Rapid Identification of Rice Macronutrient Content in Saline Soils Using Smartphone Camera

Author:

Putra Aditya Nugraha1,Sitorus Alberth Fernando1,Hakim Quid Luqmanul1,Adelyanti Martiana1,Nita Istika1,Sudarto 1

Affiliation:

1. University of Brawijaya , Malang , Indonesia

Abstract

Abstract Indonesia’s rice production has decreased by 6.83% (on average) in the last five years (2015 – 2019) because of some factors. Salinity (42%) is one of the leading factors that cause decreasing rice production besides climate change (21%), drought (9%), and other factors (28%). The smartphone camera serves as an alternative technology to prevent macronutrient deficiencies due to salinity. This study used aerial photos from android with visible light (R, G, and B), and the image was taken from a height of 5 m. The observation of macronutrient content in plant biomass was carried out using a free grid to adjust rice fields and saline soil. The formula was obtained from regression analysis and paired t-test between the biomass macronutrient and the extracted digital number of aerial photographs that have been stacked. The results showed that digital number (DN) from a smartphone was reliable to predict nitrogen (N), phosphorus (P), and potassium (K) content in rice with formula N = 0.0035 * DN + 0.8192 (R 2 0.84), P = 0.0049 * DN – 0.2042 (R 2 0.70), and K = 0.0478 * DN – 2.6717 (R 2 0.70). There was no difference between the macronutrient estimation results from the formula and the field’s original data.

Publisher

Walter de Gruyter GmbH

Subject

Horticulture,Plant Science,Soil Science,Agronomy and Crop Science

Reference70 articles.

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3. Al-Karaki, G.N. (2000). Growth, water use efficiency and sodium and potassium acquisition by tomato cultivars grown under salt stress. Journal Plant Nutrition, 23, 1 – 8. DOI:10.1080/01904160009381992.

4. Amran, M.B., Sari, N.K.E., Setyorini, D.A., Wahyu, Y., Widiani, D. and Irnameria, D. (2015). Soil quality analysis of Sawarna Beach, Lebak Regency, Banten Province. Proceedings of the National Symposium on Science Innovation and Learning, 8.

5. Amri, M.M. and Sumiharto, R. (2019). Nitrogen, phosphorus, potassium measurement system with local binary pattern and regression analysis. IJEIS (Indonesian Journal of Electronics and Instrumentation Systems), 9(2), 107. DOI:10.22146/ijeis.34132.

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2. Analytical applications of smartphones for agricultural soil analysis;Analytical and Bioanalytical Chemistry;2023-02-15

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