首页> 外文期刊>European Journal of Soil Science >Biogeochemical processes and arsenic enrichment around rice roots in paddy soil: results from micro-focused X-ray spectroscopy.
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Biogeochemical processes and arsenic enrichment around rice roots in paddy soil: results from micro-focused X-ray spectroscopy.

机译:水稻土中水稻根部周围的生物地球化学过程和砷富集:来自微聚焦X射线光谱的结果。

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摘要

The spatial distribution and speciation of iron (Fe), manganese (Mn) and arsenic (As) around rice roots grown in an As-affected paddy field in Bangladesh were investigated on soil sampled after rice harvest. Synchrotron micro-X-ray fluorescence spectrometry on soil thin sections revealed that roots influence soil Fe, Mn and As distribution up to 1 mm away from the root-soil interface. Around thick roots (diameter around 500 micro m), Mn was concentrated in discrete enrichments close to the root surface without associated As, whereas concentric Fe accumulations formed farther away and were closely correlated with As accumulations. Near thin roots (diameter <100 micro m), in contrast, a pronounced enrichment of Fe and As next to the root surface and a lack of Mn enrichments was observed. X-ray absorption fine structure spectroscopy suggested that (i) accumulated Fe was mainly contained in a two-line ferrihydrite-like phase, (ii) associated As was mostly As(V) and (iii) Mn enrichments consisted of Mn(III/IV) oxyhydroxides. The distinct enrichment patterns can be related to the extent of O2 release from primary and lateral rice roots and the thermodynamics and kinetics of Fe, Mn and As redox transformations. Our results suggest that in addition to Fe(III) plaque at the root surface, element accumulation and speciation in the surrounding rhizosphere soil must be taken into account when addressing the transfer of nutrients or contaminants into rice roots.
机译:在孟加拉国水稻田收获后的土壤上调查了铁根(Fe),锰(Mn)和砷(As)在水稻根周围的空间分布和形态。对土壤薄片进行同步X射线荧光光谱分析表明,根在距根-土壤界面最远1 mm处影响根系中Fe,Mn和As的分布。在粗根周围(直径约500微米),Mn集中在根部表面附近的离散富集区中,而没有相关的As,而同心的Fe积累则形成得更远,并且与As积累紧密相关。相反,在细根附近(直径<100微米),观察到根表面附近铁和砷明显富集,而锰缺乏。 X射线吸收精细结构光谱表明:(i)累积的Fe主要包含在两线铁水合物样相中;(ii)相关的As主要是As(V);(iii)Mn富集由Mn(III / IV)羟基氧化物。不同的富集模式可能与稻米根部和侧根中O 2 的释放程度以及Fe,Mn和As氧化还原转化的热力学和动力学有关。我们的结果表明,在处理营养物质或污染物向水稻根部转移时,除了根表面的铁(III)斑块外,还必须考虑周围根际土壤中的元素积累和形态。

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