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Granulated Bog Iron Ores as Sorbents in Passive (Bio)Remediation Systems for Arsenic Removal

机译:钝化(生物)修复系统中作为吸附剂的颗粒状沼泽铁矿石作为除砷剂

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摘要

The main element of PbRS (passive (bio)remediation systems) are sorbents, which act as natural filters retaining heavy metals and carriers of microorganisms involved in water treatment. Thus, the effectiveness of PbRS is determined by the quality of the (ad)sorbents, which should be stable under various environmental conditions, have a wide range of applications and be non-toxic to (micro)organisms used in these systems. Our previous studies showed that bog iron ores (BIOs) meet these requirements. However, further investigation of the physical and chemical parameters of BIOs under environmental conditions is required before their large-scale application in PbRS. The aim of this study was (i) to investigate the ability of granulated BIOs (gBIOs) to remove arsenic from various types of contaminated waters, and (ii) to estimate the application potential of gBIOs in technologies dedicated to water treatment. These studies were conducted on synthetic solutions of arsenic and environmental samples of arsenic contaminated water using a set of adsorption columns filled with gBIOs. The experiments performed in a static system revealed that gBIOs are appropriate arsenic and zinc adsorbent. Dynamic adsorption studies confirmed these results and showed, that the actual sorption efficiency of gBIOs depends on the adsorbate concentration and is directly proportional to them. Desorption analysis showed that As-loaded gBIOs are characterized by high chemical stability and they may be reused for the (ad)sorption of other elements, i.e., zinc. It was also shown that gBIOs may be used for remediation of both highly oxygenated waters and groundwater or settling ponds, where the oxygen level is low, as both forms of inorganic arsenic (arsenate and arsenite) were effectively removed. Arsenic concentration after treatment was <100 μg/L, which is below the limit for industrial water.
机译:PbRS(被动(生物)修复系统)的主要元素是吸附剂,它们充当天然过滤器,保留重金属和参与水处理的微生物载体。因此,PbRS的有效性取决于吸附剂的质量,吸附剂的质量在各种环境条件下应稳定,具有广泛的应用范围,并且对这些系统中使用的微生物无毒。我们以前的研究表明,大铁矿石(BIO)符合这些要求。但是,在将其大规模应用于PbRS之前,需要进一步研究其在环境条件下的物理和化学参数。这项研究的目的是(i)研究颗粒状BIOs(gBIOs)从各种类型的污染水中去除砷的能力,以及(ii)估计gBIOs在致力于水处理技术中的应用潜力。这些研究是使用一组充满gBIO的吸附柱对砷的合成溶液和砷污染水的环境样品进行的。在静态系统中进行的实验表明,gBIOs是合适的砷和锌吸附剂。动态吸附研究证实了这些结果,并表明,gBIO的实际吸附效率取决于被吸附物的浓度,并与它们成正比。解吸分析表明,载有砷的gBIO具有很高的化学稳定性,可以重新用于其他元素(锌)的(吸附)吸附。还显示出,gBIO可用于高氧含量的水和地下水或氧含量低的沉降池的修复,因为两种形式的无机砷(砷酸盐和亚砷酸盐)均被有效去除。处理后的砷浓度<100μg/ L,低于工业用水的限值。

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