Plant Engineering Center, Institute for Advanced Engineering, 51 Goan-ro, Yongin City, Kyeonggido 175-28, Republic of Korea.
Biogas Research Center, Hankyong National University, Anseong City, Kyeonggido 456-749, Republic of Korea.
Waste Manag. 2017 Jun;64:327-332. doi: 10.1016/j.wasman.2017.03.004. Epub 2017 Mar 27.
This study is an assessment of the hydrothermal pre-treatment (HTP) of poultry slaughterhouse waste (PSW) sludge for the enhancement of the solubilization, physical properties, and biogas production through anaerobic digestion. This assessment was carried out to ascertain the optimal HTP temperature. The solubilization and physical properties efficacy was investigated by capillary suction time (CST), time to filter (TTF), and particle size. In addition, the anaerobic digestion was investigated through biochemical methane potential (BMP) tests and subsequent statistical analysis using the modified Gompertz model. HTP was found to have improved the solubilization of the PSW sludge with increasing HTP temperature. In addition, the results of the CST, TTF, and particle size decreased with increasing HTP temperature. These results of the assessment that was conducted in this study confirm that the HTP process indeed modifies the physical properties of PSWs to enhance the solubilization of organic solids. Nevertheless, the results of the BMP tests and the modified Gompertz model analysis show that the optimal HTP temperature of PSWs for anaerobic digestion is 190°C. These findings show that to achieve high conversion efficiency, an accurately designed pre-treatment step must be included in the overall anaerobic digestion process for wastewater treatment.
本研究评估了水热预处理(HTP)对家禽屠宰场废物(PSW)污泥的影响,旨在通过厌氧消化提高其溶解性能、物理性质和沼气产量。本评估旨在确定最佳 HTP 温度。通过毛细抽吸时间(CST)、过滤时间(TTF)和粒径来研究溶解性能和物理性质的效果。此外,通过生物化学甲烷潜力(BMP)测试和随后使用修正的 Gompertz 模型进行的统计分析来研究厌氧消化。HTP 被发现可以提高 PSW 污泥的溶解性能,随着 HTP 温度的升高而增加。此外,CST、TTF 和粒径的结果随着 HTP 温度的升高而降低。本研究进行的评估结果证实,HTP 工艺确实可以改变 PSWs 的物理性质,从而提高有机固体的溶解性能。然而,BMP 测试和修正的 Gompertz 模型分析的结果表明,PSWs 进行厌氧消化的最佳 HTP 温度为 190°C。这些发现表明,为了实现高转化率效率,在废水处理的整体厌氧消化过程中必须包含一个经过精心设计的预处理步骤。