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Emission reduction process for dechlorinating flue‐gas desulfurization gypsum and reducing wastewater effluents: Application prospects from laboratory‐scale studies

机译:减排脱氯烟气脱硫石膏和减少废水污水的减排方法:实验室规模研究的应用前景

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The treatment of flue‐gas desulfurization (FGD) gypsum, a common solid waste material that is often affected by chloride ions, typically occupies large amounts of land, causes resource waste, and results in environmental pollution. An emission reduction process involving the dechlorination of FGD gypsum and reducing its emissions has been proposed to solve these problems. Laboratory experiments were conducted to verify the feasibility of the emission reduction process and study any differences from the conventional process. The test results indicated that the average dechlorination rate of the emission reduction process was 80.4%, which is equivalent to 97.5% of the conventional process. The average dechlorination wastewater volume of the emission reduction process was 0.22?L, which is equivalent to 4.9% of the conventional process. The results show that the emission reduction process can effectively reduce the chlorine content of FGD gypsum and its related wastewater discharge. This novel gypsum dechlorination process effectively reduces the chlorine content of FGD gypsum and related wastewater. In addition, the emission reduction process can lead to greater recovery of renewable resources and can result in a cleaner energy conversion process. This process is an alternative method for recovering residues and resources without secondary pollution. Therefore, if this technology is integrated into existing FGD facilities, costly chemical processes could be replaced by those that recover a renewable resource and incorporate a clean energy conversion process.
机译:烟道气脱硫(FGD)石膏的处理,通常受氯离子影响的普通固体废料,通常占据大量土地,导致资源浪费,导致环境污染。提出了涉及FGD石膏脱氯并降低其排放的减排过程来解决这些问题。进行实验室实验以验证减排过程的可行性,并研究与常规过程的任何差异。测试结果表明,排放减排过程的平均脱氯率为80.4%,相当于常规过程的97.5%。减排过程的平均脱氯废水体积为0.22μl,其等同于常规方法的4.9%。结果表明,排放减排过程可以有效降低FGD石膏的氯含量及其相关废水排放。这种新型石膏脱氯过程有效降低了FGD石膏和相关废水的氯含量。此外,减排过程可导致可再生资源的恢复更大,可导致更清洁的能量转换过程。该过程是恢复残留物和资源而无二次污染的替代方法。因此,如果该技术被整合到现有的FGD设施中,昂贵的化学过程可能会被那些恢复可再生资源的化学过程,并包含清洁能源转换过程。

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