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Dual mechanochemical immobilization of heavy metals and decomposition of halogenated compounds in automobile shredder residue using a nano-sized metallic calcium reagent

机译:使用纳米尺寸金属钙试剂对汽车粉碎机残留物中卤化化合物的重金属和分解的双重机械化学固定

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摘要

Simultaneous immobilization of heavy metals and decomposition of halogenated organic compounds in different fractions of automobile shredder residue (ASR) were achieved with a nano-sized metallic calcium through a 60-min ball milling treatment. Heavy metal (HM) immobilization and chlorinated/brominated compound (CBC) decomposition efficiencies both reached 90-100 %, after ball milling with nanometallic calcium/calcium oxide (Ca/CaO) dispersion, regardless of ASR particle size (1.0, 0.45-1.0, and 0.250 mm). Concentrations of leachable HMs substantially decreased to a level lower than the regulatory standard limits (Co and Cd 0.3 mg L-1; Cr 1.5 mg L-1; Fe, Pb, and Zn 3.0 mg L-1; Mn and Ni 1 mg L-1) proposed by the Korean hazardous waste elution standard regulatory threshold. Scanning electron microscopy with energy-dispersive X-ray spectroscopy (SEM-EDS) element maps/spectra showed that while the amounts of HMs and CBCs detectable in ASR significantly decreased, the calcium mass percentage increased. X-ray powder diffraction (XRD) patterns indicate that the main fraction of enclosed/bound materials on ASR includes Ca-associated crystalline complexes that remarkably inhibit HM desorption and simultaneously transform dangerous CBCs into harmless compounds. The use of a nanometallic Ca/CaO mixture in a mechanochemical process to treat hazardous ASR (dry conditions) is an innovative approach to remediate cross-contaminated residues with heavy metals and halogenated compounds.
机译:通过60 min球铣削处理将纳米金属钙在汽车粉碎机残留物(ASR)中的重金属的同时固定重金属和卤代有机化合物的分解。重金属(HM)固定化和氯化/溴化化合物(CBC)分解效率均达到90-100%,含有纳米金属钙/氧化钙(CA / CAO)分散体,无论ASR粒径(1.0,0.45-1.0和0.250 mm)。可浸出的HMS的浓度显着降低到低于调节标准限制的水平(CO和Cd 0.3mg L-1; Cr 1.5mg L-1; Fe,Pb和Zn 3.0mg L-1; Mn和Ni 1 mg L. -1)由韩国危险废物洗脱标准调节阈值提出。扫描电子显微镜与能量分散X射线光谱(SEMEDS)元素图/光谱显示,虽然ASR中可检测到的HMS和CBC的量显着降低,钙质量百分比增加。 X射线粉末衍射(XRD)图案表明ASR上的封闭式/结合材料的主要部分包括CA相关的结晶络合物,可显着抑制HM解吸并同时将危险的CBCS转化为无害的化合物。在机械化学过程中使用纳米金属Ca / CaO混合物来治疗危险的ASR(干燥条件)是一种创新方法,用于用重金属和卤代化合物修复交叉污染的残留物。

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