电凝法去除偶氮红 40 染料的参数评估

Q1 Social Sciences
Angel Villabona-Ortíz, Candelaria Tejada-Tovar, Diego Navarro-Romero
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引用次数: 0

摘要

本研究的目的是通过确定电压和处理时间等操作参数的影响,评估影响间歇系统电凝去除合成废水中偶氮染料红 40 的效率的参数。用聚氯乙烯管和相距 2 厘米的螺钉搭建了一个 12×6 厘米的铁电极支架,并用一个 1 升的烧杯作为电凝池。对红色 40 的合成废水样品进行了表征,用紫外可见分光光度法测量在电凝池中处理前后的吸光度。评估了电压(10、15 和 20 V)和处理时间(最长 60 分钟)的影响。结果表明,当电压为 10 V 时,60 分钟的去除率高达 93.85%,而温度变化较小,能耗仅为 14.08 kJ。电导率和 pH 值的增加分别大于 1600 µs/cm 和 11,表明在处理结束时存在稀释铁;因此,如果辅以其他处理方法(如过滤)去除产生的过量铁,则可用于处理厂并减少其对环境的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Evaluation of parameters in the removal of azo Red 40 dye using electrocoagulation

The objective of the present investigation was to evaluate the parameters that affect the efficiency of electrocoagulation in a batch system to remove the azo-benzoic dye Red 40 present in synthetic wastewater by determining the effect of the operational parameters of voltage and treatment time. A 12×6 cm iron electrode holder was constructed with PVC pipes and screws separated by 2 cm, and a 1 L beaker was used as the electrocoagulation cell. Synthetic wastewater samples of red 40 were characterized, where UV–VIS was used to measure absorbance before and after being treated in the electrocoagulation cell. The effects of voltages (10, 15, and 20 V) and treatment times up to 60 min were evaluated. As a result, a higher removal of 93.85 % was obtained at 60 min when a voltage of 10 V was used with a lower change in temperature and energy consumption of only 14.08 kJ. The increase in conductivity and pH by values greater than 1600 µs/cm and 11, respectively, indicate the presence of diluted iron at the end of treatment; therefore, if complemented with other treatment methods such as filtration to remove excess iron produced, can be used in treatment plants and reduce their environmental impact, for this research the FTIR analysis showed that the sludge has a dye composition with hydroxides of metals along with a slight trace of dye degradation.

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来源期刊
CiteScore
8.40
自引率
0.00%
发文量
100
审稿时长
33 weeks
期刊介绍: The journal has a particular interest in publishing papers on the unique issues facing chemical engineering taking place in countries that are rich in resources but face specific technical and societal challenges, which require detailed knowledge of local conditions to address. Core topic areas are: Environmental process engineering • treatment and handling of waste and pollutants • the abatement of pollution, environmental process control • cleaner technologies • waste minimization • environmental chemical engineering • water treatment Reaction Engineering • modelling and simulation of reactors • transport phenomena within reacting systems • fluidization technology • reactor design Separation technologies • classic separations • novel separations Process and materials synthesis • novel synthesis of materials or processes, including but not limited to nanotechnology, ceramics, etc. Metallurgical process engineering and coal technology • novel developments related to the minerals beneficiation industry • coal technology Chemical engineering education • guides to good practice • novel approaches to learning • education beyond university.
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