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Biogas production and metal passivation analysis during anaerobic digestion of pig manure: effects of a magnetic Fe3O4/FA composite supplement

机译:猪粪厌氧消化过程中的沼气产生和金属钝化分析:磁性Fe3O4 / FA复合添加剂的作用

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Anaerobic digestion has been widely used to produce biogas renewable energy and stabilize fecal manure. In this work, magnetic fly ash composites (Fe _(3) O _(4) /FA) were synthesized and mixed with pig manure in different ratios to study their effects on biogas production and metal passivation during anaerobic digestion. The results showed that the use of 0.5% Fe _(3) O _(4) /FA presented the most positive impact on biogas production compared to anaerobic digestion without Fe _(3) O _(4) /FA, i.e. , the total biogas and methane content increased by 13.81% and 35.13%, respectively. Variations in the concentration and speciation of heavy metals ( i.e. , Cu and Zn) with and without Fe _(3) O _(4) /FA during anaerobic digestion were also analyzed. The concentrations of Cu and Zn increased after anaerobic digestion, showing a significant “relative concentration effect”. Additionally, sequential fractionation suggested that Cu was mainly present in organic matter, whereas Zn was mainly distributed in the oxidation states of iron and manganese. The addition of Fe _(3) O _(4) /FA enhanced the passivation of Cu and Zn in the solid digested residues, i.e. , the residual states of Cu and Zn increased by 10.73% to 45.78% and 33.49% to 42.14% compared to the control, respectively. Moreover, better performance was found for the treatment with 2.5% Fe _(3) O _(4) /FA. X-ray diffraction (XRD) and scanning electron microscopy-energy dispersive X-ray spectroscopy (SEM-EDX) analysis demonstrated that Fe _(3) O _(4) /FA deactivated heavy metals mainly via physical adsorption during anaerobic digestion, which can convert them into stable mineral precipitates and thus decrease the solubility and mobility of these metals.
机译:厌氧消化已被广泛用于生产沼气可再生能源和稳定粪便。在这项工作中,合成了磁性粉煤灰复合材料(Fe _(3)O _(4)/ FA)并以不同比例与猪粪混合,以研究其对厌氧消化过程中沼气产生和金属钝化的影响。结果表明,与不使用Fe _(3)O _(4)/ FA的厌氧消化相比,使用0.5%Fe _(3)O _(4)/ FA对沼气产生最积极的影响。总沼气和甲烷含量分别增加了13.81%和35.13%。还分析了厌氧消化过程中有或没有Fe _(3)O _(4)/ FA时重金属(即Cu和Zn)的浓度和形态的变化。厌氧消化后,铜和锌的浓度增加,显示出明显的“相对浓度效应”。另外,顺序分馏表明,Cu主要存在于有机物中,而Zn主要分布在铁和锰的氧化态中。 Fe _(3)O _(4)/ FA的添加增强了固体消化残渣中Cu和Zn的钝化率,即Cu和Zn的残留态分别增加了10.73%至45.78%和33.49%至42.14%。与对照相比。此外,发现用2.5%Fe _(3)O _(4)/ FA处理的性能更好。 X射线衍射(XRD)和扫描电子显微镜-能量色散X射线光谱(SEM-EDX)分析表明,Fe _(3)O _(4)/ FA主要通过厌氧消化过程中的物理吸附作用使重金属失活。可以将它们转化为稳定的矿物沉淀,从而降低这些金属的溶解度和迁移率。

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