可可豆中有毒金属的吸收和体外生物可及性:人类健康风险。

IF 3.2 3区 环境科学与生态学 Q3 ENGINEERING, ENVIRONMENTAL
Emmanuel Frimpong, Edward Ankapong, Kwadwo Owusu Boakye, Eugene Ansah, Opoku Gyamfi, Benedict Barnes, Matt Dodd, Godfred Darko
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引用次数: 0

摘要

加纳可可种植区的采矿活动增加,影响了可可种植,土壤中潜在有毒金属的浓度增加,这些金属可以在可可豆中积累。本研究评估了来自加纳矿区和非矿区可可农场的可可豆和土壤中潜在的有毒金属污染。我们使用x射线荧光和ICP-MS测定金属浓度,并使用塞曼汞分析仪测定汞。土壤pH值为4.08 ~ 6.86,电导率为29.16 ~ 870.50 μS/cm,有机质含量为4.78 ~ 7.38%。总体而言,土壤中的金属浓度在加拿大农业土壤质量指南、荷兰目标和干预值以及未污染土壤的世界平均土壤范围内,但在研究区域之间存在差异。可可豆中含有砷(1.20 ~ 1.33 mg/kg)、镉(2.68 ~ 3.16 mg/kg)、铬(9.31 ~ 11.73 mg/kg)、铜(59.69 ~ 70.88 mg/kg)、汞(0.008 ~ 0.017 mg/kg)、锰(18.90 ~ 23.68 mg/kg)、镍(10.19 ~ 11.76 mg/kg)、铅(1.71 ~ 1.86 mg/kg)和锌(80.20 ~ 87.34 mg/kg)。除砷、铜、铅外,可可豆对其他金属的平均生物可及性均大于60%。镉在土壤中的污染程度较高;地质富集(Igeo b>)、污染因子(CF > 18)和富集因子(EF > 70.21),而Cu和Zn具有较高的生物富集(BF > 4)。所有农场金属的目标危害商值均显示没有潜在健康风险(THQ)
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Uptake and in-vitro bioaccessibility of toxic metals in cocoa beans: Human health risks.

Cocoa-growing areas in Ghana have experienced a rise in mining activities affecting cocoa cultivation and increased concentrations of potentially toxic metals in the soil, which can accumulate in cocoa beans. This study evaluated potential toxic metal contamination in cocoa beans and soils from cocoa farms in mining and non-mining areas in Ghana. We used X-ray fluorescence and an ICP-MS to determine metal concentrations, and a Zeeman mercury analyzer to determine mercury. The farm soils exhibited a pH range of 4.08 - 6.86, electrical conductivity between 29.16 and 870.50 μS/cm, and soil organic matter content ranging from 4.78 to 7.38%. Generally, metal concentrations in the soil were within the Canadian Soil Quality Guidelines for Agricultural soils, Dutch Target and Intervention Values, and the world average world soil for unpolluted soils but varied between study areas. Arsenic (1.20 - 1.33 mg/kg), cadmium (2.68 - 3.16 mg/kg), chromium (9.31-11.73 mg/kg), copper (59.69-70.88 mg/kg), mercury (0.008-0.017 mg/kg), manganese (18.90-23.68 mg/kg), nickel (10.19-11.76 mg/kg), lead (1.71-1.86 mg/kg), and zinc (80.20-87.34 mg/kg) were found in cocoa beans. The mean bioaccessibility for metals in cocoa beans, except for As, Cu, and Pb, was greater than 60%. Cadmium had high contamination in soil; geoaccumulation (Igeo > 3), contamination factor (CF > 18), and enrichment factor (EF > 70.21), while Cu and Zn had high bioaccumulation (BF > 4). The target hazard quotient value for metals in all farms showed no potential health risk (THQ < 1) for both children and adult consumers. The cocoa beans produced have low risk upon consumption.

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来源期刊
Environmental Geochemistry and Health
Environmental Geochemistry and Health 环境科学-工程:环境
CiteScore
8.00
自引率
4.80%
发文量
279
审稿时长
4.2 months
期刊介绍: Environmental Geochemistry and Health publishes original research papers and review papers across the broad field of environmental geochemistry. Environmental geochemistry and health establishes and explains links between the natural or disturbed chemical composition of the earth’s surface and the health of plants, animals and people. Beneficial elements regulate or promote enzymatic and hormonal activity whereas other elements may be toxic. Bedrock geochemistry controls the composition of soil and hence that of water and vegetation. Environmental issues, such as pollution, arising from the extraction and use of mineral resources, are discussed. The effects of contaminants introduced into the earth’s geochemical systems are examined. Geochemical surveys of soil, water and plants show how major and trace elements are distributed geographically. Associated epidemiological studies reveal the possibility of causal links between the natural or disturbed geochemical environment and disease. Experimental research illuminates the nature or consequences of natural or disturbed geochemical processes. The journal particularly welcomes novel research linking environmental geochemistry and health issues on such topics as: heavy metals (including mercury), persistent organic pollutants (POPs), and mixed chemicals emitted through human activities, such as uncontrolled recycling of electronic-waste; waste recycling; surface-atmospheric interaction processes (natural and anthropogenic emissions, vertical transport, deposition, and physical-chemical interaction) of gases and aerosols; phytoremediation/restoration of contaminated sites; food contamination and safety; environmental effects of medicines; effects and toxicity of mixed pollutants; speciation of heavy metals/metalloids; effects of mining; disturbed geochemistry from human behavior, natural or man-made hazards; particle and nanoparticle toxicology; risk and the vulnerability of populations, etc.
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