Institute of Surface-Earth System Science, School of Earth System Science, Tianjin University, Tianjin 300072, China.
Institute of Surface-Earth System Science, School of Earth System Science, Tianjin University, Tianjin 300072, China; Jiangsu Provincial Key Lab for Organic Solid Waste Utilization, College of Resource & Environmental Sciences, Nanjing Agricultural University, Nanjing 210095, China.
Waste Manag. 2020 Jul 15;113:80-87. doi: 10.1016/j.wasman.2020.05.036. Epub 2020 Jun 4.
Biogas residues (BR) contaminated with potentially toxic metals pose environmental risks to soils and food chains, and strategies are needed to decrease the concentration and bioavailability of potentially toxic metals in BR. Here, metal fractions and removal mechanisms were quantified by synchrotron radiation-based Fourier transform infrared and micro X-ray fluorescence spectromicroscopies on BR and earthworms subject to vermicomposting. Vermicomposting resulted in decreases in concentrations of potentially toxic metals in BR and increases in metal removal efficiencies due to uptake by earthworms. Prior to vermicomposting, Zn, Cu and Pb were associated with N-H, O-H, aromatic C, aliphatic C, and amide functional groups, but following maturation during vermicomposting, metals were associated with N-H, O-H, aliphatic C and polysaccharide functional groups. Following vermicomposting, Zn and Cu were mainly distributed in the dermal portions of earthworms, whereas Pb was more homogeneously distributed among the inner and outer portions of the earthworms, revealing that different metals may have different uptake routes. These findings provide a new strategy for safe utilization of BR by using earthworms via vermicomposting to remove potentially toxic metals and in situ insights into how metals binding and distribution characteristics in BR and earthworms during compost and vermicomposting processes.
沼气残留物(BR)中污染的潜在有毒金属对土壤和食物链构成环境风险,因此需要采取策略来降低 BR 中潜在有毒金属的浓度和生物可利用性。在这里,我们通过基于同步辐射的傅里叶变换红外和微 X 射线荧光光谱显微镜,对经过蚯蚓堆肥处理的 BR 和蚯蚓进行了金属形态和去除机制的定量分析。蚯蚓堆肥导致 BR 中潜在有毒金属的浓度降低,金属去除效率提高,这是由于蚯蚓对金属的吸收。在进行蚯蚓堆肥之前,Zn、Cu 和 Pb 与 N-H、O-H、芳族 C、脂肪族 C 和酰胺官能团有关,但在蚯蚓堆肥过程中成熟后,金属与 N-H、O-H、脂肪族 C 和多糖官能团有关。经过蚯蚓堆肥后,Zn 和 Cu 主要分布在蚯蚓的表皮部分,而 Pb 在蚯蚓的内外部分均匀分布,这表明不同的金属可能具有不同的吸收途径。这些发现为通过蚯蚓堆肥安全利用 BR 提供了一种新策略,以去除潜在有毒金属,并深入了解在堆肥和蚯蚓堆肥过程中 BR 和蚯蚓中金属结合和分布特征的原位情况。