International Journal of Irrigation and Water Management

ISSN 2756-3804

International Journal of Irrigation and Water Management ISSN 2756-3804 Vol. 10 (1), pp. 001-012, January, 2023. © International Scholars Journals

Full Length Research Paper

Management of nitrogen fertilizer, irrigation and plant density in onion production using response surface methodology as optimization approach

Hamed Mansouri1*, Mohammad Bannayan1, Parviz Rezvani Moghaddam1 and Amir Lakzian2

1Department of Agronomy, Faculty of Agriculture, Ferdowsi University of Mashhad, Mashhad, Iran.

2Department of Soil Science, Faculty of Agriculture, Ferdowsi University of Mashhad, Mashhad, Iran.

Accepted 22 January, 2022

Abstract

Response surface methodology (RSM) is defined as a collection of mathematical and statistical methods that are used to optimize a product or a process. In order to determinate optimum levels of nitrogen (N), water volume and plant density of onion (Allium cepa L.), and field experiment was carried out according to a central composite design as RSM in Azarshahr County, East Azerbaijan Province, Iran –repeated over two years (2011 and 2012). The treatments were designed based on low and high levels of N, irrigation and plant density as independent variables. Furthermore, bulb yield, N losses, N uses efficiency (NUE) and water use efficiency (WUE) were measured as response variables in a full quadratic polynomial model. Optimum rates of N, irrigation and plant density was suggested to achieve the target range of response variables based on three scenarios: Economic, environmental and eco-environmental. The results showed that increasing of N fertilizer up to 160 kg N ha-1 led to increase in bulb yield. The amounts of 93.48 kg N ha-1, 8930 m3 water ha-1 and 42.67 onions m-2 was found to be the optimum conditions for eco-environmental scenario. In general, it seems that resource use based on eco-environmental scenario may be the most favorable cropping strategy in onion production.

Key words: Environment N losses, N uses efficiency (NUE), water use efficiency (WUE).