2020
DOI: 10.1016/j.cattod.2019.02.034
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Green diesel production over nickel-alumina nanostructured catalysts promoted by zinc

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Cited by 31 publications
(15 citation statements)
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“…However, the monotonous increase of Ni dispersion with the Cu content (Table 2) is not compatible with the volcano-like trend of catalytic performance and its maximization over the catalyst with the medium Cu content It is seen that the content of the reaction mixture in hydrocarbons with an odd number of carbon atoms (n-C15 and mainly n-C17) are considerably higher than that of the corresponding ones with even carbon atoms (n-C16 and n-C18). In fact, the values obtained for the ratios (n-C17/(n-C17+n-C18)) and (n-C15/(n-C15+n-C16)) are, respectively, centered in the range of 0.97-0.95 and 0.86-0.77, which indicates that SDO mainly proceeds via deH 2 O-deCO rather than through deH 2 O as expected for nickel catalysts [5][6][7][8]10,17,18,31]. The above indicate that the presence of small amounts of copper does not disturb the SDO mechanism.…”
Section: Catalysts Evaluationmentioning
confidence: 62%
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“…However, the monotonous increase of Ni dispersion with the Cu content (Table 2) is not compatible with the volcano-like trend of catalytic performance and its maximization over the catalyst with the medium Cu content It is seen that the content of the reaction mixture in hydrocarbons with an odd number of carbon atoms (n-C15 and mainly n-C17) are considerably higher than that of the corresponding ones with even carbon atoms (n-C16 and n-C18). In fact, the values obtained for the ratios (n-C17/(n-C17+n-C18)) and (n-C15/(n-C15+n-C16)) are, respectively, centered in the range of 0.97-0.95 and 0.86-0.77, which indicates that SDO mainly proceeds via deH 2 O-deCO rather than through deH 2 O as expected for nickel catalysts [5][6][7][8]10,17,18,31]. The above indicate that the presence of small amounts of copper does not disturb the SDO mechanism.…”
Section: Catalysts Evaluationmentioning
confidence: 62%
“…In contrast, the H 2 -TPR experiments were performed in the oxide precursors. Characterization details have been reported elsewhere [6,7,10,17,18,[31][32][33][34].…”
Section: Catalysts Characterizationmentioning
confidence: 99%
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“…This indicates that the presence of Ni-O-Zn, along with the presence of acid-base sites in NiZn/AC, was very effective in transforming the WCO to oxy-free hydrocarbon compounds. 61 In the case of hydrocarbon selectivity, the blank test and ACcatalysed deoxygenation formed major light fractions of n-C 8 to n-C 14 with a total selectivity of about 55-66%. With the addition of active metals, the light fractions decreased to 25-37%, and the desired deCOx product n-(C 15 + C 17 ) increased remarkably to >58%.…”
Section: Deoxygenation Activity Of Wcomentioning
confidence: 97%
“…Αυξανόμενο ενδιαφέρον παρατηρείται στην προσπάθεια ανάπτυξης καταλυτών νικελίου προωθούμενων με οξείδιο του μολυβδαινίου[126,130,140,142,145,147,154,158,160], οξείδιο του βολφραμίου[153] ή οξείδιο του δημητρίου[166]. Ορισμένες εργασίες αφορούν διμεταλλικούς καταλύτες νικελίου-χαλκού [145,161,165], νικελίου-ψευδαργύρου[136,148,150,152,164], νικελίου -παλλαδίου, νικελίου -λευκόχρυσου, και νικελίου -ρουθηνίου[163,165]. Σε μία εργασία αναφέρεται η ανάπτυξη ενός τριμεταλλικού καταλύτη σιδήρου -νικελίου -παλλαδίου[156].…”
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