Events1st International Online Conference on Agriculture - Advances in Agricultural Science and Technology
Published
This submission belongs to the session 14. Poster Session of the event 1st International Online Conference on Agriculture - Advances in Agricultural Science and Technology
Published date
10 Feb, 2022
Academic Editor
author-avatarBin Gao
Citation
Katarzyna Włodarczyk, Beata Smolińska, New method of tomato fertilization with the use of chosen nanoparticles, in Proceedings of 1st International Online Conference on Agriculture - Advances in Agricultural Science and Technology, 10 February–25 February 2022, MDPI: Basel, Switzerland, doi: 10.3390/IOCAG2022-12237
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New method of tomato fertilization with the use of chosen nanoparticles

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1. Institute of Natural Products and Cosmetics, Department of Biotechnology and Food Sciences, Technical University of Lodz, Poland
2. Institute of Natural Products and Cosmetics, Department of Biotechnology and Food Sciences, Technical University of Lodz
Abstract

The fast development of world population in the past few decades has forced the agricultural sector to increase crop productivity to satisfy the needs of billions of people, especially in developing countries. This situation creates serious challenges such as producing enough food for the world’s increasing population. This situation requires the use of new technologies in the crop fertilization. The increasing production efficiency, the requirements of food safety and environmental protection should be provided. Nanotechnology offers potential solution. Nanofertilizers may be the solution for improving the efficiency and safety of fertilization.

The aim of this study is to develop a new method of soil fertilization with the use of nano zinc oxide (nano-ZnO). The main assumption of this research is the examination and comparison of the influence of certain concentration of nano-ZnO (50mg/L, 150mg/L, 250mg/L) on seedling and growth of tomatoes. Firstly, the parameters crucial for the process of seedling were examined after conducting the research on the influence of nano-ZnO (nanoparticles <100nm and <50nm) on different tomatoes cultivars. Moreover, the other parameter that will be taken under the consideration is the improvement of plants ability of macroelements assimilation from conventional bulks fertilizers. The solutions of nanoparticles were applied into the soil or by foliar spraying. Additionally, the parameters such as antioxidant activity, the content of sugars and allergens in tomato fruits will be tested. Preliminary observation indicates that solutions of nano-ZnO have significant influence on tomato germination and growth.

Keywords
nanoparticles
fertilization
tomatoes
nano-ZnO
Manuscript
Poster
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