Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Mineral and Trace Element Analysis of Australian/Queensland Apis mellifera Honey

View through CrossRef
Honey is an extensively utilized sweetener containing sugars and water, together with small quantities of vitamins, minerals, fatty acids, amino acids and proteins. Naturally produced by honeybees (Apis mellifera) from floral nectar, honey is increasingly sold as a health food product due to its nutritious features. Certain honeys are retailed as premium, trendy products. Honeybees are regarded as environmental monitors, but few reports examine the impact of environment on Australian honey trace elements and minerals. In higher density urban and industrial environments, heavy metals can be common, while minerals and trace elements can have ubiquitous presence in both agricultural and urban areas. Honey hives are traditionally placed in rural and forested areas, but increasingly the trend is to keep hives in more urban areas. This study aimed to determine the levels of 26 minerals and trace elements and assess elemental differences between honeys from various regional Queensland and Australian sources. Honey samples (n = 212) were acquired from markets, shops and supermarkets in Queensland while urban honeys were purchased online. The honey samples were classified into four groups according to their regional sources: urban, rural, peri-urban and blend honey. Elemental analyses of honey were performed using ICP-MS and ICP-OES after microwave and hot block digestion. Considerable variations of essential trace elements (Co, Cu, Cr, Fe, Mn, Mo and Zn) and mineral levels (Ca, K, Mg, Na and P) were found in honeys surveyed. There were significant differences (p < 0.05) between urban and rural honey samples for B, Na, P, Mn, K, Ca and Cu. Significant differences (p < 0.05) were also found between blend and urban honey samples for K, Cu, P, Mn, Sr, Ni, B and Na. Peri-urban versus urban honeys showed significant differences in P, K and Mn. For rural and peri-urban honeys, the only significant difference (p < 0.05) was for Na. Toxic heavy metals were detected at relatively low levels in honey products. The study revealed that the Queensland/Australian honey studied is a good source of K and Zn and would constitute a good nutritional source of these elements.
Title: Mineral and Trace Element Analysis of Australian/Queensland Apis mellifera Honey
Description:
Honey is an extensively utilized sweetener containing sugars and water, together with small quantities of vitamins, minerals, fatty acids, amino acids and proteins.
Naturally produced by honeybees (Apis mellifera) from floral nectar, honey is increasingly sold as a health food product due to its nutritious features.
Certain honeys are retailed as premium, trendy products.
Honeybees are regarded as environmental monitors, but few reports examine the impact of environment on Australian honey trace elements and minerals.
In higher density urban and industrial environments, heavy metals can be common, while minerals and trace elements can have ubiquitous presence in both agricultural and urban areas.
Honey hives are traditionally placed in rural and forested areas, but increasingly the trend is to keep hives in more urban areas.
This study aimed to determine the levels of 26 minerals and trace elements and assess elemental differences between honeys from various regional Queensland and Australian sources.
Honey samples (n = 212) were acquired from markets, shops and supermarkets in Queensland while urban honeys were purchased online.
The honey samples were classified into four groups according to their regional sources: urban, rural, peri-urban and blend honey.
Elemental analyses of honey were performed using ICP-MS and ICP-OES after microwave and hot block digestion.
Considerable variations of essential trace elements (Co, Cu, Cr, Fe, Mn, Mo and Zn) and mineral levels (Ca, K, Mg, Na and P) were found in honeys surveyed.
There were significant differences (p < 0.
05) between urban and rural honey samples for B, Na, P, Mn, K, Ca and Cu.
Significant differences (p < 0.
05) were also found between blend and urban honey samples for K, Cu, P, Mn, Sr, Ni, B and Na.
Peri-urban versus urban honeys showed significant differences in P, K and Mn.
For rural and peri-urban honeys, the only significant difference (p < 0.
05) was for Na.
Toxic heavy metals were detected at relatively low levels in honey products.
The study revealed that the Queensland/Australian honey studied is a good source of K and Zn and would constitute a good nutritional source of these elements.

Related Results

Trooping the (School) Colour
Trooping the (School) Colour
Introduction Throughout the early and mid-twentieth century, cadet training was a feature of many secondary schools and educational establishments across Australia, with countless ...
The Secure Computation Application Programming Interface Using The ARAS Method
The Secure Computation Application Programming Interface Using The ARAS Method
An Application Programming Interface (API) entails guidelines, Principles and an array of utilities, it stands as distinct software Applications interacting with one another commun...
Pemberdayaan Petani Lebah Madu Desa Kutosari melalui Diversifikasi Madu
Pemberdayaan Petani Lebah Madu Desa Kutosari melalui Diversifikasi Madu
One of the advantages of Kutosari Village is that it is a village that produces pure honey, because many of its people work as honey bee farmers. Honey bee farmers use existing for...
Apis Mellifera Animal Study in a Role Perspective Using the Bibliometrix Tools (SLNA Method Application)
Apis Mellifera Animal Study in a Role Perspective Using the Bibliometrix Tools (SLNA Method Application)
There is no research on the study of Apis mellifera using bibliometrix tools. This study aims to determine the results of the study of Apis mellifera in a role perspective using Bi...
Majra Honey Abrogated the Normal and Cancer Cells Proliferation Inhibition by Juniperus procera Extract and Extract/Honey Generated AgNPs
Majra Honey Abrogated the Normal and Cancer Cells Proliferation Inhibition by Juniperus procera Extract and Extract/Honey Generated AgNPs
Background: Juniperus procera and Majra honey are well-known as a folk medicine in many countries. Objectives: This work aimed to study the immunomodulatory effects after mixing ...
Microbial and antibiotic contaminants in imported and locally produced honey in the Tamale metropolis of the northern region of Ghana
Microbial and antibiotic contaminants in imported and locally produced honey in the Tamale metropolis of the northern region of Ghana
Honey remains a valued natural product and has been used by humans as an important food source, disease treatment, and a healthy sugar source since ancient times. However, recent r...
Physicochemical Properties and Antioxidant Activity of Multiflora Honey from Kerinci, Jambi
Physicochemical Properties and Antioxidant Activity of Multiflora Honey from Kerinci, Jambi
Honey is a sweet, syrup-like substance that bees (Apis sp.) produce from the nectar of flowering plants. The aim of this study was to examine the physicochemical properties and ant...

Back to Top