Beijing Key Laboratory for Source Control Technology of Water Pollution, Engineering Research Center for Water Pollution Source Control and Eco-remediation, College of Environmental Science & Engineering, Beijing Forestry University, 35 Tsinghua East Road, Beijing 100083, China.
Beijing Key Laboratory for Source Control Technology of Water Pollution, Engineering Research Center for Water Pollution Source Control and Eco-remediation, College of Environmental Science & Engineering, Beijing Forestry University, 35 Tsinghua East Road, Beijing 100083, China.
Bioresour Technol. 2018 Jan;247:660-668. doi: 10.1016/j.biortech.2017.09.146. Epub 2017 Sep 23.
In this study, the potential ecological risk of heavy metals (Mn, Zn, Cu, Ni, As, Cd, Pb, Cr) accumulation from anaerobic co-digestion of chicken manure (CM) and corn stover (CS) was evaluated by comparing different initial substrate concentrations, digestion temperatures, and mixture ratios. Results showed that the highest volumetric methane yield of 20.3±1.4L/L was achieved with a CS:CM ratio of 3:1 (on volatile solid basis) in mesophilic solid state anaerobic digestion (SS-AD). Although co-digestion increased the concentrations of all tested heavy metals and the direct toxicity of some heavy metals, the potential ecological risk index indicated that the digestates were all classified as low ecological risk. The biogasification and risk variation of heavy metals were affected by the operating parameters. These results are significant and should be taken into consideration when optimizing co-digestion of animal manure and crop residues during full-scale projects.
本研究通过比较不同初始底物浓度、消化温度和混合比例,评估了鸡粪(CM)和玉米秸秆(CS)厌氧共消化过程中重金属(Mn、Zn、Cu、Ni、As、Cd、Pb、Cr)积累的潜在生态风险。结果表明,在中温固态厌氧消化(SS-AD)中,CS:CM 为 3:1(基于挥发性固体)时,获得了最高的 20.3±1.4L/L 的体积甲烷产率。虽然共消化增加了所有测试重金属的浓度和一些重金属的直接毒性,但潜在生态风险指数表明,消化物均被归类为低生态风险。沼气转化和重金属的风险变化受到操作参数的影响。这些结果意义重大,在全规模项目中优化动物粪便和农作物秸秆的共消化时应予以考虑。