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6篇 您的检索式:作者名="M.Rosa"
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1Experimental study on fly ash capture mercury in flue gas显示文摘Systematic experiments were conducted on a fixed-bed reactor to investigate the interaction between fly ash and mercury,the results implied that fly ash can capture mercury effectively.Among different fly ashes,the unburned carbon in the FA2 and FA3 fly ashes has the highest mercury capture capacity,up to 10.3 and 9.36 μg/g,respectively,which is close to that of commercial activated carbon.There is no obvious relationship between mercury content and carbon content or BET surface area of fly ash.Petrography classification standard was applied to distinguish fly ash carbon particles.Carbon content is not the only variable that controls mercury capture on fly ash,there are likely significant differences in the mercury capture capacities of the various carbon forms.Mercury capture capacity mainly depends on the content of anisotropy carbon particles with porous network structure.Mercedes DíAZ-SOMOANO Patricia ABAD-VALLE M.Rosa MARTíNEZ-TARAZONA 2010Science China(Technological Sciences)2010,53,4:12
2燃煤飞灰氧化汞的机制研究显示文摘为深入揭示飞灰与汞的作用机制,采用固定床汞吸附脱附实验系统详细研究了飞灰对汞的吸附氧化作用,尤其是单一气氛下飞灰本身对汞的吸附氧化性能,评价了飞灰中汞的脱附和析出形态,结果表明:飞灰自身对汞有明显的氧化作用,依据飞灰吸附脱附汞形态差异,构建了飞灰与汞作用活性点的分类,提出了3种飞灰氧化汞的反应机制;酸性气体对促进汞氧化、提高飞灰与汞的作用产物的稳定性有重要意义;晶格氧是飞灰氧化汞的重要氧化剂.赵永椿 张军营 刘晶 Mercedes Diaz-Somoano M.Rosa Martinez-Tarazona 郑楚光 2009科学通报2009,54,21:4
3Solid lipid nanoparticles (SLN) as ocular delivery system for tobramycin显示文摘Roberta Cavalli M.Rosa Gasco Patrizia Chetoni Susi Burgalassi M.Fabrizio Saettone 2002International Journal of Pharmaceutics2002,,1:2
4A genome‐wide association study using selective DNA pooling identifies candidate markers for fertility in Holstein cattle显示文摘W.Huang B. W.Kirkpatrick G. J. M.Rosa H.Khatib 2010Animal Genetics2010,,6:1
5Solid lipid nanoparticles (SLN) as ocular delivery system for tobramycin显示文摘Roberta Cavalli M.Rosa Gasco Patrizia Chetoni Susi Burgalassi M.Fabrizio Saettone 2002International Journal of Pharmaceutics2002,,1:1
6Battery Materials Design Essentials显示文摘1.INTRODUCTION The advanced materials industry is one of the leading technology sectors worldwide.The development of such materials is at the core of the technological innovations and has been possible in the last century thanks to the transition from“observational”science to“control”science.Indeed,knowledge of the structure and dynamics of matter at different length scales has enabled replacing serendipity and Edisonian trial-and-error approaches with intention and rational materials engineering,and this has accelerated progresses in a wide range of technologies which are now crucial for our daily lives but could not even be imagined a century ago.M.Rosa Palacin 2021Accounts of Materials Research2021,2,5:0
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