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Effects of sample processing on arsenic speciation in marine macroalgae

机译:样品处理对海洋大型藻类中砷形态的影响

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The stability of arsenic species in environmental samples during sampling, storage and processing is crucial for speciation studies. Losses, interconversion and degradation of arsenocompounds can occur during these steps as a result of the interaction with the container material, microbial activity and temperature or light. In order to study the possible effects of storage and processing on arsenic compounds, subsamples of alga Cystoseira mediterranea Sauvageau were stored under different conditions (non-frozen; frozen at a?’18 ?°C for 24 h and 45 days; frozen at a?’80 ?°C for 24 h and 45 days) and subjected to one of the following processing methods: chopping into fine pieces with a knife; grinding by hand in a glass mortar under N2(l); drying under an air current at room temperature (25 ?°C); drying in an oven at 40 ?°C; lyophilization. The total contents of arsenic and arsenic compounds were then determined in these subsamples. Non-frozen subsamples were of 150 mg As per kg while frozen-defrosted samples were of 92 mg As per kg. Nevertheless, in spite of this loss in content, the proportion of arsenic compounds was maintained in both cases. Our results indicate that freezing is an unsuitable storage method for macroalgae because losses of arsenic may occur. We recommend a drying method for this purpose.
机译:采样,储存和加工过程中环境样品中砷物种的稳定性对于物种研究至关重要。在这些步骤中,由于与容器材料的相互作用,微生物活性以及温度或光线的影响,砷化合物的损失,相互转化和降解会发生。为了研究储存和加工对砷化合物的可能影响,将藻类半胱氨酸藻子样品在不同条件下储存(非冷冻;在18°C下冷冻24小时和45天;在80℃下冷冻)。在80℃(24小时和45天)下进行以下加工方法之一:用刀切成小块;在N2(l)下在玻璃研钵中用手研磨;在室温(25°C)的气流下干燥;在40℃的烤箱中干燥;冻干。然后在这些子样品中确定砷和砷化合物的总含量。非冷冻子样品为150 mg As / kg,而冷冻解冻样品为92 mg As / kg。然而,尽管这种含量减少,但是在两种情况下都保持了砷化合物的比例。我们的结果表明,冷冻是不适合大型藻类的存储方法,因为可能会损失砷。为此,我们建议使用干燥方法。

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