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首页> 外文期刊>Journal of environmental science and health >Advantages and risks of using steel slag in preparing composts from raw organic waste
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Advantages and risks of using steel slag in preparing composts from raw organic waste

机译:使用钢渣从原始有机废物制备堆肥的优势和风险

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摘要

It had been reported that iron and manganese oxides in steel slag enhanced the production of humic acid (HA) from low-molecular-weight compounds, such as phenolic acids, amino acids, and saccharides. In the present study, this function of steel slag was applied to the composting of raw organic wastes (ROWs). The degree of humification of HAs is an important factor in evaluating compost quality. Thus, HAs were extracted from the prepared composts and the humification parameters were determined, in terms of elemental compositions, acidic functional group contents, molecular weights, spectroscopic parameters from UV-vis absorption and ~13C NMR spectra. The timing for adding steel slag affected the degree of humification of HAs in the composts. The weight average molecular weight of a HA when slag was added initially (29 kDa) was significantly higher than when slag was added after elevating the temperature of the compost pile (17-18 kDa). These results show that ROWs are decomposed to low-molecular-weight compounds after the pile temperature is elevated and the presence of slag enhances the polycondensation of these compounds to produce HAs with a higher degree of humification. Because the slag used in the present study contained several-tens ng g~-1 to several μg g~-1 of toxic elements (B, Cu, Cr, and Zn), leaching tests for these elements from the prepared composts were carried out. Levels for leaching boron from composts prepared by adding slag (0.2-0.4 mg L~-1) were obviously higher than the corresponding levels without slag (0.05 mg L~-1).
机译:据报道,钢渣中的铁和锰的氧化物增强了由低分子量化合物(如酚酸,氨基酸和糖类)的腐殖酸(HA)的生产。在当前的研究中,钢渣的这种功能被应用于有机废物原料的堆肥。 HAs的腐化程度是评估堆肥质量的重要因素。因此,从制备的堆肥中提取了HA,并根据元素组成,酸性官能团含量,分子量,UV-vis吸收光谱和〜13C NMR光谱确定了腐殖化参数。添加钢渣的时间影响了堆肥中HA的腐殖化程度。最初添加炉渣时的HA的重均分子量(29 kDa)明显高于升高堆肥温度(17-18 kDa)后添加炉渣的HA的重均分子量。这些结果表明,在堆温度升高后,ROWs分解为低分子量化合物,并且矿渣的存在增强了这些化合物的缩聚反应,从而产生了具有更高腐殖度的HA。由于本研究中使用的炉渣包含数十ng g〜-1至几μgg〜-1的有毒元素(B,Cu,Cr和Zn),因此从制备的堆肥中对这些元素进行了浸出试验。从添加矿渣制成的堆肥中浸出硼的水平(0.2-0.4 mg L〜-1)明显高于相应的无矿渣水平(0.05 mg L〜-1)。

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    Laboratory of Chemical Resources, Division of Sustainable Resources Engineering, Faculty of Engineering, Hokkaido University, Sapporo, Japan;

    Laboratory of Chemical Resources, Division of Sustainable Resources Engineering, Faculty of Engineering, Hokkaido University, Sapporo, Japan;

    Laboratory of Chemical Resources, Division of Sustainable Resources Engineering, Faculty of Engineering, Hokkaido University, Sapporo, Japan;

    Laboratory of Chemical Resources, Division of Sustainable Resources Engineering, Faculty of Engineering, Hokkaido University, Sapporo, Japan;

    Laboratory of Chemical Resources, Division of Sustainable Resources Engineering, Faculty of Engineering, Hokkaido University, Sapporo, Japan;

    Laboratory of Chemical Resources, Division of Sustainable Resources Engineering, Faculty of Engineering, Hokkaido University, Sapporo, Japan;

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  • 正文语种 eng
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  • 关键词

    Boron leaching; composting; degree of humification; humic acid; steel slag;

    机译:硼浸出;堆肥谦卑的程度;腐植酸;钢渣;

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