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journal article EST
/
journal article ENG
Physicochemical, textural, and sensorial properties of fibrous meat analogs from oat-pea protein blends extruded at different moistures, temperatures, and screw speeds
Kaleda, Aleksei
;
Talvistu, Karel
;
Vaikma, Helen
;
Tammik, Mari-Liis
;
Rosenvald, Sirli
;
Vilu, Raivo
Future foods
2021
/
art. 100092, 8 p. : ill
https://doi.org/10.1016/j.fufo.2021.100092
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journal article EST
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journal article ENG
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1
Erratum to "Physicochemical, textural, and sensorial properties of fibrous meat analogs from oat-pea protein blends extruded at different moistures, temperatures, and screw speeds" [Future Foods, 4 (2021) 100092]
Number of records 1, displaying
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keyword
137
1.
Low-moisture extrusion
2.
cyclic expansion-extrusion
3.
extrusion
4.
extrusion cooking
5.
High Pressure Torsion Extrusion
6.
high pressure torsion extrusion (HPTE)
7.
hot extrusion
8.
Indirect extrusion angular pressing
9.
indirect-extrusion ECAP
10.
reactive extrusion
11.
assessment of calorific value and moisture content
12.
built in moisture
13.
built-in moisture
14.
construction moisture
15.
coupled moisture transport
16.
heat, air and moisture (HAM)
17.
initial moisture content
18.
long period moisture movements
19.
material moisture content
20.
moisture
21.
moisture and salt damages
22.
moisture buffer value
23.
moisture buffering
24.
moisture content
25.
moisture content mapping
26.
moisture content of stone
27.
moisture control
28.
moisture damage
29.
moisture determination
30.
moisture distribution
31.
moisture dry-out
32.
moisture excess
33.
moisture load
34.
moisture management
35.
moisture performance
36.
moisture production
37.
Moisture risk mitigation
38.
moisture safety
39.
moisture transfer
40.
moisture transport
41.
moisture uptake
42.
relative moisture
43.
soil moisture
44.
soil-moisture sensors
45.
Bluetooth low-energy tracking technology
46.
extremely low birth weight
47.
extremely low frequency
48.
high context and low context cultures
49.
humanism in the Low Countries
50.
hyper-branched linear low density PE
51.
Linear low-density polyethylene
52.
low birth weight
53.
low carbon
54.
low density areas
55.
low density polyethylene (LDPE)
56.
low dropout regulator
57.
low Earth Orbit
58.
low electric signals
59.
low energy building
60.
low energy buildings
61.
low energy house
62.
low energy office building
63.
low energy renovation
64.
low inertia
65.
low interest rates
66.
low molecular weight peptides
67.
low moor peat
68.
low noise
69.
low power
70.
low precision
71.
low speed
72.
low system strength
73.
low temperature
74.
low temperature district heating
75.
low temperature heating
76.
low temperature performance
77.
low temperature pyrolysis
78.
low temperature synthesis
79.
low THD
80.
low voltage
81.
low voltage distribution grid
82.
low voltage distribution netrwork
83.
low voltage grid
84.
low voltage networks
85.
low voltage ride-through (LVRT)
86.
low voltage S/TEM
87.
low voltage stress
88.
low voltage stress of switch
89.
low voltage stresses on switches and diodes
90.
low-/no-code
91.
low-alloy steel
92.
Low-and-Slow DoS attack
93.
low-carbon construction technology
94.
low-carbon ferritic-pearlitic steel
95.
low-carbon industry
96.
low-carbon technology
97.
low-code
98.
low-code development
99.
low-context and high-context
100.
low-cost LiDAR sensor
101.
low-density lipoprotein
102.
low-density lipoprotein (LDL) cholesterol
103.
low-density lipoprotein cholesterol
104.
low-density polyethylene
105.
low-density-polyethylene
106.
low-energy building
107.
low-energy buildings
108.
low-latency systems
109.
low-level control system transportation
110.
low-level fault redundancy
111.
low-level radiation
112.
Low-level RF EMF
113.
low-pass data filtering
114.
low-power ASIC design
115.
low-power decoupling
116.
low-power designs
117.
low-power device
118.
low-regime transition
119.
low-resistance hull
120.
low-resource
121.
low-resource languages
122.
low-resource machine translation
123.
low-temperature
124.
low-temperature heat sources
125.
low-temperature dependence photoluminescence
126.
low-temperature district heating
127.
low-temperature heat sources
128.
low-temperature plasma
129.
low-temperature sulphur corrosion
130.
low‐velocity anomalie
131.
low-voltage networks
132.
low-volume and make-to-order production
133.
modified low-density lipoproteins
134.
oxidized low-density lipoproteins
135.
user in low voltage area
136.
Very-low density lipoprotein triglycerides
137.
Very-low temperature crystallization peak
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1
1.
Low imPACK
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