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Bioremoval of Phenol from Aqueous Solutions Using Native Caribbean Seaweed

机译:使用天然加勒比海藻从水溶液中生物去除苯酚

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Among several Puerto Rican algae, Sargassum sp. (SG) and Chaetomorpha (CM) showed the highest phenol adsorption capacity from aqueous solutions and were used in optimized adsorption batch experiments at room temperature. The effects of pH, adsorbent dose, phenol concentration, salinity and presence of interfering substances were evaluated. Initial solution pH exhibited a strong effect, mainly on the phenol aqueous chemistry; showing the maximum adsorption at pH 10. Sorption isotherm results were modelled according to the Langmuir, Tempkin and Freundlich equations. Isotherm modelling indicated a maximum adsorption capacity (q max ) of 82.10 and 17.7 mg of phenol per gram of SG and CM, respectively. Salinity and presence of detergent in the matrix solution showed a positive effect on the adsorption, suggesting that adsorption of phenol was mostly driven by polar forces and not by ionic exchange. On the other hand, presence of heavy metals like copper, lead and cobalt had a negative effect on the adsorption. According to these results, the potential formation of hydrogen bonds between the algae and phenol is proposed as the main adsorption mechanism. These results provide further insight into the adsorption mechanism of phenol and their use as inexpensive adsorbents for the treatment of phenol-containing wastewaters.
机译:在波多黎各海藻中,Sargassum sp.。 (SG)和Chaetomorpha(CM)在水溶液中显示出最高的苯酚吸附能力,并在室温下用于优化的吸附批实验中。评估了pH,吸附剂剂量,苯酚浓度,盐度和干扰物质的存在的影响。初始溶液的pH值表现出很强的影响,主要是对苯酚水化学的影响。在pH 10时显示最大吸附。根据Langmuir,Tempkin和Freundlich方程对吸附等温线结果进行建模。等温线模型表明每克SG和CM的最大吸附容量(q max)分别为82.10和17.7 mg苯酚。盐度和基质溶液中去污剂的存在显示出对吸附的积极影响,这表明苯酚的吸附主要由极性力而不是离子交换驱动。另一方面,重金属如铜,铅和钴的存在对吸附有负面影响。根据这些结果,藻类和苯酚之间潜在的氢键形成被认为是主要的吸附机理。这些结果为深入了解苯酚的吸附机理及其作为廉价吸附剂用于处理含苯酚废水提供了进一步的信息。

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