Results and discussion
1 Results, processing:
The coefficient of dryness (Ksuh.) Is the ratio of the mass of dry material to the mass of material
before drying.
Forthyme:
А = 11,88 г
В = 13,98 г
С = 13,81 г
Tocollect:
А = 12,11 г
В = 14,11 г
С = 13,93 г
X (thyme)= 8,1%
К
dry
= 0,92
X (collection)= 9,0 %
К
dry
= 0,91
The moisture content of the feed was determined by drying in an oven. Weighed sample was
dried at 105 degrees to constant weight. The moisture content and the coefficient of dryness were
determined by the formulas presented on the slide. The moisture content in the thyme herb was
8.1%, and in the collection - 9%.
2 Results, processing:
First parallel:
Va ( Thyme) = 11,4 sm
3
Va (Collection) = 5,8 sm
3
Second parallel :
Va ( Thyme) = 11,6 sm
3
Va ( Collection) = 5,6 sm
3
АОА( Thyme) = 920 mgО
2
/ dm
3
АОА( Collection) = 456 mg О
2
/ dm
3
Permanganate AA was determined by the Leventhal method. The method is based on the
ability of aqueous extracts of plant materials to be rapidly oxidized by potassium permanganate.
The oxidizability of the aqueous extract was determined. T.O. The AOA of the thyme extract was
920 mg O2 / dm3, and the AOA of the harvest extract was 456 O2 / dm3
3 Results, processing:
Table 1.Determination of antioxidant activityin thyme and BAS
V
NaOH
, sm
3
BAS
Thyme
1
3,20
2,40
2
3,20
2,35
Table 2.Determination of antioxidant activity in thyme and BAS
Sample
К, degrees
DS
11,30
Thyme
8,30
The acidity of plant materials was determined. Water was added to the weighed portions of
the raw material, triturated, and the mixture was filtered. The filter was titrated with alkali with
12
phenolphthalein indicator until a red color appeared. The slide shows the filtrate before (left) and
after (right) titration. The acidity of raw materials was determined by the formula; it amounted to
11.3 degrees for dietary supplements and 8.3 degrees for thyme.
4 Results, processing:
X=
)
100
(
100
100
100
0
0
W
m
D
m
D
x
x
,D
x
- the optical density of the test solution;D
0
-optical density of the
RSO routine; (obtained from the teacher); m
x
- mass of raw materials (g);m
0
- mass of rutin in PCO
(0.035 g);W - moisture content in plant raw materials (%)
Based on the results obtained, a table is drawn up and the optimal time for the extraction of
flavonoids is determined.
Table 3.determination of flavonoidsdetermination of flavonoids in thyme and BAS
Sample
Х, %
DS 30 min
0,39
DS 45 min
0,40
Thyme 30 min
0,75
Thyme 45 min
0,88
Figure 1.Absorption Spectra of Serpylliherba Plant Extracts and Sedative Collection
The amount of flavonoids was determined. To do this, the plant material was extracted with
alcohol, the first part of the extracts was kept for 30 minutes, the second - 45 minutes. The
absorption spectra were filtered and recorded on a Specord 50 instrument. The wavelength
corresponding to the absorption maximum of flavonoids was selected. The amount of flavonoids
calculated in terms of rutin was calculated. The results show that the optimal extraction time is 45
minutes. Moreover, the content of flavonoids in the thyme is greater than in dietary supplements.
In Russia, the content of flavonoids in plants of the genus Thymus (including T. serpyllum
and T. vulgaris widely used in official medicine) has been little studied.
The sum of flavanoids according to volume 3 of the 2013 Pharmacopoeia is considered in
terms of luteolin-7-O-glucoside.
In the article validation of methods of quantitative determination of the amount of flavonoids in the
trees of the thyme scientific reports belsu series medicine.pharmacy. 2012. no. 22 (141).issue 20/1
there is data on the content of the total flavanoid in terms of luteolin 1.34% and cinaroside 0.3 mg.
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the total content of quercetin is 3.54% in the article features of accumulation of
pharmacologically significant compounds in representatives of the genus thymyan (thymus l.)
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