期刊文献+
共找到2篇文章
< 1 >
每页显示 20 50 100
Incorporating Simulated Zinc Ash by Kaolinite-and Sludge-based Ceramics:Phase Transformation and Product Leachability 被引量:3
1
作者 施凯闵 唐圆圆 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2012年第3期411-416,共6页
Zinc is one of the hazardous metals commonly found in municipal solid waste incineration (MSWI) ash, and this study reveals the stabilization mechanisms when sintering zinc-laden ash and ceramic precursors as a wast... Zinc is one of the hazardous metals commonly found in municipal solid waste incineration (MSWI) ash, and this study reveals the stabilization mechanisms when sintering zinc-laden ash and ceramic precursors as a waste-to-resource strategy. Using ZnO to simulate the zinc-laden ash and sintering with kaolinite and mullite ce- ramic precursors, both zinc aluminate spinel (ZnA1204) and willemite (Zn2SiO4) phases were found in the products under the tested thermal conditions. The results also indicate that kaolinite and mullite precursors exhibit different incorporation behavior, and ZnA1204 and Zn2SiO4 were found to be competitive as the Zn-hosting phases in the system. A prolonged leaching test was used to evaluate the leachability of potential product phases in the system. The concentrations of zinc in ZnO and Zn2SiO4 leachates were about two orders of magnitude higher than that in ZnA1204 leachate, indicating the preference of forming ZnA1204 for zinc stabilization. Furthermore, the alumi- num-rich sludge generated from waterworks could be beneficially used as a material resource to stabilize zinc in this study. The X-ray diffraction (XRD) pattern collected from the 1150 ~C and 3-h sintered sample shows the suc- cess of incorporating zinc into the ZnA1204 spinel structure with waterworks sludge precursor. The formation of ZnA1204 indicates a strong potential for employing aluminum- and silicon-based materials to thermally immobilize zinc and achieve the beneficial use of metal-laden MSWI ash. 展开更多
关键词 municipal solid waste incineration SPINEL WILLEMITE zinc SLUDGE stabilization
下载PDF
纳米硫化铜烟气脱汞及其机理研究 被引量:3
2
作者 杨泽群 施凯闵 +3 位作者 李海龙 杨建平 赵洁霞 冯世壕 《工程热物理学报》 EI CAS CSCD 北大核心 2019年第12期2946-2950,共5页
本研究采用沉淀法制备纳米硫化铜(nano-CuS),并评价了其汞吸附性能。nano-CuS最佳脱汞反应温度为75℃,适用于在FGD和WESP区间内喷射脱汞,避免高浓度酸性气体(SO2、NO)对脱汞性能的干扰.在N2,N2+4%O2、以及模拟烟气条件下,nano-CuS的吸... 本研究采用沉淀法制备纳米硫化铜(nano-CuS),并评价了其汞吸附性能。nano-CuS最佳脱汞反应温度为75℃,适用于在FGD和WESP区间内喷射脱汞,避免高浓度酸性气体(SO2、NO)对脱汞性能的干扰.在N2,N2+4%O2、以及模拟烟气条件下,nano-CuS的吸附容量和吸附速率达到89.43~122.40 mg·g^-1及11.93~13.56μg·g^-1·min^-1,与文献报道的金属硫化物吸附剂相比至少高一个量级。通过汞程序升温脱附实验和系统的表征发现,nano-CuS中的硫以多态的形式存在,特别是多硫的含量明显高于文献报道的金属硫化物吸附剂。除此之外,由于铜与汞之间的强相互作用,铜活性位点同样参与到了气态汞的吸附当中,从而使得nano-CuS具有非常优异的汞吸附能力。该研究不仅可以为多硫汞吸附剂的简单化制备提供思路,还提供了一种有潜力的非炭基汞吸附剂。 展开更多
关键词 纳米硫化铜 单质汞 燃煤烟气 吸附
原文传递
上一页 1 下一页 到第
使用帮助 返回顶部