首页> 外文期刊>Water Environment Research >Investigation of the usage potential of calcium alginate beads functionalized with sodium dodecyl sulfate for wastewater treatment contaminated with waste motor oil
【24h】

Investigation of the usage potential of calcium alginate beads functionalized with sodium dodecyl sulfate for wastewater treatment contaminated with waste motor oil

机译:用废泡油污染废水处理碳酸钠硫酸钠官能化碳酸钙珠粒的使用潜力研究

获取原文
获取原文并翻译 | 示例
           

摘要

In this study, calcium alginate (Ca-Alg) beads, an inexpensive, easily available, biodegradable material, were activated with anionic surfactant and used for the treatment of wastewater contaminated with waste motor oil. First, polyethyleneimine (PEI) was used to bind sodium dodecyl sulfate (SDS) onto the Ca-Alg beads' surface. Three different SDS concentrations (25, 50, & 100 mg/L) were prepared and treated with Ca-Alg beads for 1, 2, 4, 6, and 24 h. SDS binding yield reached equilibrium at the end of the 24 h, and the binding efficiencies of 25, 50, and 100 mg SDS/L were determined 84%, 72%, and 48%, respectively. The effect of pH between 2 and 10 was also investigated on oil adsorption. Maximum adsorption efficiency (77%) was obtained in the range of pH 6-8. After determining the optimum pH value for oil adsorption, the effect of beads amount (2.5-30 g/L) was also investigated on oil removal efficiency. When the amount of beads increased from 2.5 to 30 g/L, the oil adsorption efficiency increased from 77% to 95%. It was also observed that the oil adsorption efficiency increased when the size of the beads decreased from 4 to 1 mm. For the kinetic calculation, three different concentrations (250, 500, &1000 mg/L) of oily solution were prepared, and oil adsorption was investigated versus time. The kinetic studies for the adsorption of the oily solution using SDS functionalized Ca-Alg beads showed the second-order kinetics. When the initial oil concentration increased from 250 to 1000 mg/L, the amount of adsorbed oil molecules increased from 8.34 to 22.12 mg/g. Langmuir and Freundlich isotherm models were used to explain the relationship between adsorbent and adsorbate, and Langmuir isotherm was the most suitable model because of its high regression coefficient (r(2)) value. Column studies were also carried out, and it was concluded that the proposed adsorbent can be used effectively in the treatment of oily wastewater. Practitioner points Although there are numerous adsorption studies and studies on the use of alginate beads in various fields in the literature, its use in oil treatment has not been found to our knowledge. The study aims to produce a selective adsorbent for the removal of oil from water by functionalizing the surface of the alginate beads with active agents. In conventional adsorption studies, pollutants are transported from liquid phase to solid phase. With the proposed new adsorbent material, oils will be specifically removed from wastewater and used as fuel. Thus, obtaining an organic origin adsorbent with high calorific value constitutes the original value of the study. In addition, no secondary pollutants will emerge after the adsorption process.
机译:在该研究中,用阴离子表面活性剂激活藻酸钙(CA-ALG)珠子,廉价,易于使用的可生物降解的材料,并用于处理废物油污的废水。首先,使用聚乙烯亚胺(PEI)将十二烷基硫酸钠(SDS)结合到CA-ALG珠子表面上。制备三种不同的SDS浓度(25,50和100mg / L)并用Ca-Alg珠粒处理1,2,4,6和24小时。 SDS结合产率在24小时末端达到平衡,分别测定25,50和100mg SDS / L的结合效率分别为84%,72%和48%。还研究了对油吸附的pH值为2和10的影响。在pH 6-8的范围内获得最大吸附效率(77%)。在确定油吸附的最佳pH值后,还研究了珠子量(2.5-30g / L)对除油效率的影响。当珠子量从2.5增加到30克/升时,油吸附效率从77%增加到95%。当珠子的尺寸从4〜1mm降低时,还观察到油吸附效率增加。对于动力学计算,制备三种不同浓度(250,500和1000mg / L)的油性溶液,并研究了油吸附与时间。使用SDS官能化CA-ALG珠子吸附油性溶液的动力学研究显示了二阶动力学。当初始油浓度从250增加到1000mg / L时,吸附的油分子的量从8.34增加到22.12mg / g。 Langmuir和Freundlich等温模型用于解释吸附剂和吸附物之间的关系,并且Langmuir等温线是最合适的模型,因为其高回归系数(R(2))值。还进行了柱研究,得出结论是,所提出的吸附剂可以有效地用于处理油性废水中。从业者点虽然有许多吸附研究和研究在文献中的各个领域中使用海藻酸盐珠,但我们的知识尚未发现其在油处理中。该研究旨在通过用活性剂官能化藻酸盐珠子的表面来制备选择性吸附剂,用于通过用活性剂的藻酸盐珠子的表面来除去水。在常规吸附研究中,污染物从液相输送到固相。利用所提出的新吸附材料,油将从废水中明确地除去并用作燃料。因此,获得具有高热值的有机原因吸附剂构成了研究的原始值。此外,吸附过程后没有出现二级污染物。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号