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Effects of mercury binding by humic acid and humic acid resistance on mercury stress in rice plants under high Hg/humic acid concentration ratios

机译:腐殖酸和腐殖酸抗性对高清/腐殖酸浓度比下水稻植物汞应力的影响

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Due to the nonsystematic nature of previous studies on mercury (Hg) mobility with humic substances (HS) in terrestrial ecosystems and the uncertainty of Hg accumulation in plants, oxygen-rich humic acid (HA), which is the main component of HS, was used as the target in this study. Batch sorption tests and a series of pot experiments were designed to investigate the effect of HS on Hg binding and therefore Hg uptake in rice plants under extreme conditions, i.e., a high Hg/HS concentration ratio. The results showed that HA was eligible for Hg binding, though it has a tiny proportion of sulfur according to its characteristics analysis. The binding of HA and Hg was a chemisorption process in a single layer that followed the pseudo-second order and Langmuir models, and it was also verified that the pH was dependent on the ion strength associated with high Hg/HA concentration ratios. Based on the pot experiments, the performance of HA with Hg was investigated. The Hg in the toxicity characteristic leaching procedure (TCLP) leachate under high Hg/HA concentration ratios declined significantly, and accordingly, all treatments met the concentration criteria of 0.1 mg/1 (GB 5085.3-2007) for wastes after 30 days of exposure. At concentration ratios of 50,25, and 10 μg Hg/mg HA, we observed that HA application promoted rice plant growth, as reflected in the increase of fresh weight of different organs. Regarding accumulation in the soil-plant system, the degradation of HA to smaller molecules by rhizosphere microorganisms and organic acids in roots made HA available for plant uptake through the vascular bundle in roots, thus promoting Hg transformation in plants to a certain extent. However, considering the decline in available Hg in the soil, the Hg concentrations of roots, straw, and grains in the ripening stage were found to be lower than those in the standalone Hg treatments. HA clearly has a direct effect on Hg and an indirect influence on plants exposed to Hg under extreme conditions (very high Hg/HA concentration ratios); thus, the biogeo-chemical behavior of Hg at high Hg/HA concentration ratios should be considered and further investigated.
机译:由于前系统的性质对麦芽生态系统中腐殖质(HG)汞(HS)的研究以及植物中HG积累的不确定度,富含HS的富含HS的腐殖酸(HA),是HS的主要成分用作本研究中的目标。批量吸附试验和一系列罐实验旨在探讨HS对Hg结合的影响,因此在极端条件下的稻草中的Hg摄取,即高Hg / hs浓度比。结果表明,HA有资格获得HG结合,但由于其特征分析具有微小的硫比例。 Ha和Hg的结合是在伪二阶和朗米尔模型之后的单层中的化学吸附过程,并且还验证了pH取决于与高Hg / ha浓度比相关的离子强度。基于盆栽实验,研究了HA与Hg的性能。毒性特征浸出程序(TCLP)在高HG / HA浓度比下的渗滤液显着下降,因此,所有治疗均匀地达到30天暴露后的废物0.1mg / 1(GB 5085.3-2007)的浓度标准。在50,25和10μgHg/ mg ha的浓度比,我们观察到HA应用促进水稻植物生长,反映在不同器官的鲜重量的增加中。关于土壤 - 植物系统的积累,根际微生物和根系中的较小分子的降解在根中通过血管束的植物摄取,从根系中获得植物,从而在一定程度上促进植物中的Hg转化。然而,考虑到土壤中可用的Hg的下降,发现成熟阶段的根部,秸秆和谷物的Hg浓度低于独立的Hg处理中的根部,秸秆和颗粒。 HA显然对HG直接影响,对暴露于HG的植物在极端条件下(非常高的Hg / HA浓度比);因此,应考虑并进一步研究Hg在高Hg / ha浓度比下的生物盖 - 化学行为。

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