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Mitigating the level of cadmium in cacao products: Reviewing the transfer of cadmium from soil to chocolate bar

机译:减轻可可产品的镉水平:审查将镉从土壤转移到巧克力棒

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摘要

The new EU regulation on cadmium (Cd) in cacao-derived products affects the cacao market worldwide. Here, we reviewed the journey of Cd from soil to chocolate bar and collated current data on the topic, giving due attention to data quality. Cacao bean Cd concentrations are typically about a factor two larger compared to the soil on which the cacao tree grows, this is high but not unusual and, therefore, the cacao plant is not classified as a Cd hyperaccumulator. Mean Cd concentrations in cacao beans range 0.02-12 mg Cd kg~(-1) and are markedly higher in Latin America, where more than half of cacao bean samples exceed the commonly applied threshold for export to the EU (0.60 mg kg~(-1)). This regional enrichment is related to relatively high soil Cd concentrations in the young soils of Latin America. The source of Cd is, in general, likely geogenic rather than derived from phosphate fertilizers or contamination. A meta-analysis of 780 soil-plant paired data shows that soil Cd, soil pH and soil organic carbon largely explain cacao bean Cd concentrations. Detection of effects of cultivars. soil treatments or agronomic practices are strongly hampered by the spatial variability in phytoavailable soil Cd concentrations. Application of lime or biochar has the potential to lower bean Cd in acid soils. In the long-term, breeding low Cd cultivars likely provides the highest potential for mitigation but genetics and breeding research is currently limited by the lack of understanding of how Cd is loaded into the developing cacao fruit of this cauliflorous tree. Post-harvest practices such as fermentation can slightly lower Cd concentrations in the final product but also play a large role in product quality. In the short term, mixing of cacao from different origins may be the most feasible strategy to meet the EU limits.
机译:可可衍生产品中镉(CD)的新欧盟调节影响全球可可市场。在这里,我们审查了从土壤到巧克力棒的CD的旅程,并在主题上进行了当前数据,促进了数据质量。与可可树长的土壤相比,Cacao Bean CD浓度通常是大约两个更大的因子,这是高但不具有异常的,因此即可植物不被归类为CD超读数器。 CaCao Beans的平均Cd浓度范围为0.02-12mg CD kg〜(-1),在拉丁美洲显着较高,其中超过一半的可可豆样品超过常用阈值以出口到欧盟(0.60 mg kg〜( -1))。这种区域富集与拉丁美洲的年轻土壤中的土壤CD浓度相对高。一般而言,CD的来源可能是造环而不是衍生自磷酸盐肥料或污染。 780个土壤植物配对数据的荟萃分析表明,土壤CD,土壤pH和土壤有机碳大部分解释了可可豆CD浓度。检测品种效果。通过植物可利用土壤Cd浓度的空间变异,土壤治疗或农艺实践受到强烈阻碍。石灰或生物炭的应用具有降低酸性土壤中的豆CD。在长期来看,育种低CD品种可能提供缓解的最高潜力,但遗传和育种研究目前受到缺乏了解CD如何装入该花椰菜植物的显影性果实。收获后的诸如发酵的后果可以在最终产品中略低较低CD浓度,但也在产品质量方面发挥着重要作用。在短期内,从不同起源中的可可的混合可能是满足欧盟限制的最可行策略。

著录项

  • 来源
    《Science of the total environment》 |2021年第10期|146779.1-146779.19|共19页
  • 作者单位

    Division of Soil and Water Management Department of Earth and Environmental Sciences KU Leuven Belgium;

    Division of Soil and Water Management Department of Earth and Environmental Sciences KU Leuven Belgium Escuela Superior Politecnica del Litoral ESPOL Facultad de Ciencias de la Vida Campus Gustavo Galindo Km. 30.5 Via Perimetral P.O. Box 09-01-5863 Guayaquil Ecuador;

    Universite Grenoble Alpes Universite Savoie Mont Blanc CNRS IRD IFSTTAR ISTERRE Grenoble France;

    Division of Soil and Water Management Department of Earth and Environmental Sciences KU Leuven Belgium;

    Department of Renewable Resources University of Alberta Edmonton Canada Instituto de Cultivos Tropicales (ICT) Tarapoto Peru;

    Geosciences Environment Toulouse (GET) Observatoire Midi Pyrenees Universite de Toulouse CNRS IRD 14 avenue E. Belin 31400 Toulouse France;

    Geosciences Environment Toulouse (GET) Observatoire Midi Pyrenees Universite de Toulouse CNRS IRD 14 avenue E. Belin 31400 Toulouse France;

    Department of Environmental Systems Science ETH Zurich Switzerland;

    Cocoa Research Centre The University of the West Indies St. Augustine Campus Trinidad and Tobago;

    Escuela Superior Politecnica del Litoral ESPOL Facultad de Ciencias de la Vida Campus Gustavo Galindo Km. 30.5 Via Perimetral P.O. Box 09-01-5863 Guayaquil Ecuador Bioeconomics Unit Department of Earth and Environmental Sciences KU Leuven Belgium;

    Cocoa Research Centre The University of the West Indies St. Augustine Campus Trinidad and Tobago;

    Escuela Superior Politecnica del Litoral ESPOL Facultad de Ciencias de la Vida Campus Gustavo Galindo Km. 30.5 Via Perimetral P.O. Box 09-01-5863 Guayaquil Ecuador;

    Universite Grenoble Alpes Universite Savoie Mont Blanc CNRS IRD IFSTTAR ISTERRE Grenoble France;

    Division of Soil and Water Management Department of Earth and Environmental Sciences KU Leuven Belgium;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Theobroma cacao L.; Cadmium; Soil-plant meta-analysis; Cadmium uptake; Cadmium translocation; Mitigation strategies;

    机译:Theobroma cacao l。 镉;土壤植物荟萃分析;镉吸收;镉易位;缓解策略;

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