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Influence of Important Nanoemulsions pH on Performance of Nanostructures Catalysts for H-2 Production in Syngas Reactions

机译:重要的纳米乳液的pH值对合成气反应中H-2生成的纳米结构催化剂性能的影响

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The synthesis of nanostructures are very various, and the most of scientists always fabricate them by the coprecipitation method at pH = 10.5-11. If we prepare these nanocatalysts for partial oxidation of methane (POM), processes to transforme methane gas into hydrogen or synthesis gas (H-2 + CO) for obtaining exact green fuel H-2 gas at different pH, what will be occurring?, and what is the influence of pH on nanoemulsion, nanofluids, nanostructures, and finally the application in syngas process? In this study we prepared many different nanoparticles containing % x (w/w) Co, Ni, Ru and La oxides over the various supports e.g. Ce-ZrO-2, MgO-CeO-2, AlCeO-2, SiO-2, SiAl-2O-3, SiMgO, SiO-2Al-MCM-41 nano mixed oxides sized (1-2 nm) at various pH (7, 8, 9, 11) by new coprecipitation and combine with nanofluids method using different direct agent surfactant, stabilizer, binder, alcohol solvent, dispersant and variable chemical pH controllers. The prepared nanostructures were characterized by common techniques such as SEM, TEM, XRD, Raman, FTIR, BET and TPR analysis at various pH. Also many marvellous and new mixture of nanotubes-nanoclay and nanotubes-nanocomposites with high % H-2 selectivity and methane conversion were fabricated by CuO-x and NiO-x sputtering test followed coprecipitation method at pH 9, for POM reactions used in petrochemical industry for the first time.
机译:纳米结构的合成非常多种多样,大多数科学家总是在pH = 10.5-11时通过共沉淀法制造它们。如果我们准备将这些纳米催化剂用于甲烷的部分氧化(POM),将甲烷气体转化为氢气或合成气(H-2 + CO)的过程,以获得在不同pH值下的确切绿色燃料H-2气体,会发生什么? pH对纳米乳液,纳米流体,纳米结构以及最终在合成气工艺中的应用有什么影响?在这项研究中,我们制备了许多不同的纳米颗粒,它们在各种载体(例如碳纳米管)上含有%x(w / w)的Co,Ni,Ru和La氧化物。 Ce-ZrO-2,MgO-CeO-2,AlCeO-2,SiO-2,SiAl-2O-3,SiMgO,SiO-2Al-MCM-41纳米混合氧化物在各种pH值(1-2 nm)下,8、9、11)通过新的共沉淀方法,并与纳米流体方法结合使用不同的直接剂表面活性剂,稳定剂,粘合剂,醇溶剂,分散剂和可变化学pH调节剂。所制备的纳米结构通过常用技术进行表征,例如在各种pH下的SEM,TEM,XRD,拉曼,FTIR,BET和TPR分析。还通过CuO-x和NiO-x溅射测试,在pH 9下共沉淀法制备了许多具有高%H-2选择性和甲烷转化率的纳米管-纳米粘土和纳米管-纳米复合材料奇妙而新颖的混合物,用于石油化工中的POM反应首次。

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