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Use of Eggshell as a Low-Cost Biomaterial for Coal Mine-Impacted Water (MIW) Remediation: Characterization and Statistical Determination of the Treatment Conditions

机译:使用蛋壳作为煤矿冲击水(MIW)的低成本生物材料(MIW)修复:表征和统计测定治疗条件

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摘要

Eggshells (ESs), a low-cost biosorbent rich in calcium carbonate (CaCO3), were used to sustainably reduce the acidity and remove the Fe-(total), Al3+, and Mn-(total) ions from coal mine-impacted water (MIW). The surface area and pore volume of ES biomaterial were 5.692 m(2) g(-1) and 0.0567 cm(3) g(-1), respectively. The remediation process was performed in two consecutive stages, with Fe-(total) and Al3+ ions being removed in the first stage (treatment I) and the Mn-(total) ions in the second one (treatment II). The best treatment conditions, statistically determined through a central composite rotatable design (CCRD), were 6.59 g L-1 ES and 95 rpm agitation rate for treatment I and 28 g L-1 ES and 280 rpm agitation rate for treatment II. However, the high ES dosage in treatment II, determined by extrapolation, led in practice to the formation of particle aggregates that decreased the treatment efficiency. Therefore, the best values experimentally determined for treatment II were 25 g L-1 ES and 250 rpm. In these conditions, the overall treatment provided complete MIW acidity neutralization, total removal of the Fe-(total) and Al3+ ions, and 58% Mn-(total) ion removal, providing treated fluvial water adequate for non-potable use based on the analyzed parameters.
机译:蛋壳(ESS),一种富含碳酸钙(CaCO3)的低成本生物吸附剂,用于可持续地降低酸度,并从煤矿冲击水中除去Fe-(总),Al3 +和Mn-(总)离子( miw)。 ES生物材料的表面积和孔体积分别为5.692m(2)克(-1)和0.0567cm(3 )g(-1)。修复过程在两个连续阶段进行,用Fe-(总)和Al3 +离子在第一阶段(处理I)中除去,第二个(处理II)中的Mn-(总)离子)。通过中央复合可旋转设计(CCRD)统计测定的最佳治疗条件为6.59g L-1 ES和95rpm治疗I和28g L-1 ES和280rpm治疗搅拌速率。然而,通过外推的治疗II中的高ES剂量,在实践中实施颗粒聚集体的形成降低了治疗效率。因此,用于治疗II实验确定的最佳值为25g L-1 ES和250rpm。在这些条件下,整体处理提供了完全的MiW酸度中和,总除去Fe-(总)和Al3 +离子,以及58%Mn-(总)离子去除,提供了适用于基于的不可用使用的河流水。分析参数。

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