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. 2018 May 26;96(7):2789–2803. doi: 10.1093/jas/sky091

Table 2.

Composition and peroxidation analysis of thermally processed SOs

Heating temperature, °C 22.5 45 90 180
Time heated, h1 0 288 72 6
FA, % of total fat2,3
 C8:0, caprylic ND ND ND 0.07
 C16:0, palmitic 10.69 10.74 11.70 11.21
 C16:1, palmitoleic 0.09 0.08 0.09 0.08
 C17:0, margaric 0.10 0.10 0.11 0.10
 C18:0, stearic 4.19 4.13 4.52 4.42
 C18:1, oleic 23.46 23.49 25.15 24.26
 C18:2, linoleic 53.07 52.86 50.79 51.65
 C18:3, linolenic 7.14 7.15 6.14 6.43
 C19:0, nonadecanoic 0.26 0.25 0.23 0.35
 C20:0, arachidic 0.32 0.32 0.35 0.34
 C20:1, gadoleic 0.18 0.19 0.20 0.30
 C22:0, behenic 0.35 0.35 0.49 0.41
 C24:0, lignoceric ND 0.12 ND 0.13
 Other FA 0.15 0.22 0.23 0.27
 UFA:SFA 5.28 5.23 4.73 4.88
 IV4 131 131 126 127
FFA, %2 0.10 0.10 0.46 0.14
Free glycerin, %2 1.04 3.72 0.82 0.82
Moisture, % 0.02 0.02 0.04 0.04
Insoluble impurities, % 0.02 0.04 0.04 0.04
Unsaponifiable matter, % 0.51 0.39 0.41 0.47
Oxidized FA, %2 3.0 2.8 2.5 1.9
OSI @ 110 C, h2 6.65 4.65 2.70 3.65
AnV2,5 1.11 1.33 121 165
PV, mEq/kg2 2.0 17.4 123.6 19.4
Polar compounds, %2 3.61 3.28 20.25 11.58
PTAG6, % ND ND 3.16 3.10
TBA value2,5 0.14 1.14 0.14 0.14
Aldehydes, mg/kg7
 DDE 2.07 1.90 912.15 915.49
 HNE 0.66 1.49 170.48 82.80
 Acrolein 6.15 6.06 27.12 44.60
 2-Decenal 0.16 0.19 55.21 81.60
 2,4-Heptadienal 0.47 1.19 268.62 151.65
 2-Heptenal 2.33 1.82 254.48 90.68
 Hexanal 2.01 2.02 33.69 6.28
 2-Octenal 0.40 0.67 212.60 51.96
 Pentanal 5.36 1.05 10.76 2.84
 2,4-Undecadienal 0.06 0.07 43.73 53.34
 2-Undecenal 0.19 0.19 50.29 110.38
 Ratio8 0.12 0.21 0.58 1.14
TOC, mg/kg2 1,328 1,331 94 798
 Alpha 98 97 <10 <10
 Beta <10 <10 <10 <10
 Delta 196 209 15 169
 Gamma 1,034 1,025 79 629

AnV, p-anisidine value; DDE, 2,4-decadienal; FA, fatty acid; FFA, free fatty acids; HNE, 4-hydroxynonenal; IV, iodine value; ND, not detected; OSI, oil stability index; PTAG, polymerized tryacylglycerides; PV, peroxide value; TBA, thiobarbituric acid; TOC, tocopherol; UFA:SFA, unsaturated:saturated fatty acid ratio.

1Thermally processed oils had constant air flow rate at 15 L/min.

2Analyzed by Barrow-Agee, Memphis, TN.

3No other FA were detected besides those listed.

4IVs were calculated using the FA profile data following the equation: VI = (16:1 × 0.95) + (18:1 × 0.86) + (18:2 × 1.732) + (18:3 × 2.616) + (20:1 × 0.795) + (20:2 × 1.57) + (20:3 × 2.38) + (20:4 × 3.19) + (20:5 × 4.01) + 22:4 × 2.93) + (22:5 × 3.68) + (22:6 × 4.64); Meadus et al. (2010).

5There are no units for AnV or TBA value.

6Analyzed by the USDA-ARS, Peoria, IL.

7Analyzed by University of Minnesota, St. Paul, MN.

8Ratio of 2-decenal, 2,4-hydroxynonenal, 2,4-undecadienal, and 2-undecenal as a percent of total aldehydes to acrolein, 2,4-heptadienal, and 2-heptenal as a percent of total aldehydes; Wang et al. (2016).