聚苯乙烯磺酸-壳聚糖(pss -壳聚糖)膜作为十二烷基苯磺酸(DBS)吸附剂的制备

Mandrea Nora, Adyatma Bhagaskara, Virna Agustisari, Alice Lim, Hardian Ridho Alfalah, D. Siswanta
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引用次数: 0

摘要

聚苯乙烯和壳聚糖的结合可以形成聚电解质(PE)膜。聚苯乙烯磺酸-壳聚糖(pss -壳聚糖)吸附膜可以吸附洗衣废水中的十二烷基苯磺酸(DBS)。本研究旨在合成、鉴定pss -壳聚糖膜的特性,并确定其吸附效果。研究方法包括将聚苯乙烯转化为PSS,分离壳聚糖,优化结构,制备PSS-壳聚糖膜,研究其吸附作用,并将膜应用于洗衣废水。用FTIR和SEM对膜进行了表征。红外光谱结果显示-OH和-NH2基团在3418 cm-1处振动,SEM图像显示膜表面均匀。从虾壳中分离得到的壳聚糖的脱乙酰度为61.3%。几何优化结果显示了吸附后结构总能的变化。pss -壳聚糖膜耐酸,但在碱性条件下分解。pss -壳聚糖膜在DBS上的最佳吸附条件为pH为8,吸附时间为100分钟。pss -壳聚糖膜的吸附动力学符合一级拟序方程。pss -壳聚糖膜吸附等温线符合Langmuir等温线模型,吸附量和效率为3.97 mg。在0.6 ppm时,G-1和76.6%。应用阶段,pss -壳聚糖膜对洗衣废水中DBS的吸附率为(62.4±7.2)%。
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Fabrication of Polystyrene Sulfonate-Chitosan (PSS-Chitosan) Membrane as Dodecyl Benzene Sulfonate (DBS) Adsorbent in Laundry Wastewater
The combination of polystyrene and chitosan can form polyelectrolyte (PE) membranes. Polystyrene sulfonate-chitosan (PSS-chitosan) adsorbent membrane can adsorb dodecyl benzene sulfonate (DBS) in laundry wastewater. This study aimed to synthesize, identify characteristics, and formulate adsorption effectiveness by PSS-chitosan membranes. The research methods included converting polystyrene into PSS, isolating chitosan, optimizing geometry, making PSS-chitosan membranes, studying adsorption, and applying membranes to laundry wastewater. The resulting membrane was characterized using FTIR and SEM. The results of the infrared spectra showed vibrations of –OH and –NH2 groups at 3418 cm–1, while the SEM image showed a homogeneous membrane surface. The quality of chitosan isolation from shrimp shells was indicated by the degree of deacetylation of 61.3%. The results of the geometry optimization showed the change in the structure’s total energy after adsorption. The PSS-chitosan membrane is resistant to acids but decomposes under alkaline conditions. Optimum adsorption of PSS-chitosan membrane on DBS occurred at pH 8 for 100 minutes. The adsorption kinetics of the PSS-chitosan membrane follows the first pseudo-order equation. PSS-chitosan membrane adsorption isotherm follows the Langmuir isotherm model with an adsorption capacity and efficiency of 3.97 mg.g–1 and 76.6%, respectively, at 0.6 ppm. At the application stage, the PSS-chitosan membrane could adsorb DBS in laundry wastewater by (62.4 ± 7.2) %.
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