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膏體充填用礦渣-鋼渣基膠結劑協同固化Pb2+

Solidification/stabilization of Pb2+ within a blast furnace slag-steel slag based cementing agent for paste backfilling

  • 摘要: 利用礦渣-鋼渣基膠凝材料(簡稱冶金渣膠凝材料)代替傳統充填料中使用的水泥作為膠結劑,摻入含鉛尾砂制成膠結充填料試樣,通過流動度和抗壓強度表征其工作性能,通過Pb2+浸出質量濃度表征其固化效果,通過X射線衍射、紅外光譜、差示掃描量熱法等手段分析其物相組成,并與P·I 42.5硅酸鹽水泥作對比.在相同條件下,冶金渣膠凝材料試樣的流動度平均高出水泥50 mm,且28 d強度符合一般礦山3.0 MPa的要求.冶金渣膠凝材料試樣28 d齡期鉛浸出質量濃度低于地下水環境質量標準Ⅲ類水0.05 mg·L-1的限值,而水泥為0.1 mg·L-1左右.冶金渣固化鉛性能優于水泥的機理在于冶金渣膠凝材料水化生成更多鈣礬石.此外,冶金渣膠凝材料水化產物可能存在類沸石相,更有利于吸附固化PbPb2+.

     

    Abstract: Backfilling material specimens were prepared with Pb-bearing ore tailings and a blast furnace slag-steel slag based cementing agent(BSCA) used as a replacement for cement in traditional backfilling materials. Other types of specimens with ordinary Portland cement(P·I 42.5) as cementing agents were also made for comparison. Flowability and compressive strength tests were performed to study the working performance of the specimens,and leaching tests were done to investigate the immobilization of Pb2+ in the specimens. The phase composition of the hydrated specimens was analyzed by means of X-ray diffraction,Fourier transform infrared spectroscopy and differential scanning calorimetry. It is found that the backfilling material with BSCA has a flowability of 50 mm higher than that with ordinary cement. The 28-d compressive strength of the BSCA-based specimens reaches 3.0 MPa,which meets the strength requirement for underground backfilling. The quantities of Pb2+ leached from the BSCA-based specimens aged for 28 d are below 0.05 mg·L-1,which is the threshold value of Pb2+ concentration for Type Ⅲ ground water in Chinese quality standard for ground water GB/T 14848-93. In comparison,the quantities of Pb2+ leached from the cement-containing specimens aged for 28 d are 0.1 mg·L-1. The reason for this higher immobilization degree of Pb2+ in the hydrated BSCA-based specimens is that a higher amount of ettringite forms in them. Moreover,the formation of zeolite-like facies in the hydrated BSCA-based specimens is favorable for immobilizing Pb2+.

     

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