This study was conducted to identify the effect of storage time on honey quality in West Hararghe zone. A structured questionnaire interview and checklist were the main tools used to gather primary data from the households. The household data were collected from 96 beekeepers in three districts of west hararghe zone. For the physicochemical analysis, honey was harvested from frame beehive of a single farmer and stored in a glass jar for 3, 6 and 9 months and analyzed for moisture, pH, free acidity, glucose, fructose, sucrose and HMF. Majority of the beekeepers owned traditional beehives. The average beekeeping experience of the sample beekeepers was 10.25 years with the range varying from 1 to 40 years of continued engagement in beekeeping. From the total number of respondents 79.2 were store honey for different purposes up to one year. Beekeepers store their honey in different sizes and types of materials available in the area with the most common being Plastic bucket (46.4%), followed by Plastic bucket and “qil” (29.8%), Plastic bucket,”qil” and “Tanika” (11.9%) and “Tanika” and plastic bucket (6%). From the respondents 97.9% were smoke the hive during honey harvesting and 53.1 said it has no effect on honey quality. Beekeepers identified Olea spp, Vernonia spp, cow dung, Juniperus procera and Carissa spinarum as major smoking material in the study area. The results of the physicochemical analysis indicated all the samples are within the acceptable range of world and Ethiopian honey quality standards with moisture (20.6%), free acidity (34.4 meq/kg), pH (4.6), glucose (30.8%), fructose (33.4%), sucrose (3%) and HMF (8.5 mg/kg). From this study it was revealed that the quality of honey produced in the area was good during the nine month storage time.
Published in | Advances in Applied Sciences (Volume 10, Issue 3) |
DOI | 10.11648/j.aas.20251003.13 |
Page(s) | 65-73 |
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 |
Honey, Quality, Storage Time, West Hararghe
Sex of the HH | Frequency | Percent |
---|---|---|
Male | 77 | 80.2 |
Female | 18 | 18.8 |
Total | 96 | 100.0 |
Socio-Economic Characteristics | N | Minimum | Maximum | Mean | Std. Deviation |
---|---|---|---|---|---|
Age of the respondent (yrs) | 91 | 20 | 70 | 41.76 | 12.117 |
Family size | 95 | 1 | 12 | 5.33 | 2.482 |
Landholding (ha) | 86 | .125 | 3.000 | .82703 | .543061 |
Experience in beekeeping (yrs) | 93 | 1 | 40 | 10.25 | 9.613 |
Socio-Economic Characters | Frequency | Percent |
---|---|---|
Educational level | 7 | 7.3 |
Illiterate | 30 | 31.3 |
Read And Write | 26 | 27.1 |
Other | 33 | 34.4 |
Marital Status | ||
Single | 1 | 1.0 |
Married | 93 | 96.9 |
Divorced | 1 | 1.0 |
Hive type | Minimum | Maximum | Mean | Std. Deviation |
---|---|---|---|---|
Frame hive | 0 | 7 | 2.42 | 1.816 |
Transitional hive | 2 | 4 | 3.00 | 1.414 |
Traditional hive | 1 | 30 | 5.02 | 5.444 |
Respondent | Frequency | Percent |
---|---|---|
Yes | 100.0 | 79.2 |
No | 18 | 18.8 |
Total | 96 | 100.0 |
Storage Material | Frequency | Percent |
---|---|---|
Plastic bucket,”qil” and “Tanika” | 10 | 11.9 |
Plastic bucket | 39 | 46.4 |
Qil and “Tanika” | 2 | 2.4 |
“Tanika” and plastic bucket | 5 | 6.0 |
Plastic bucket and qil | 25 | 29.8 |
Stainless steel | 3 | 3.6 |
Total | 84 | 100.0 |
Time (months) | PH value | Moisture (%) | HMF (mg/kg) | Free Acidity (mequiv/kg) | Glucose (%) | Fructose (%) | Sucrose (%) |
---|---|---|---|---|---|---|---|
3 | 3.9 | 20.2 | 7.1 | 36.0 | 27.0 | 37.5 | 0.5 |
6 | 5.7 | 21.9 | 9.7 | 25.2 | 26.4 | 34.4 | 2.6 |
9 | 4.0 | 20.8 | 8.6 | 42.0 | 38.9 | 28.3 | 5.8 |
Over all mean | 4.6 | 20.6 | 8.5 | 34.4 | 30.8 | 33.4 | 3.0 |
Ethiopian standard | 3.2-4.5 | <20 | <40 | <40 | - | - | <5 |
Time | pH | Free Acidity | Moisture | HMF | Fructose | Glucose | Sucrose |
---|---|---|---|---|---|---|---|
pH | 1 | ||||||
Free acidity | -0.97 | 1 | |||||
Moisture | 1.00 | -0.99 | 1 | ||||
HMF | 1.00 | -0.94 | 0.99 | 1 | |||
Fructose | 0.18 | -0.44 | 0.27 | 0.11 | 1 | ||
Glucose | -0.39 | 0.61 | -0.47 | -0.32 | -0.98 | 1 | |
Sucrose | -0.12 | 0.37 | -0.21 | -0.04 | -1.00 | 0.96 | 1 |
PH | Power of Hydrogen |
HMF | Hydroxyl-Methyl-Furfural |
QSAE | Quality and Standard Authority of Ethiopia |
IHC | The International Honey Commission |
HH | House Hold |
meq/kg | Milliequivalents per Kilogram |
mg/kg | Milligram per Kilogram |
°C | Degree Celsius |
[1] | Abebe, M., 2017. Characterization of beekeeping system and evaluation of honey quality in Tehulederie District of South Wollo Zone, Amhara Region, Ethiopia (Doctoral dissertation, M. Sc. thesis. Bahir Dar University, Ethiopia). |
[2] | Acquarone C., Buera P., Elizalde B. 2007. Pattern of pH and electric conductivity upon honey dilution as a complementary tool for discriminating geographical origin of honeys. Food chemistry, 101, 695-703. |
[3] | Aregay, B., Endale, T., Dagne T., 2018. Evaluation of physicochemical properties of honeybees (Apis melifera) in Godare Woreda, Gambella, Ethiopia. Am. J. Food Sci. Technol. 6(1), 50-51, 2018. |
[4] | Belay A., Solomon, W., Bultossa, G., Adgaba, N., &Melaku, S. 2013. Physicochemical properties of the Harenna forest honey, Bale, Ethiopia. Food Chemistry, 141(4), 3386-3392. |
[5] | Biagio F., Elena A., Mario Z. 2009. Prediction of honey shelf life; journal of food quality 32; 352-368. |
[6] | Bogdnov S. C., Lullman P, Martin W, Von der ohe H, Russmann et al., Honey Quality, methods of analysis and international regulatory standards: review of the work of the International Honey Commision. Mitt Leb, 1999. |
[7] | Cantarelli M. A. 2008. Quality of honey from Argentina: Study of chemical composition and trace elements". The Journal of the Argentine Chemical Society 96(1): 33-41. |
[8] | Castro-Vázquez, L.; Díaz-Maroto, M. C.; González-Viňas, M. A.; Fuente, D. L. E.; Pérez-coello, M. S. Influence of storage conditions on chemical composition and sensory properties of Citrus honey. J. Agri. Food Chem. 2008. |
[9] | Cavia M. M., M. A. Fernandez-Muino, E. Gömez-Alonso, M. J. Montes-Pérez, J. F. Huidobro, and M. T. Sancho. 2002. Evolution of fructose and glucose in honey over one year: influence of induced granulation." Food chemistry. 78(2): 157-161. |
[10] | Chakraborti T, Bhattacharya K. Quality assessment of some Indian honeys in storage through HMF content and invertase activity. Int J Pharm Pharm Sci, 2014; 6(2): 827-830. |
[11] | Codex Alimentarius. Draft revised standard for standard for honey at step 10 of the Codex procedure. CSX 12. Adopted in 1981, Revised in 1987, 2001. Amended in 2019, 1-7. |
[12] | Cordella C, Faucon J. P., Cabrol-Bass D, Sbirrazzouli N. Application of DSC as a tool for honey floral species characterization and adulteration detection. Journal of thermal analysis and calorimetry. 2003; 71: 275-286. |
[13] | COUNCIL OF THE EUROPEAN UNION. Council Directive 2001/110/EC of Dec 20, 2001, relating to honey. Off. J. Eur. Commun., 2002, Jan 12, L10/47-L10/52. |
[14] | Evahelda E, Pratama F, Malahayati N, Santoso B. The Changes of Moisture Content, pH, and Total Sugar Content of Honey Originated from the Flowers of Bangka Rubber Tree During Storage, 2017. |
[15] | Eyobel, M., Miresa, T., 2017. Physicochemical characterization and pesticide residue analysis of honey produced in West Shewa zone, Oromia. Am. J. Appl. Chem. 5(6), 101-109. |
[16] | Fasasi K. A. Physicochemical Attributes of Nigerian Natural Honey from Honeybees. Pakistan Journal of Biological Sciences. 2012; 15(21): 1027-1033. |
[17] | Getachew, A., Assefa, D. and Tajebe, Z., 2014. Physico-chemical properties of honey produced in Masha, Gesha, and Sheko districts in Southwestern Ethiopia. Current Research in Agricultural Sciences, 1(4), pp. 110-116. |
[18] | Getu, A. and Birhan, M., 2014. Chemical analysis of honey and major honey production challenges in and around Gondar, Ethiopia. Academic Journal of Nutrition, 3(1), pp. 6-14. |
[19] | International Honey commission, 2009. |
[20] | Kebede, A. and Adgaba, N., 2011. Honey Bee Production Practices and Honey Quality in Silti Wereda Ethiopia. Honey bee production practices and honey quality in Silti Wereda, |
[21] | Kinati, C., Tolemariam, T. and Debele, K., 2011. Quality evaluation of honey produced in Gomma Woreda of South Western Ethiopia. Livestock research for rural development, 23(9), pp. 6-14. Ethiopia. |
[22] | Krell Rainer. 1996. Value-added products from beekeeping, No. 124. Food & Agriculture Organization. |
[23] | Lakka NS, Gosewami NA. Novel isocratic RP-HPLC method development and validation for estimation of 5 HMF in Levofloxacin Hemihydrate intravenous infusion. Int. J. Res. Pharm. Sci. 2011; 2: 45-51. |
[24] | Mohammed M., Ibrahim K., Siti A. S., Siew H. G. 2013. Physicochemical and antioxidant properties of Malaysian honeys produced by Apiscerana, Apisdorsata and Apis mellifera, BMC Complementary and Alternative Medicine, 13(43): 5-12. |
[25] | QSAE (Quality and standard Authority of Ethiopia), 2005. Ethiopian Honey Standard, ESI 2002: 2005. Addis Ababa, Ethiopia, pp. 1-17. |
[26] | Sanz ML, Sanz J, Martinez Cl. Presence of some cyclitols in honey. Food Chem. 2004; 84: 133-135. |
[27] | Tafinine MZ, Ouchemoukh S, Louaileche H, Tamendjari A. Effect of storage on hydroxymethylfurfural (HMF) and color of some Algerian honey. International food research journal, 2018; 25(3): 1044-1050. |
[28] | Teixidó E, Santos FJ, Puignou L, Galceran MT. Analysis of 5 hydroxymethylfurfural in foods by gas chromatography-mass spectrometry. Journal of chromatography A. 2006; 1135: 85-90. |
[29] | Terrab A, Dıez MJ, Heredia FJ. Characterisation of Moroccan unifloral honeys by their physicochemical characteristics. Food Chem. 2002; 79: 373-379. |
[30] | Tosi EA, Ré E, Lucero H, Bulacio L. Effect of honey high-temperature short-time heating on parameters related to quality, crystallisation phenomena and fungal inhibition. LWT-Food Science and Technology. 2004; 37(6): 669-678. |
[31] | Wasihun Gizaw (2021 unpublished). Historical Rainfall Amount and Temperature Variability and Trend in West Harerhge Zone, East Ethiopia. |
APA Style
Dugda, D., Giza, S., Dawud, S. (2025). Effect of Storage Time on Honey Quality in Selected Districts of West Hararghe Zone, Oromia Regional State. Advances in Applied Sciences, 10(3), 65-73. https://doi.org/10.11648/j.aas.20251003.13
ACS Style
Dugda, D.; Giza, S.; Dawud, S. Effect of Storage Time on Honey Quality in Selected Districts of West Hararghe Zone, Oromia Regional State. Adv. Appl. Sci. 2025, 10(3), 65-73. doi: 10.11648/j.aas.20251003.13
@article{10.11648/j.aas.20251003.13, author = {Dema Dugda and Segni Giza and Sudi Dawud}, title = {Effect of Storage Time on Honey Quality in Selected Districts of West Hararghe Zone, Oromia Regional State }, journal = {Advances in Applied Sciences}, volume = {10}, number = {3}, pages = {65-73}, doi = {10.11648/j.aas.20251003.13}, url = {https://doi.org/10.11648/j.aas.20251003.13}, eprint = {https://article.sciencepublishinggroup.com/pdf/10.11648.j.aas.20251003.13}, abstract = {This study was conducted to identify the effect of storage time on honey quality in West Hararghe zone. A structured questionnaire interview and checklist were the main tools used to gather primary data from the households. The household data were collected from 96 beekeepers in three districts of west hararghe zone. For the physicochemical analysis, honey was harvested from frame beehive of a single farmer and stored in a glass jar for 3, 6 and 9 months and analyzed for moisture, pH, free acidity, glucose, fructose, sucrose and HMF. Majority of the beekeepers owned traditional beehives. The average beekeeping experience of the sample beekeepers was 10.25 years with the range varying from 1 to 40 years of continued engagement in beekeeping. From the total number of respondents 79.2 were store honey for different purposes up to one year. Beekeepers store their honey in different sizes and types of materials available in the area with the most common being Plastic bucket (46.4%), followed by Plastic bucket and “qil” (29.8%), Plastic bucket,”qil” and “Tanika” (11.9%) and “Tanika” and plastic bucket (6%). From the respondents 97.9% were smoke the hive during honey harvesting and 53.1 said it has no effect on honey quality. Beekeepers identified Olea spp, Vernonia spp, cow dung, Juniperus procera and Carissa spinarum as major smoking material in the study area. The results of the physicochemical analysis indicated all the samples are within the acceptable range of world and Ethiopian honey quality standards with moisture (20.6%), free acidity (34.4 meq/kg), pH (4.6), glucose (30.8%), fructose (33.4%), sucrose (3%) and HMF (8.5 mg/kg). From this study it was revealed that the quality of honey produced in the area was good during the nine month storage time.}, year = {2025} }
TY - JOUR T1 - Effect of Storage Time on Honey Quality in Selected Districts of West Hararghe Zone, Oromia Regional State AU - Dema Dugda AU - Segni Giza AU - Sudi Dawud Y1 - 2025/07/30 PY - 2025 N1 - https://doi.org/10.11648/j.aas.20251003.13 DO - 10.11648/j.aas.20251003.13 T2 - Advances in Applied Sciences JF - Advances in Applied Sciences JO - Advances in Applied Sciences SP - 65 EP - 73 PB - Science Publishing Group SN - 2575-1514 UR - https://doi.org/10.11648/j.aas.20251003.13 AB - This study was conducted to identify the effect of storage time on honey quality in West Hararghe zone. A structured questionnaire interview and checklist were the main tools used to gather primary data from the households. The household data were collected from 96 beekeepers in three districts of west hararghe zone. For the physicochemical analysis, honey was harvested from frame beehive of a single farmer and stored in a glass jar for 3, 6 and 9 months and analyzed for moisture, pH, free acidity, glucose, fructose, sucrose and HMF. Majority of the beekeepers owned traditional beehives. The average beekeeping experience of the sample beekeepers was 10.25 years with the range varying from 1 to 40 years of continued engagement in beekeeping. From the total number of respondents 79.2 were store honey for different purposes up to one year. Beekeepers store their honey in different sizes and types of materials available in the area with the most common being Plastic bucket (46.4%), followed by Plastic bucket and “qil” (29.8%), Plastic bucket,”qil” and “Tanika” (11.9%) and “Tanika” and plastic bucket (6%). From the respondents 97.9% were smoke the hive during honey harvesting and 53.1 said it has no effect on honey quality. Beekeepers identified Olea spp, Vernonia spp, cow dung, Juniperus procera and Carissa spinarum as major smoking material in the study area. The results of the physicochemical analysis indicated all the samples are within the acceptable range of world and Ethiopian honey quality standards with moisture (20.6%), free acidity (34.4 meq/kg), pH (4.6), glucose (30.8%), fructose (33.4%), sucrose (3%) and HMF (8.5 mg/kg). From this study it was revealed that the quality of honey produced in the area was good during the nine month storage time. VL - 10 IS - 3 ER -