Department of Environmental Engineering, Faculty of Engineering and Architecture, Kastamonu University, Kastamonu 37150, Türkiye.
Molecules. 2023 Apr 13;28(8):3453. doi: 10.3390/molecules28083453.
Removal of benzene is essential for human and environmental health because it has toxic and hazardous properties at various concentrations. Theseneed to be effectively eliminated with carbon-based adsorbents. PASACs, carbon-based adsorbents obtained from using the needles of , were produced by optimized HCl- and HSO-impregnated approaches. Regarding physicochemical structure, the optimized PASAC23 and PASAC35 with surface areas of 657 and 581 m/g and total pore volumes of 0.36 and 0.32 cm/g showed ideal temperatures of 800 °C. In order to investigate and compare internal benzene removal efficiency, PASAC23 and PASAC35 were studied separately. Initial concentrations were found to range from 5 to 500 mg/m, and between 25 and 45 °C. The removal rate of benzene by PASAC23 and PASAC35 was 97 and 94% at low concentrations, respectively. While the highest capture amount for PASAC23 and PASAC35 was found to be at 25 °C with 141 and 116 mg/g, the adsorption capacity decreased to 102 and 90 mg/g at 45 °C. The holding capacity decreased between 22.41 and 27.66% due to increasing temperatures. After five cycles of PASAC23 and PASAC35 regeneration, we found that they could remove 62.37 and 58.46% of benzene, respectively. These results confirmed that PASAC23 is a promising environmentally adsorbent for effectively removing benzene with a competitive yield.
去除苯对于人类和环境健康至关重要,因为它在不同浓度下具有毒性和危害性。需要使用基于碳的吸附剂将其有效去除。PASACs 是一种从使用获得的基于碳的吸附剂,是通过优化的 HCl 和 HSO 浸渍方法制备的。关于物理化学结构,表面积为 657 和 581 m/g,总孔体积为 0.36 和 0.32 cm/g 的优化 PASAC23 和 PASAC35 的理想温度为 800°C。为了研究和比较内部苯去除效率,分别研究了 PASAC23 和 PASAC35。发现初始浓度范围为 5 至 500 mg/m,温度范围为 25 至 45°C。PASAC23 和 PASAC35 在低浓度下的苯去除率分别为 97%和 94%。而 PASAC23 和 PASAC35 的最高捕获量分别在 25°C 时为 141 和 116 mg/g,在 45°C 时降至 102 和 90 mg/g。由于温度升高,保持能力下降了 22.41%至 27.66%。在 PASAC23 和 PASAC35 再生的五个循环后,发现它们分别可以去除 62.37%和 58.46%的苯。这些结果证实,PASAC23 是一种很有前途的环境友好型吸附剂,可有效去除苯,具有竞争力的产率。