Ivanova, A.

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  • Ivanova, A. (1)
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Economic advantages of innovative technologies for accelerated forest regeneration in Russia

Šijačić-Nikolić, Mirjana; Ivanova, A.; Sirotkina, N.

(2020)

TY  - CONF
AU  - Šijačić-Nikolić, Mirjana
AU  - Ivanova, A.
AU  - Sirotkina, N.
PY  - 2020
UR  - https://omorika.sfb.bg.ac.rs/handle/123456789/1161
AB  - The article discusses the economic benefits of using new technologies for the production of planting material for creating forest plantations. The production costs of creating 1ha forest plantations are identified. A model of the technology of the process of creating forest plantations of fast-growing species, planting material obtained using innovative approaches in the form of contextual diagrams of the main processes is presented. The model organization of the process of creating forest plantations of fast-growing species was created in order to most efficiently use equipment and increase labour productivity. It is proved that the use of planting material obtained using nanotechnological approaches at the stage of microcloning can reduce production costs for creating forest plantations and thus significantly reduce the cost of planting material for plantation cultivation. It has been established that the developed innovative technology for obtaining planting material for creating forest plantations of fast-growing species has economic advantages over the traditional one.
C3  - International Forestry Forum Forest Ecosystems as Global Resource of the Biosphere: Calls, Threats, Solutions
T1  - Economic advantages of innovative technologies for accelerated forest regeneration in Russia
VL  - 595
DO  - 10.1088/1755-1315/595/1/012046
UR  - conv_1552
ER  - 
@conference{
author = "Šijačić-Nikolić, Mirjana and Ivanova, A. and Sirotkina, N.",
year = "2020",
abstract = "The article discusses the economic benefits of using new technologies for the production of planting material for creating forest plantations. The production costs of creating 1ha forest plantations are identified. A model of the technology of the process of creating forest plantations of fast-growing species, planting material obtained using innovative approaches in the form of contextual diagrams of the main processes is presented. The model organization of the process of creating forest plantations of fast-growing species was created in order to most efficiently use equipment and increase labour productivity. It is proved that the use of planting material obtained using nanotechnological approaches at the stage of microcloning can reduce production costs for creating forest plantations and thus significantly reduce the cost of planting material for plantation cultivation. It has been established that the developed innovative technology for obtaining planting material for creating forest plantations of fast-growing species has economic advantages over the traditional one.",
journal = "International Forestry Forum Forest Ecosystems as Global Resource of the Biosphere: Calls, Threats, Solutions",
title = "Economic advantages of innovative technologies for accelerated forest regeneration in Russia",
volume = "595",
doi = "10.1088/1755-1315/595/1/012046",
url = "conv_1552"
}
Šijačić-Nikolić, M., Ivanova, A.,& Sirotkina, N.. (2020). Economic advantages of innovative technologies for accelerated forest regeneration in Russia. in International Forestry Forum Forest Ecosystems as Global Resource of the Biosphere: Calls, Threats, Solutions, 595.
https://doi.org/10.1088/1755-1315/595/1/012046
conv_1552
Šijačić-Nikolić M, Ivanova A, Sirotkina N. Economic advantages of innovative technologies for accelerated forest regeneration in Russia. in International Forestry Forum Forest Ecosystems as Global Resource of the Biosphere: Calls, Threats, Solutions. 2020;595.
doi:10.1088/1755-1315/595/1/012046
conv_1552 .
Šijačić-Nikolić, Mirjana, Ivanova, A., Sirotkina, N., "Economic advantages of innovative technologies for accelerated forest regeneration in Russia" in International Forestry Forum Forest Ecosystems as Global Resource of the Biosphere: Calls, Threats, Solutions, 595 (2020),
https://doi.org/10.1088/1755-1315/595/1/012046 .,
conv_1552 .
2