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New Zealand L. scoparium Commercial H2 Manuka UMF +12 “ L. scoparium Commercial H3 Manuka UMF +15 “ L. scoparium Commercial H4 Manuka UMF +20 “ L. scoparium Commercial Unifloral H5 Sunflower Kırklareli/ Helianthus annuus Turkey honeys H6 Sunflower

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Waste and fuels from waste

Part I. Analysis of thermal decomposition

Journal of Thermal Analysis and Calorimetry
Authors:
Danuta Król
and
Sławomir Poskrobko

4 , H 2 O, CO, CO 2 , C 2 H 6 , C 2 H 4 , C 2 H 2 ), the combination of nitrogen in the form of NH 3 and HCN are also given. These compounds are of importance in the organization of thermal destruction processes of the fuel, because they participate

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Biofuels

Part II. Thermogravimetric research of dry decomposition

Journal of Thermal Analysis and Calorimetry
Authors:
Sławomir Poskrobko
and
Danuta Król

hydrogen elements (H 2 , CH 4 , H 2 O, CO, CO 2 , C 2 H 6 m / z = 30; C 2 H 4 m / z = 28; C 2 H 2 m / z = 26), the linkings of nitrogen in the form of NH 3 ( m / z = 17) and HCN ( m / z = 27) were also given. These compounds are of importance in the

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O (18 Da) between the 2″-hydroxyl group of the sugar and the 5 or 7-hydroxyl group of the aglycone. The fragment ions at m / z 357.0694 ( 0,3 X 0 − ), m / z 327.0585 ( 0,2 X 0 − ), and m / z 297.0468 ( 0,1 X 0 − ) indicate the losses of C 3 H 6

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region at δ H 6.75 ppm (1H, br s, H-7), δ H 7.06 ppm (1H, br s, H-2), δ H 7.36 ppm (1H, d, J = 2.5 Hz, H-5), and δ H 7.66 ppm ( 1H, d, J = 2.5 Hz, H-4), it also showed two singlets at δ H 2.46 ppm (3H, s, Me) and δ H 3.84 ppm (3H, s, O

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Journal of Thermal Analysis and Calorimetry
Authors:
E. Skwarek
,
S. Khalameida
,
W. Janusz
,
V. Sydorchuk
,
N. Konovalova
,
V. Zazhigalov
,
J. Skubiszewska-Zięba
, and
R. Leboda

550–650 °C and only for samples milled in air (containing V 2 MoO 8 phase) reaches up to 40%. Meantime, propylene, CO, and CO 2 are the main reaction products at low temperature. Temperature dependence of selectivity to propylene S C3H6 is rather

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, Nd, Pr) and B is Ni, Co, Mn, and/or Al. Note that LaNi 5 H 6 , which is commonly used in batteries, stores only a maximum of 1.4 wt% of H. Another disadvantage of these materials for hydrogen storage is that lanthanides tend to be expensive and heavy

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Journal of Thermal Analysis and Calorimetry
Authors:
I. Blanco
,
L. Abate
,
F. A. Bottino
, and
P. Bottino

NMR: 7.58 (d, 2H), 6.90 (d, 2H), 3.82 (s, 3H), 1.87 (m, 7H), 0.97 (m, 42 H), 0.64 (m, 14H). Anal. Calcd for C 35 H 70 Si 8 O 13 : C 45.55, H 7.64. Found: C 45.31, H 7.71. Compound 4 Yield 80.5%. 1 H NMR: 7

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Feed (10 kt/a) Products (10 kt/a) CH 3 OH CH 4 C 2 H 4 C 3 H 6 C 4 H 8 RH H 2

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) Error (ppm) Formula 1 2.92 169.01425 169.01499 4.4 C 7 H 6 O 5

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