State Key Laboratory of Urban Water Resource and Environment, Harbin Institute of Technology (SKLUWRE, HIT), Harbin 150090, PR China; School of Environment, Harbin Institute of Technology, Harbin 150090, PR China.
State Key Laboratory of Urban Water Resource and Environment, Harbin Institute of Technology (SKLUWRE, HIT), Harbin 150090, PR China; School of Environment, Harbin Institute of Technology, Harbin 150090, PR China.
J Hazard Mater. 2022 Oct 5;439:129592. doi: 10.1016/j.jhazmat.2022.129592. Epub 2022 Jul 16.
In this research, it was the first time to investigate the effect of two dosages (5% (T1) and 10% (T2), w/w) of calcium peroxide (CP) on organic matter degradation, humification during sewage sludge composting. Additionally, the complexation of Cu to humic substance (HS) derived from CP-compost compared to no CP addition-compost (CK) was also studied. Results showed that compared to CK, T1 and T2 significantly enhanced organic matter degradation and promoted the formation of HS. Two-dimensional correlation Fourier transform infrared spectroscopy (2D-FTIR-COS) and Parallel factor (PARAFAC) analysis revealed that the addition of CP accelerated the synthesis of HS with high aromatization degree and molecular weight than those in CK, owing to the oxidation of small molecules to form carboxyl. The stability constant (log K) of Cu with CP-derived HS (log K = 4.22-5.13) indicated a greater complexation ability than CK-derived HS (log K = 4.05-4.45), due to the faster response of polysaccharides binding to Cu (II) and the higher humification degree of CP-derived HS. This study revealed the potential mechanisms of CP addition on the synthesis of HS and utilization of CP-compost product might provide an effective way to remedy Cu (II)-contaminated soils.
在这项研究中,首次研究了两种剂量(5%(T1)和 10%(T2),w/w)的过氧化钙(CP)对污水污泥堆肥中有机物降解和腐殖化的影响。此外,还研究了 CP 堆肥与无 CP 添加堆肥(CK)相比,Cu 与 CP 衍生腐殖质(HS)的络合作用。结果表明,与 CK 相比,T1 和 T2 显著增强了有机物的降解,并促进了 HS 的形成。二维相关傅里叶变换红外光谱(2D-FTIR-COS)和并行因子(PARAFAC)分析表明,CP 的添加加速了 HS 的合成,其芳香化程度和分子量均高于 CK,这是由于小分子被氧化形成了羧基。CP 衍生 HS(log K=4.22-5.13)与 Cu 的稳定常数(log K)表明其络合能力大于 CK 衍生 HS(log K=4.05-4.45),这是由于多糖与 Cu(II)的结合更快,以及 CP 衍生 HS 的腐殖化程度更高。本研究揭示了 CP 促进 HS 合成的潜在机制,CP 堆肥产品的利用可能为修复 Cu(II)污染土壤提供一种有效途径。