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首页> 外文期刊>Environmental Science and Pollution Research >Influence of earthworm bioturbation on metals phytoavailability and human gastric bioaccessibility
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Influence of earthworm bioturbation on metals phytoavailability and human gastric bioaccessibility

机译:蚯蚓生物扰动对植物植物植物植物和人胃生物的影响

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At the global scale, urban agriculture is increasingly developing in cities due to demographic growth and sustainable food concerns. But, urban soils are frequently polluted with metals, hi urban gardens, organic matter is also commonly added both to valorize organic household waste and to promote biophysicochemical fertility. As earthworms promote the decomposition and the recycling of soil organic matter, they can also influence the biogeochemical cycle of metals in urban polluted soils. In order to produce safe vegetables in urban areas, it is crucial to highlight the mechanisms involved in complex soil-earthworm-plant ecosystems. An experiment was set up to examine these relationships using lettuce cultivated in controlled conditions with RHIZOtest? devices. Thanks to the RHIZOtest? devices, metal transfer and bioaccessibility were for the first time compared for urban polluted soil without (1-urban soil polluted with Pb, Cd, Cu, and Zn: essential or toxic metals currently found in environment, SNB) and with bioturbation (2-this metal-polluted soil subjected to earthworm bioturbation, SB) and earthworm casts (3-earthworm casts produced in this polluted soil and naturally enriched in organic matter and microorganisms, T). Metal concentration, phytoavailability, and human gastric bioaccessibility were determined in the different samples. Results showed that earthworm bioturbation increased the phytoavailability of all the metals. For the experimental condition SB, the phytoavailability of metals was increased up to 75% compared to SNB. In addition, surprisingly, metal phytoavailability was always superior in SB compared to earthworm casts (T). Moreover, earthworms led to an increase in Zn gastric bioaccessibility up to 10% in the soils in the same way as for phytoavailability, meaning Zn bioaccessibility in SB>T>SNB, whereas it remained unchanged in the lettuces. These data are important to promote sustainable agriculture activities in urban areas; actually, databases concerning different experimental conditions are needed to develop decision support tools.
机译:在全球范围内,由于人口统计增长和可持续的食物问题,城市农业越来越发展地发展。但是,城市土壤经常用金属污染,嗨都市花园,有机物也常用,既富含有机家庭废物,均促进生物物理化素生育。随着蚯蚓促进分解和土壤有机物质的再循环,它们还可以影响城市污染土壤中金属的生物地球化学循环。为了在城市地区生产安全的蔬菜,突出突出复杂的土壤 - 蚯蚓植物生态系统的机制至关重要。设立了一个实验,以检查这些关系,使用莴苣在受控条件下用根序培养吗?设备。感谢无根石器?装置,金属转移和生物有效性分别用于无城市污染土壤相比于第一时间(1-城市土壤与铅,镉,铜和锌污染:基本的或有毒金属目前的环境中,发现SNB),并用生物扰动(2-这种金属污染的土壤经受蚯蚓生物疾病,Sb)和蚯蚓施放(在这种污染的土壤中生产的3蚯蚓铸件,并在有机物和微生物中自然富集,T)。在不同的样品中测定金属浓度,植物植物和人胃生物可接受性。结果表明,蚯蚓生物扰动增加了所有金属的植物。对于实验条件SB,与SNB相比,金属的植物可利用率高达75%。此外,令人惊讶的是,与蚯蚓施放(T)相比,金属植物植物植物普遍优异。此外,蚯蚓导致在土壤中增加Zn胃生物可接定性,以与植物植物有相同的方式相同,意味着Sb> T> Snb中的Zn Biocrocessibily,而在莴苣中保持不变。这些数据对于促进城市地区的可持续农业活动很重要;实际上,需要有关不同实验条件的数据库来开发决策支持工具。

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