at (0.3, 0.5, 1, and 2) at a controlled pH of ≈7.9 and temperature of 35 ± 1 °C. The temperature was assessed at mesophilic (35 ± 1 °C) and thermophilic (55 ± 1 °C) conditions with a constant S/I ratio of 0.5 and controlled pH of ≈7.9. The results demonstrate that the highest biomethane production and BD were achieved with a controlled pH of ≈7.9 (689 ± 10 mg/L, 97.5 ± 1.4%). The initially adjusted pH (688 ± 14 mg/L, 97.3 ± 1.9%) and an S/I ratio of 0.3 (685 ± 8 mg/L, 96.8 ± 1.2%) had approximately equivalent outcomes. The thermophilic conditions yielded 78% lower biomethane yield than mesophilic conditions. The challenge of lower biomethane yield under thermophilic conditions will be resolved in future studies by determining the rate-limiting step. These observations highlight that SS-AD is a promising technology for biomethane production from solid organic poultry waste.
本研究考察了有机固体家禽废弃物(器官、肠道、内脏和未加工肉类)的生物降解性(BD)以及固态厌氧消化(SS-AD)的最佳条件,以实现生物甲烷产量最大化。对有机固体家禽废弃物的SS-AD评估了三个主要参数,即底物与接种物(S/I)比例、pH值和温度。在S/I比例恒定为0.5且温度为35±1°C的条件下,对未调节pH值、初始调节pH值和控制pH值条件下的pH值进行了评估。在pH值约为7.9且温度为35±1°C的控制条件下,考察了S/I比例(0.3、0.5、1和2)。在S/I比例恒定为0.5且pH值控制在约7.9的条件下,对中温(35±1°C)和高温(55±1°C)条件下的温度进行了评估。结果表明,在pH值控制在约7.9时,生物甲烷产量和BD最高(689±10mg/L,97.5±1.4%)。初始调节pH值(688±14mg/L,97.3±1.9%)和S/I比例为0.3(685±8mg/L,96.8±1.2%)产生的结果大致相当。高温条件下的生物甲烷产量比中温条件下低78%。未来的研究将通过确定限速步骤来解决高温条件下生物甲烷产量较低的问题。这些观察结果突出表明,SS-AD是一种从固体有机家禽废弃物生产生物甲烷的有前景的技术。