Determinants of Changes in Fruit Production in Farms in Areas with a Fragmented Agrarian Structure
Abstract
:1. Introduction
- What changes took place in the factors of production of orchard farms after Poland’s integration with the EU?
- What was the value of production and the level of costs in orchard farms in 2005–2016?
- How did the productivity and profitability of orchard farms change in the analyzed period?
2. Literature Review
2.1. Results of Research on Factors of Fruit Production Development
2.2. The Use of Panel Methods in Research
- -
- they enable higher efficiency of econometric estimates in relation to estimates based on cross-sectional data or on time series thanks to the use of both inter-unit variability and variability over time [43];
- -
- make it possible to reduce the bias of estimators caused by the unobserved explanatory variables [43];
- -
- by including zero-one-time variables in the model, it is possible to control the measurement error resulting from the observation of a given process in different periods and controlling the trend of the examined process [44];
- -
- dynamic panel model estimation methods allow for model estimation containing endogenous explanatory variables [45];
- -
- based on the estimated parameters of the dynamic model (with its appropriate specification), one can infer Granger causality between the subjects’ variables [44].
3. Materials and Methods
4. Results and Discussion
4.1. The Characteristics of the Researched Farms
4.2. Changes in the Operating Costs of Orchard Farms
4.3. Changes in the Volume of Production and the Productivity of Land, Labour and Capital
4.4. Changes in the Economic Situation of the Researched Farms
4.5. Panel Model Parameters Estimation
- Y1—the volume of fruit production in decitons,
- X1—orchard area [ha],
- X2—own labor inputs [FWU],
- X3—hired labor input [AWU],
- X4—value of non-current assets [PLN],
- X5—value of current assets [PLN],
- X6—fertilizer costs [PLN],
- X7—costs of plant protection products [PLN],
- X8—general economic costs [PLN],
- X9—salary costs [PLN],
- X10—value of additional payments to operating activities [PLN],
- X11—net investment value [PLN],
- X12—value of machines, devices, means of transport [PLN],
- X13—the age of the farmer
- μi—the time-constant individual effect of i-object
- εti—pure random error of i-object in the time t.
5. Conclusions
Author Contributions
Funding
Institutional Review Board Statement
Data Availability Statement
Conflicts of Interest
References
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Author | Issues | Used Methods |
---|---|---|
Gunerka L. Jabłońska L. Sobczak W. [12] | Regional differentiation of horticultural crops production in Poland | chain indexes, arithmetic mean, structure analysis, |
Filipiak T. Maciejczak M. [6] | Conditions for the development of the fruit sector in Poland | descriptive statistics, heuristic methods, |
Pizło W. [13,14] | Socio-economic conditions for the development of orchard farms in the regions of Grójec and Warka | descriptive methods, logit models, cluster analysis, case study, |
Filipiak T. [15] | Legal and organizational aspects of the fruit sector in Poland | descriptive methods, |
Nosecka B. [16] | Fruit export | structure analysis, |
Malchar-Michalska D. [17] | Polish fruit export | single-chain indices, least squares method, |
Bieniek-Majka M. [18] | Export determinants of fruits from Poland | descriptive methods, |
Olewnicki. D. [19] | Changes in the horticultural economy in Poland in the years 1965–2008 and prospects for its development | descriptive methods, descriptive statistics, regression analysis, time series analysis, |
Makosz E. [20] | Vision of the fruit market in Poland | descriptive methods, |
Wróblewska W. Chudzik A. [21] | Price volatility of fruit and means of production and their impact on the economic situation of producers in Poland | descriptive statistics, least squares method, string and single-base indexes, |
Jąder K. [22] | Fruit consumption in Poland | descriptive statistics, dynamics indicators, |
Pawlak K. [23] | Adaptation of horticulture to the rules and standards in force on the common EU market | descriptive methods, comparative analysis, ratio analyses, |
Pizło W. [24] | Fruit market in Poland and selected European Union countries | descriptive methods, comparative analysis |
Ziętara W. Sobierajewska J. [25] | descriptive methods, simple and multiple regression, DEA method, | |
Jabłońska, L. Gunerka, L. Filipiak T. [26] | The economic efficiency of horticultural crops in selected European Union countries | descriptive statistics, chain indexes, |
Długokęcka D. [27] | Fruit and vegetable market—Five years of Polish agriculture in the EU—changes and prospects | descriptive methods, |
Bieniek-Majka M. [28] | Changes on the fruit market in Poland after accession to the European Union | descriptive methods, |
Olewnicki D. [29] | Analysis of the production, economic and financial results of farms engaged in horticulture in Poland. | descriptive methods |
Pizło W. [30] | descriptive statistics, | |
Ryś-Jurek R. Stefko O. [31] | descriptive methods, comparative analysis, descriptive statistics, | |
Komorowska D. [32,33] | descriptive methods, | |
Czudec A., Kata R. Miś T., Zając D. [34] | Institutional environment of agriculture (without a detailed analysis of horticulture) | descriptive statistics, chi square dependency test, Pearson’s linear correlation coefficient. |
Czyżewski B. [35] | DEA method, descriptive statistics. |
Description | 2005 | 2006 | 2007 | 2008 | 2009 | 2010 | 2011 | 2012 | 2013 | 2014 | 2015 | 2016 | 2016/2005 [%] |
---|---|---|---|---|---|---|---|---|---|---|---|---|---|
Total fixed assets, including: | 425.75 | 438.22 | 446.52 | 522.14 | 743.69 | 720.15 | 736.55 | 752.13 | 757.65 | 770.98 | 742.46 | 712.10 | 167.2 |
Land | 175.51 | 175.79 | 188.48 | 222.02 | 442.96 | 423.11 | 419.76 | 398.01 | 393.16 | 388.54 | 375.10 | 368.18 | 209.8 |
Buildings | 164.19 | 174.13 | 169.81 | 184.16 | 185.78 | 193.89 | 197.96 | 226.60 | 228.35 | 222.93 | 215.78 | 208.86 | 127.2 |
Machinery | 86.04 | 88.31 | 88.24 | 115.95 | 114.95 | 103.15 | 118.83 | 127.53 | 136.13 | 159.51 | 151.57 | 135.06 | 157.0 |
Total current assets, including: | 57.87 | 66.87 | 68.04 | 65.39 | 66.20 | 70.81 | 86.67 | 86.27 | 84.27 | 67.69 | 80.82 | 92.81 | 160.4 |
Stock of agricultural products | 37.64 | 40.03 | 45.39 | 41.46 | 48.48 | 46.67 | 54.35 | 57.29 | 57.36 | 48.23 | 58.93 | 62.80 | 166.8 |
Description | 2005 | 2006 | 2007 | 2008 | 2009 | 2010 | 2011 | 2012 | 2013 | 2014 | 2015 | 2016 | 2016/2005 [%] |
---|---|---|---|---|---|---|---|---|---|---|---|---|---|
Total inputs | 70.47 | 73.74 | 85.71 | 90.37 | 100.58 | 102.31 | 112.05 | 118.70 | 118.85 | 116.16 | 115.48 | 112.01 | 158.9 |
Total intermediate consumption | 30.62 | 31.52 | 38.60 | 40.78 | 43.77 | 49.83 | 52.01 | 54.05 | 55.06 | 52.98 | 52.61 | 50.89 | 166.2 |
Total specific costs | 12.69 | 12.98 | 19.74 | 19.86 | 19.74 | 25.21 | 25.32 | 27.26 | 28.36 | 26.73 | 21.53 | 25.32 | 199.5 |
Seeds and plants | 0.42 | 0.72 | 2.09 | 0.58 | 1.73 | 1.00 | 3.40 | 4.14 | 2.70 | 3.93 | 1.88 | 1.15 | 273.8 |
Fertilisers | 3.06 | 3.98 | 4.96 | 5.96 | 4.64 | 4.60 | 5.57 | 5.72 | 5.50 | 5.73 | 4.42 | 4.90 | 160.1 |
Crop protection | 5.19 | 5.70 | 6.26 | 8.85 | 10.01 | 11.26 | 10.27 | 10.21 | 11.72 | 10.06 | 10.10 | 10.76 | 207.3 |
Other crop-specific costs | 2.56 | 2.26 | 5.49 | 3.60 | 2.51 | 5.98 | 4.65 | 5.16 | 5.66 | 5.17 | 3.74 | 7.13 | 278.5 |
Total farming overheads | 17.93 | 18.54 | 18.86 | 20.92 | 24.03 | 24.61 | 26.70 | 26.79 | 26.70 | 26.25 | 31.07 | 25.57 | 142.6 |
Total external factors | 9.62 | 11.06 | 12.98 | 12.05 | 14.99 | 12.87 | 18.08 | 21.17 | 18.98 | 19.00 | 17.52 | 18.80 | 195.4 |
Wages paid | 7.19 | 7.66 | 10.58 | 10.70 | 13.65 | 11.38 | 16.14 | 17.41 | 16.63 | 17.12 | 15.66 | 16.91 | 235.2 |
Rent paid | 0.93 | 2.16 | 1.90 | 0.87 | 0.77 | 0.82 | 0.77 | 0.78 | 0.66 | 0.69 | 0.57 | 0.87 | 93.5 |
Depreciation | 30.23 | 31.16 | 34.13 | 37.55 | 41.82 | 39.61 | 41.96 | 43.49 | 44.81 | 44.18 | 45.35 | 42.32 | 140.0 |
Description | 2005 | 2006 | 2007 | 2008 | 2009 | 2010 | 2011 | 2012 | 2013 | 2014 | 2015 | 2016 | 2016/2005 [%] |
---|---|---|---|---|---|---|---|---|---|---|---|---|---|
Total output | 99.24 | 102.16 | 146.73 | 119.95 | 109.87 | 125.22 | 144.66 | 160.98 | 157.35 | 124.50 | 142.92 | 147.91 | 149.1 |
Total output crops and crop production | 95.11 | 98.00 | 141.35 | 115.35 | 106.99 | 121.94 | 141.14 | 160.41 | 154.89 | 121.77 | 138.75 | 145.06 | 152.5 |
Fruit | 91.90 | 95.45 | 128.98 | 110.91 | 102.13 | 119.26 | 136.63 | 154.99 | 150.50 | 116.47 | 135.83 | 142.31 | 154.8 |
Total output livestock and livestock products | 3.47 | 3.50 | 4.27 | 3.32 | 2.10 | 2.71 | 2.78 | -0.13 | 2.00 | 1.74 | 3.41 | 1.53 | 44.1 |
Total output livestock and livestock products | 0.66 | 0.67 | 1.11 | 1.27 | 0.78 | 0.57 | 0.73 | 0.70 | 0.46 | 0.99 | 0.76 | 1.32 | 200.0 |
Farmhouse consumption | 0.75 | 0.96 | 1.20 | 1.00 | 0.78 | 1.04 | 1.10 | 1.06 | 1.17 | 1.01 | 0.75 | 0.89 | 118.7 |
Farm use | 0.08 | 0.10 | 0.06 | 0.02 | 0.06 | - | - | 0.03 | - | 0.06 | 0.11 | 0.11 | 137.5 |
Sale of fruit | 94.41 | 92.28 | 121.86 | 114.45 | 94.32 | 120.91 | 128.25 | 151.65 | 149.39 | 124.39 | 124.21 | 137.89 | 146.1 |
Description | 2005 | 2006 | 2007 | 2008 | 2009 | 2010 | 2011 | 2012 | 2013 | 2014 | 2015 | 2016 | 2016/2005 [%] |
---|---|---|---|---|---|---|---|---|---|---|---|---|---|
Production per 1 ha of UAA [thous. PLN/ha] | 12.26 | 12.08 | 17.25 | 13.53 | 12.82 | 14.15 | 16.57 | 17.80 | 17.18 | 13.23 | 15.21 | 15.71 | 128.1 |
Production per 1 FWU [thous. PLN/FWU] | 46.36 | 48.33 | 66.36 | 52.72 | 46.92 | 58.87 | 58.38 | 64.35 | 66.07 | 54.31 | 67.91 | 66.49 | 143.4 |
Production per 1000 PLN of the value of fixed assets [PLN] | 205.2 | 202.3 | 285.2 | 204.2 | 135.7 | 158.3 | 175.7 | 192.0 | 186.9 | 148.4 | 173.6 | 183.8 | 85.7 |
Profitability index [%] | 140.8 | 138.5 | 171.2 | 132.7 | 109.2 | 122.4 | 129.1 | 135.6 | 132.4 | 107.2 | 123.8 | 132.0 | 93.7 |
Description | 2005 | 2006 | 2007 | 2008 | 2009 | 2010 | 2011 | 2012 | 2013 | 2014 | 2015 | 2016 | 2016/2005 [%] |
---|---|---|---|---|---|---|---|---|---|---|---|---|---|
Family Farm Income (FFI)/Family Work Unit (FWU) [thous. PLN] | 27.34 | 43.99 | 68.31 | 34.18 | 14.98 | 29.87 | 49.51 | 49.68 | 49.00 | 30.91 | 41.09 | 57.10 | 208.9 |
Income per 1 ha of Utilized Agricultural Area (UAA) [thous. PLN] | 3.38 | 5.20 | 8.03 | 3.85 | 1.75 | 3.38 | 5.67 | 5.49 | 5.35 | 3.28 | 4.37 | 6.07 | 179.6 |
Income per 1 FWU [thous. PLN] | 18.31 | 30.07 | 47.40 | 21.86 | 9.42 | 19.79 | 30.67 | 31.30 | 31.96 | 21.05 | 27.42 | 38.99 | 212.9 |
Income per PLN 1.000 of the value of fixed assets [PLN] | 64.21 | 100.39 | 152.99 | 65.46 | 20.14 | 41.48 | 67.21 | 66.06 | 64.68 | 40.09 | 55.34 | 80.19 | 124.9 |
Tests | Explained Variable—Fruit Production [dt] |
---|---|
Wald test H0: No differentiation of individual effects | F(17.184) = 4.707 p-value = 0.000 |
Breusch–Pagan test H0: The individual effect is permanent for all units and can be made replaced with a free word | LM = 10.347 p-value = 0.001 |
Hausman test H0: Both estimators are unbiased and the random effects estimator is more effective | H = 33.208 p-value = 0.003 |
Estimator | FE |
Variables | Coefficient | Standard Error | t-Student | p-Value | Significance | |
---|---|---|---|---|---|---|
Const | 161.244 | 181.559 | 0.888 | 0.3756 | ||
Value of current assets [PLN] | X5 | 0.0042523 | 0.00081091 | 5.244 | 4.07 × 10−7 | *** |
Salary costs [PLN] | X9 | 0.0162619 | 0.00296324 | 5.488 | 1.25 × 10−7 | *** |
Farmer’s age [years] | X13 | 10.0741 | 3.74770 | 2.688 | 0.0078 | *** |
Mean of the dependent variable: 1173.401 | Standard deviation of the dependent variable: 8,506,635 | |||||
Sum of squares of residuals: 26,775,604 | Standard error of residuals: 370.5547 | |||||
LSDV R-square: 0.827898 | Within R-square: 0.380128 | |||||
LSDV F (20, 195): 46.90254 | p-value for test F: 1.97 × 10−63 | |||||
Log-Likelihood: −1573.085 | Crit. inform. Akaik’e: 3188.170 | |||||
Schwarz criterion: 3259.051 | Hannan Quinn’s criterion: 3216.806 | |||||
Autocorrelation of residuals: 0.018599 | Durbin Watson Statistics: 1.832649 |
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Szymańska, E.J.; Rysz, M. Determinants of Changes in Fruit Production in Farms in Areas with a Fragmented Agrarian Structure. Agriculture 2022, 12, 1767. https://doi.org/10.3390/agriculture12111767
Szymańska EJ, Rysz M. Determinants of Changes in Fruit Production in Farms in Areas with a Fragmented Agrarian Structure. Agriculture. 2022; 12(11):1767. https://doi.org/10.3390/agriculture12111767
Chicago/Turabian StyleSzymańska, Elżbieta Jadwiga, and Maria Rysz. 2022. "Determinants of Changes in Fruit Production in Farms in Areas with a Fragmented Agrarian Structure" Agriculture 12, no. 11: 1767. https://doi.org/10.3390/agriculture12111767
APA StyleSzymańska, E. J., & Rysz, M. (2022). Determinants of Changes in Fruit Production in Farms in Areas with a Fragmented Agrarian Structure. Agriculture, 12(11), 1767. https://doi.org/10.3390/agriculture12111767