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ASME材料分类及其与“UNS”的关系
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作者 潘国辉 于家庄 徐辉 《压力容器》 北大核心 2006年第5期13-16,共4页
介绍了ASME材料分类标准与UNS编号体系之间的关系,做到避免材料标识不清,以便正确使用ASME材料标准。
关键词 材料 非铁基材料
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Optimization of a digested sludge-derived mesoporous material as an efficient and stable heterogeneous catalyst for the photo-Fenton reaction 被引量:3
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作者 院士杰 廖年华 +1 位作者 董滨 戴晓虎 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 北大核心 2016年第5期735-742,共8页
The anaerobic digestion of sludge has recently received increased interest because of the potential to transform organic matter into methane‐rich biogas. However, digested sludge, the residue produced in that process... The anaerobic digestion of sludge has recently received increased interest because of the potential to transform organic matter into methane‐rich biogas. However, digested sludge, the residue produced in that process, still contains high levels of heavy metals and other harmful substances that might make traditional disposal difficult. We have devised a facile method of converting digested sludge into a mesoporous material that acts as an effective and stable heterogeneous catalyst for the photo‐Fenton reaction. A comparison of the removal of rhodamine B under different conditions showed that FAS‐1‐350, which was synthesized by mixing the digested sludge with a 1 mol/L(NH4)2Fe(SO4)2 solution followed by calcination at 350 °C, exhibited the best catalytic activity owing to its faster reaction rate and lower degree of Fe leaching. The results indicate that Fe^(2+)‐loaded catalysts have significant potential to act as stable and efficient heterogeneous promoters for the photo‐Fenton reaction, with better performance than Fe^3+‐loaded catalysts because the Fe(II)/Fe(III)compounds formed in the calcination process are necessary to sustain the Fenton reaction. This protocol provides an alternative, environmentally friendly method of reusing digested sludge and demonstrates an easily synthesized mesoporous material that effectively degrades azo dyes. 展开更多
关键词 Digested sludge Iron-based compound Mesoporous material Heterogeneous photo-Fenton reaction
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