Promoting potential direct interspecies electron transfer (DIET) and methanogenesis with nitrogen and zinc doped carbon quantum dots

氮气 量子点 碳纤维 化学 产甲烷 兴奋剂 电子 电子转移 材料科学 环境化学 纳米技术 甲烷 光化学 物理 有机化学 光电子学 量子力学 复合材料 复合数
作者
Yeqing Li,Chengjie Ma,Junfei Ma,Wenyang Guo,Ya Liu,Zhangmu Jing,Zhenxin Wang,Lu Feng,Wuyu Zhang,Quan Xu
出处
期刊:Journal of Hazardous Materials [Elsevier BV]
卷期号:410: 124886-124886 被引量:44
标识
DOI:10.1016/j.jhazmat.2020.124886
摘要

Although it has been demonstrated that one-dimensional, two-dimensional, and three-dimensional carbon nanomaterials can improve the CH4 production of anaerobic digestion (AD), the effect of zero-dimensional carbon nanomaterials on AD have not been reported. To expand the application of carbon nanomaterials in AD, the effect of zero-dimensional carbon nanomaterials-carbon quantum dots (CDs) on various feedstocks (c.a. cellulose, glucose, ethanol, and vinegar residue) were investigated in this study. Results have shown that CH4 yield from ethanol was increased by 24.59% (p = 0.396) after adding 5 g/L zinc doped carbon quantum dots (Zn-doped CDs) while that from vinegar residue was dramatically increased by 230% (p = 0.000) using 5 g/L nitrogen doped carbon quantum dots (N-doped CDs). In addition, photoluminescence demonstrated that CDs acted as a capacitor for transmitting and receiving electrons. Furthermore, co-occurrence network analysis revealed that Clostridiales might be used as a signal source to communicate with other species. This study firstly shifted the application of CDs from fluorescence to AD and manifested its positive impact on AD. In short, these findings provided a better understanding on the effects of CDs on different feedstocks of methanogenesis and revealed new evidence of stimulating methanogenesis via CDs.
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