Organic fertilizers improve soil structure by enriching it, boosting productivity, and simultaneously preventing erosion. Nitrogen and phosphorus are key limiting nutrients in many soils. In the highland vertisols of Ethiopia, nutrient deficiencies, particularly of nitrogen and phosphorus, are common due to practices like monocropping and nutrient leaching. This study evaluates the effect of the organic liquid fertilizer "ECO-GREEN" on the yield and yield components of food barley in Sinana District, Bale Zone, Southeastern Ethiopia. The experiment, conducted during the 2018/2019 growing season, included six different levels of ECO-GREEN application (ranging from 0% to 5% of fertilizer diluted in water) and was carried out in three different locations: Robe Area, Jafera, and Sambitu. The results demonstrated that grain yield, plant height, spike length, seeds per spike, number of tillers, and biomass yield all significantly increased with the application of ECO-GREEN fertilizer, with the highest yield observed at 60 L/ha. However, higher fertilizer levels (80 L/ha and 100 L/ha) did not show further significant yield improvements. This study highlights the importance of optimal fertilizer application for improving barley production under the highland conditions of Ethiopia.
Published in | Science Journal of Analytical Chemistry (Volume 13, Issue 1) |
DOI | 10.11648/j.sjac.20251301.12 |
Page(s) | 8-14 |
Creative Commons |
This is an Open Access article, distributed under the terms of the Creative Commons Attribution 4.0 International License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted use, distribution and reproduction in any medium or format, provided the original work is properly cited. |
Copyright |
Copyright © The Author(s), 2025. Published by Science Publishing Group |
Eco-GREEN, Food Barley, Grain Yield, Organic Fertilizers, Bale Highland
ECO-Green Level (Lit/ha-1) | GY (kg/ha-1) | PH (cm) | SPL (cm) | SPS (No) | NT (No) | BMY (kg/ha-1) |
---|---|---|---|---|---|---|
0 (Control | 1595e | 57c | 2.5d | 21d | 1f | 2578d |
1 (20) | 2727d | 71b | 4.6c | 25b | 1.6e | 3829c |
2 (40) | 4056c | 72b | 6.5b | 26c | 3d | 4711b |
3 (60) | 4929a | 85a | 8.6a | 46a | 7a | 6653a |
4 (80) | 4293bc | 83a | 6b | 33b | 5b | 4649b |
5 (100) | 4309b | 75b | 6b | 31b | 4c | 4540b |
CV | 7.22 | 10.4 | 16.78 | 7.2 | 21.96 | 13.09 |
Mean | 3694 | 73.84 | 5.72 | 30.19 | 3.33 | 4438 |
LSD (0.05) | 500 | 7.24 | 0.9 | 1.73 | 0.68 | 3866 |
PH | SPL | SPS | NT | BMY | GY | |
---|---|---|---|---|---|---|
PH | 1.0000000 | 0.6333353 | 0.6954223 | 0.6689527 | 0.7816781 | 0.8446132 |
SPL | 0.6333353 | 1.0000000 | 0.8143386 | 0.8142124 | 0.8669213 | 0.8244245 |
SPS | 0.6954223 | 0.8143386 | 1.0000000 | 0.8518149 | 0.8968130 | 0.8167754 |
NT | 0.6689527 | 0.8142124 | 0.8518149 | 1.0000000 | 0.7647384 | 0.8071668 |
BMY | 0.7816781 | 0.8669213 | 0.8968130 | 0.7647384 | 1.0000000 | 0.9340985 |
GY | 0.8446132 | 0.8244245 | 0.8167754 | 0.8071668 | 0.9340985 | 1.0000000 |
TRT | Treatment |
GY | Mean Grain Yield (kg/ha-1) |
PH | Plant Height (cm) |
SPL | Spike Length (cm) |
SPS | Seed per Spikelet (Number) |
NT | Number of Tiller (Number) |
BMY | Biomass Yield (kg/ha-1) |
[1] | Assefa Workineh. 2017. Response of barley (Hordium vulgare L.) to integrated cattle manure and mineral fertilizer application in the vertisol areas of south Tigray, Ethiopian Journal of Plant Science; 3(2): 71-76. |
[2] | Aschalew et al, 2022. Effects of Brewery Beer Bio-sludge and Liquid Biofertilizer on Performance of the Food BarleyYield, Grain Quality and Soil Fertility at Arsi and West Arsi Zone, Ethiopia Journal of Environmental Impact and Management Policy ISSN: 2799-113X Vol: 02, No. 03. |
[3] | Bahadur AV, Ibrahim M, Tanner T. (2013). Characterising resilience: unpacking the concept for tackling climate change and development. Climate Dev. 2013; 5(1): 55-65. |
[4] | Getachew Agegnehu and Tilahun Amede. 2017. “Integrated soil fertility and plant nutrient management in tropical agroecosystems: a review,” Pedosphere, vol. 27, no. 4: 662-680. |
[5] | Godara AS, Gupta US, Singh R. 2012. Effect of integrated nutrient management on herbage, dry fodder yield and quality of oat (Avena sativa L.). Forage Research; 38: 59-61. |
[6] | Young, C. C., Lai, W. A., Shen, F. T., Hung, M. H., Hung, W. S., & Arun, A. B. (2003). Exploring the Microbial potentially to augment soil fertility in Taiwan. In Proceedings of the 6th ESAFS International Conference: Soil Management Technology on Low Productivity and Degraded Soils (pp. 2527). |
[7] | Bokhtiar, S. M., & Sakurai, K. (2005). Effects of organic manure and chemical fertilizer on soil fertility and productivity of plant and ratoon crops of sugarcane. Archives of Agronomy and Soil Science, 51, 325-334. |
[8] | Kabir MS (2021) Bio-Organic Fertilizer: A Green Technology to Reduce Synthetic N and P Fertilizer for Rice Production. Front. Plant Sci. 12: 602052. |
[9] | Naher, U. A., Hossain, M. B., Haque, M., Maniruzzaman, M., Choudhury, A., and Biswas, J. (2020). Effect of long-term nutrient management on soil organic carbon sequestration in rice-rice-fallow rotation. Curr. Sci. 00113891: 118. |
[10] | Girma Chala et al, 2020. Combination of Organic and Inorganic Fertilizer Improves Food BarleyYields, Quality and Soil Properties on Nitisols of Central Highlands of Ethiopia. American-Eurasian J. Agric. & Environ. Sci., 20(3): 176-183 2020; |
[11] | Sathish A, et al. (2011). Long term effect of integrated use of organic and inorganic fertilizers on productivity, soil fertility and uptake of nutrients in rice and maize cropping system. Int J Sci Nat. 2011; 2(1): 84-8. |
[12] | Heidari G, Mohammadi K, Sohrabi Y. (2016). Responses of soil microbial biomass and enzyme activities to tillage and fertilization systems in soybean (Glycine max L.) production. Front Plant Sci. 2016; 7: 1730. |
[13] | Chen, J. H., 2006. The combined use of chemical and organic fertilizers and/or Biofertilizer for crop growth and soil fertility. International Workshop on Sustained Management of the Soil-Rhizosphere System for Efficient Crop Production and Fertilizer Use (pp. 1-11). |
[14] | Rehman A, et al. (2020). Effects of manure-based biochar on uptake of nutrients and water holding capacity of different types of soils. Case Stud Chem Environ Eng. 2020; 2: 100036. |
[15] | Canellas LP, et al. (2002). Humic acids isolated from earthworm compost enhance root elongation, lateral root emergence, and plasma membrane H+-ATPase activity in maize roots. Plant Physiol. 2002; 130(4): 1951-7. |
[16] | Cen Y, et al. (2020). Using organic fertilizers to increase crop yield, economic growth, and soil quality in a temperate farmland. PeerJ. 2020; 8: e9668. |
[17] | Goulding K, Jarvis S, Whitmore A (2008). Optimizing nutrient management for farm systems. Philos Trans Royal Soc B: Biol Sci. 2008; 363(1491): 667-80. |
APA Style
Birru, T. C., Abageja, D. (2025). Evaluation of Organic Liquid Fertilizer “ECO-GREEN” on the Yield and Yield Components of Food Barley at Sinana District, Bale Zone, Oromia, Southeastern Ethiopia. Science Journal of Analytical Chemistry, 13(1), 8-14. https://doi.org/10.11648/j.sjac.20251301.12
ACS Style
Birru, T. C.; Abageja, D. Evaluation of Organic Liquid Fertilizer “ECO-GREEN” on the Yield and Yield Components of Food Barley at Sinana District, Bale Zone, Oromia, Southeastern Ethiopia. Sci. J. Anal. Chem. 2025, 13(1), 8-14. doi: 10.11648/j.sjac.20251301.12
@article{10.11648/j.sjac.20251301.12, author = {Tilahun Chibsa Birru and Daniel Abageja}, title = {Evaluation of Organic Liquid Fertilizer “ECO-GREEN” on the Yield and Yield Components of Food Barley at Sinana District, Bale Zone, Oromia, Southeastern Ethiopia }, journal = {Science Journal of Analytical Chemistry}, volume = {13}, number = {1}, pages = {8-14}, doi = {10.11648/j.sjac.20251301.12}, url = {https://doi.org/10.11648/j.sjac.20251301.12}, eprint = {https://article.sciencepublishinggroup.com/pdf/10.11648.j.sjac.20251301.12}, abstract = {Organic fertilizers improve soil structure by enriching it, boosting productivity, and simultaneously preventing erosion. Nitrogen and phosphorus are key limiting nutrients in many soils. In the highland vertisols of Ethiopia, nutrient deficiencies, particularly of nitrogen and phosphorus, are common due to practices like monocropping and nutrient leaching. This study evaluates the effect of the organic liquid fertilizer "ECO-GREEN" on the yield and yield components of food barley in Sinana District, Bale Zone, Southeastern Ethiopia. The experiment, conducted during the 2018/2019 growing season, included six different levels of ECO-GREEN application (ranging from 0% to 5% of fertilizer diluted in water) and was carried out in three different locations: Robe Area, Jafera, and Sambitu. The results demonstrated that grain yield, plant height, spike length, seeds per spike, number of tillers, and biomass yield all significantly increased with the application of ECO-GREEN fertilizer, with the highest yield observed at 60 L/ha. However, higher fertilizer levels (80 L/ha and 100 L/ha) did not show further significant yield improvements. This study highlights the importance of optimal fertilizer application for improving barley production under the highland conditions of Ethiopia. }, year = {2025} }
TY - JOUR T1 - Evaluation of Organic Liquid Fertilizer “ECO-GREEN” on the Yield and Yield Components of Food Barley at Sinana District, Bale Zone, Oromia, Southeastern Ethiopia AU - Tilahun Chibsa Birru AU - Daniel Abageja Y1 - 2025/01/16 PY - 2025 N1 - https://doi.org/10.11648/j.sjac.20251301.12 DO - 10.11648/j.sjac.20251301.12 T2 - Science Journal of Analytical Chemistry JF - Science Journal of Analytical Chemistry JO - Science Journal of Analytical Chemistry SP - 8 EP - 14 PB - Science Publishing Group SN - 2376-8053 UR - https://doi.org/10.11648/j.sjac.20251301.12 AB - Organic fertilizers improve soil structure by enriching it, boosting productivity, and simultaneously preventing erosion. Nitrogen and phosphorus are key limiting nutrients in many soils. In the highland vertisols of Ethiopia, nutrient deficiencies, particularly of nitrogen and phosphorus, are common due to practices like monocropping and nutrient leaching. This study evaluates the effect of the organic liquid fertilizer "ECO-GREEN" on the yield and yield components of food barley in Sinana District, Bale Zone, Southeastern Ethiopia. The experiment, conducted during the 2018/2019 growing season, included six different levels of ECO-GREEN application (ranging from 0% to 5% of fertilizer diluted in water) and was carried out in three different locations: Robe Area, Jafera, and Sambitu. The results demonstrated that grain yield, plant height, spike length, seeds per spike, number of tillers, and biomass yield all significantly increased with the application of ECO-GREEN fertilizer, with the highest yield observed at 60 L/ha. However, higher fertilizer levels (80 L/ha and 100 L/ha) did not show further significant yield improvements. This study highlights the importance of optimal fertilizer application for improving barley production under the highland conditions of Ethiopia. VL - 13 IS - 1 ER -