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首页> 外文期刊>Journal of Marine Science and Engineering >Microparticles in Table Salt: Levels and Chemical Composition of the Smallest Dimensional Fraction
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Microparticles in Table Salt: Levels and Chemical Composition of the Smallest Dimensional Fraction

机译:食盐中的微粒:最小尺寸级分的水平和化学组成

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This study evaluates the chemical composition of microplastic materials (MPs) and non-synthetic particles in different table salts of marine origin by the μFT-IR technique. This research focuses on the microparticles fraction within 10–150 μm of size. Eleven commercial trademarks coming from Italy (IT = 6) and Croatia (CRO = 5) were grouped in two different cost ranges, cheap ( n = 5) and expensive ( n = 6) and were analysed in replicates ( n = 3). Levels and chemical composition of microparticles measured in commercial products were correlated on a statistical basis to some factors of variability of potential scientific interest (geographical origin of marine salt, cost of commercial products, etc.). Results of analyses performed on the tested size fraction of microparticles (10–150 μm) evidence that: (i) levels of MPs are within 0.17–0.32 items/g (IT) and 0.07–0.20 items/g (CRO); (ii) non-synthetic particles detected are mostly made by fibres made of cellulose acetate; (iii) Nations show a different chemical composition of MPs recovered in analysed trademarks (PET and PVC from Italy; PA, PP, and nylon from Croatia); (iv) the annual amount ingested by humans from marine salt consumption ranges between 131.4–372.3 items/y (CRO) and 306.6–580.35 items/y (IT) considering a dose of 5 g of salt per day; (v) statistics performed on factors of interest evidenced that the geographical origin of marine salt do not affect neither levels nor chemical composition of MPs in tested trademarks; while slight correlations are recorded with non-synthetic particles. Further studies are needed to better explore on statistical basis if both levels and chemical composition of MPs in table salts of marine origin can be used or not as good indicators of marine pollution.
机译:这项研究通过μFT-IR技术评估了海洋来源的不同食盐中的微塑性材料(MPs)和非合成颗粒的化学成分。这项研究的重点是粒径在10–150μm范围内的微粒。来自意大利(IT = 6)和克罗地亚(CRO = 5)的11种商业商标被分为两个不同的成本范围,便宜(n = 5)和昂贵(n = 6),并进行了重复分析(n = 3)。在统计基础上,将商品中测得的微粒的水平和化学成分与潜在的科学兴趣的可变性的某些因素(海盐的地理来源,商品的成本等)相关联。对测试的微粒尺寸分数(10–150μm)进行的分析结果表明:(i)MP的含量在0.17–0.32项目/ g(IT)和0.07–0.20项目/ g(CRO)之内; (ii)检测到的非合成颗粒主要是由醋酸纤维素制成的纤维制成的; (iii)各国显示出以分析商标(意大利的PET和PVC;克罗地亚的PA,PP和尼龙)回收的MP的化学成分不同; (iv)考虑每天摄入5克盐,人类每年从海洋盐消费中摄入的盐量在131.4-372.3项/年(CRO)和306.6-580.35项/年(IT)之间; (v)对感兴趣的因素进行的统计证明,海盐的地理来源既不影响测试商标中MP的含量也不影响其化学成分;而与非合成粒子之间存在轻微的相关性。需要进一步研究以在统计基础上更好地探索海洋起源食用盐中MP的含量和化学组成是否可以用作海洋污染的良好指标。

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