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Direct Synthesis of Hydrogen Peroxide under Semi-Batch Conditions over Un-Promoted Palladium Catalysts Supported by Ion-Exchange Sulfonated Resins: Effects of the Support Morphology

机译:通过离子交换磺化树脂支持的未促进的钯催化剂在半批量条件下直接合成过氧化氢:支持形态的效果

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摘要

Palladium catalysts supported by a mesoporous form of sulfonated poly-divinylbenzene, Pd/µS-pDVB10 (1%, w/w) and Pd/µS-pDVB35 (3.6% w/w), were applied to the direct synthesis of hydrogen peroxide from dihydrogen and dioxygen. The reaction was carried for 4 h out in a semibatch reactor with continuous feed of the gas mixture (H2/O2 = 1/24, v/v; total flow rate 25 mL·min−1), at 25 °C and 101 kPa. The catalytic performances were compared with those of a commercial egg-shell Pd/C catalyst (1%, w/w) and of a palladium catalyst supported by a macroreticular sulfonated ion-exchange resin, Pd/mS-pSDVB10 (1%, w/w). Pd/µS-pDVB10 and Pd/C showed the highest specific activity (H2 consumption rate of about 75⁻80 h−1), but the resin supported catalyst was much more selective (ca 50% with no promoters). The nanoparticles (NP) size was somewhat larger in Pd/µS-pDVB10, showing that either the reaction was structure insensitive or diffusion limited to some extent over Pd/C, in which the support is microporous. The open pore structure of Pd/µS-pDVB10, possibly ensuring the fast removal of H2O2 from the catalyst, could also be the cause of the relatively high selectivity of this catalyst. In summary, Pd/µS-pDVB10 was the most productive catalyst, forming ca 375 molH2O2·kgPd−1·h−1, also because it retained a constant selectivity, while the other ones underwent a more or less pronounced loss of selectivity after 80⁻90 min. Ageing experiments showed that for a palladium catalyst supported on sulfonated mesoporous poly-divinylbenzene storage under oxidative conditions implied some deactivation, but a lower drop in the selectivity; regeneration upon a reductive treatment or storage under strictly anaerobic conditions (dry-box) lead to an increase of the activity but to both a lower initial selectivity and a higher drop of selectivity with time.
机译:由介孔形式的磺化聚 - 二乙烯基苯,Pd /μs-pdvb10(1%,w / w)和Pd /μs-pdvb35(3.6%w / w)支撑的钯催化剂被应用于来自过氧化氢的直接合成二氢和二恶英。将反应在半壳体反应器中携带4小时,用气体混合物的连续进料(H2 / O 2 = 1/24,v / v;总流量为25ml·min-1),在25℃和101kPa 。将催化性能与商业蛋壳PD / C催化剂(1%,W / W)和由大聚磺化离子交换树脂,Pd / MS-PSDVB10(1%,W)负载的钯催化剂进行比较。 / w)。 Pd /μs-pdvb10和pd / c显示出最高的比活性(H2消耗率约为75±80h-1),但树脂负载催化剂更具选择性(无促进剂的Ca 50%)。 Pd /μs-pdvb10中纳米颗粒(NP)尺寸略大,表明反应是结构不敏感或扩散在一定程度上的Pd / c,其中载体是微孔的。 PD /μS-PDVB10的开放孔结构,可能确保从催化剂中快速除去H 2 O 2,也可以是该催化剂的相对较高选择性的原因。总之,Pd /μs-pdvb10是最高效的催化剂,形成Ca 375 MolH 2 O 2·KGPD-1·H-1,也因为它保留了恒定的选择性,而另一个在80后经历了或多或少明显的选择性损失⁻90分钟。衰老实验表明,对于氧化条件下,对于负载钯催化剂,对于氧化条件,含有一些失活,但选择性下降较低;在严格的厌氧条件下(干箱)下还原处理或储存的再生导致活性的增加,但初始选择性较低,并且随着时间的推移较低的选择性。

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