Kuchar D, Fukuta T, Onyango M S, Matsuda H
Department of Chemical Engineering, Nagoya University, Furo-cho, Chikusa-ku, 464-8603 Nagoya, Japan.
Chemosphere. 2007 Apr;67(8):1518-25. doi: 10.1016/j.chemosphere.2006.12.014. Epub 2007 Jan 26.
The present study focuses on the conversion of heavy metals involved in molten incineration fly ashes to metal sulfides which could be thereafter separated by flotation. The sulfidation treatment was carried out for five molten incineration fly ashes (Fly ash-A to Fly ash-E) by contacting each fly ash with Na(2)S solution for a period of 10 min to 6h. The initial molar ratio of S(2-) to Me(2+) was adjusted to 1.20. The conversion of heavy metals to metal sulfides was evaluated by measuring the S(2-) residual concentrations using an ion selective electrode. The formation of metal sulfides was studied by XRD and SEM-EDS analyses. In the case of Fly ash-A to Fly ash-D, more than 79% of heavy metals of zinc, lead and copper was converted to metal sulfides within the contacting period of 0.5h owing to a fast conversion of metal chlorides to metal sulfides. By contrast, the conversion of about 35% was achieved for Fly ash-E within the same contacting period, which was attributed to a high content of metal oxides. Further, the S(2-) to Me(2+) molar ratio was reduced to 1.00 to minimize Na(2)S consumption and the conversions obtained within the contacting period of 0.5h varied from 76% for Fly ash-D to 91% for Fly ash-C. Finally, soluble salts such as NaCl and KCl were removed during the sulfidation treatment, which brought about a significant enrichment in metals content by a factor varying from 1.5 for Fly ash-D to 4.9 for Fly ash-A.
本研究聚焦于熔融焚烧飞灰中重金属转化为金属硫化物,之后可通过浮选将其分离。对五种熔融焚烧飞灰(飞灰A至飞灰E)进行硫化处理,方法是使每种飞灰与硫化钠溶液接触10分钟至6小时。将S²⁻与Me²⁺的初始摩尔比调整为1.20。通过使用离子选择性电极测量S²⁻残余浓度来评估重金属向金属硫化物的转化。通过X射线衍射(XRD)和扫描电子显微镜-能谱分析(SEM-EDS)研究金属硫化物的形成。对于飞灰A至飞灰D,由于金属氯化物快速转化为金属硫化物,在0.5小时的接触时间内,超过79%的锌、铅和铜等重金属转化为金属硫化物。相比之下,在相同接触时间内,飞灰E的转化率约为35%,这归因于其金属氧化物含量较高。此外,将S²⁻与Me²⁺的摩尔比降至1.00以尽量减少硫化钠的消耗,在0.5小时接触时间内获得的转化率从飞灰D的76%到飞灰C的91%不等。最后,在硫化处理过程中去除了氯化钠和氯化钾等可溶性盐,这使得金属含量显著富集,富集系数从飞灰D的1.5到飞灰A的4.9不等。