Bucknell University, Lewisburg, PA, USA.
Bucknell University, Lewisburg, PA, USA.
Water Res. 2017 Oct 1;122:557-569. doi: 10.1016/j.watres.2017.06.016. Epub 2017 Jun 9.
A study was performed to evaluate the effect of thermal hydrolysis pretreatment (THP) temperature on subsequent digestion performance and operation, as well as downstream parameters such as dewatering and cake quality. A blend of primary and secondary solids from the Blue Plains treatment plant in Washington, DC was dewatered to about 16% total solids (TS), and thermally hydrolyzed at five different temperatures 130, 140, 150, 160, 170 °C. The thermally hydrolyzed solids were then fed to five separate, 10 L laboratory digesters using the same feed concentration, 10.5% TS and a solids retention time (SRT) of 15 days. The digesters were operated over a six month period to achieve steady state conditions. The higher thermal hydrolysis temperatures generally improved the solids reduction and methane yields by about 5-6% over the temperature range. The increased temperature reduced viscosity of the solids and increased the cake solids after dewatering. The dissolved organic nitrogen and UV absorbance generally increased at the higher THP temperatures. Overall, operating at a higher temperature improved performance with a tradeoff of higher dissolved organic nitrogen and UV adsorbing materials in the return liquor.
进行了一项研究,以评估热水解预处理 (THP) 温度对后续消化性能和操作的影响,以及脱水和饼质量等下游参数的影响。将来自华盛顿特区蓝平原处理厂的一级和二级固体混合物脱水至约 16% 的总固体 (TS),并在五个不同温度 130、140、150、160、170°C 下进行热水解。然后将热水解固体以相同的进料浓度 10.5% TS 和 15 天的固体停留时间 (SRT) 输送到五个单独的 10 L 实验室消化器中。消化器运行了六个月,以达到稳定状态。在该温度范围内,较高的热水解温度通常可使固体减少和甲烷产率提高约 5-6%。较高的温度降低了固体的粘度,并增加了脱水后的饼固体含量。较高的 THP 温度通常会增加溶解有机氮和紫外线吸收率。总体而言,较高温度下的运行可提高性能,但回流水中的溶解有机氮和紫外线吸收物质含量也会增加。