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首页> 外文期刊>Environmental Science and Pollution Research >Amendment of Caulerpa sertularioides marine alga with sulfur-containing materials to accelerate Cu removal from aqueous media
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Amendment of Caulerpa sertularioides marine alga with sulfur-containing materials to accelerate Cu removal from aqueous media

机译:Caulerpa Sertularioides海藻藻藻藻藻用含硫材料的修正以加速来自含水介质的Cu去除

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This study reports a new approach of alga amendment in a live mode. The Caulerpa sertularioides alga was modified with sulfur-containing materials of methionine (C5H11NO2S) and sodium sulfate (Na2SO4) to more concentrate the sulfur content of the yielded biomass (adsorbent). The simple and amended C. sertularioides alga was fully characterized with FTIR, SEM, EDX, BET, BJH, and pH(zpc) techniques. The copper adsorption from aqueous media was done by three adsorbents of C. sertularioides-simple (CSS), C. sertularioides-Na2SO4 (CSN), and C. sertularioides-C5H11NO2S (CSC). The parameters of pH (2-6), adsorbent dosage (2-10 g/L), and contact time (3-80 min) were optimized at 5, 5 g/L, and 60 min, respectively. According to Langmuir isotherm (the best-fitted model), the maximum adsorption capacity of CSN (98.04 mg/g) was obtained 2.4 times higher than CSC (40.73 mg/g) and 9.5 times higher than CSS (10.29 mg/g). The Cu adsorption process by the adsorbents was best-fitted pseudo-second-order kinetic model. The CSN, CSC, and CSS biomasses were successfully reused 5, 4, and 4 times, respectively. The thermodynamic study revealed that the copper adsorption process by CSN is exothermic and non-spontaneous. Finally, the suitability of adsorbents prepared from algae was tested by cleaning a simulated wastewater.
机译:这项研究报告的实况模式藻类修订的新方法。的蕨藻sertularioides藻类用甲硫氨酸(C5H11NO2S)和硫酸钠(硫酸钠)的含硫材料以更浓缩,得到的生物质(吸附剂)中的硫含量修改。简单和修正C. sertularioides藻类被完全表征用FTIR,SEM,EDX,BET,BJH和pH(ZPC)技术。从水性介质中的铜吸附物通过C. sertularioides-简单(CSS),C. sertularioides-硫酸钠(CSN)的3个吸附剂进行,和C. sertularioides-C5H11NO2S(CSC)。 pH值(2-6),吸附剂用量(2-10克/升),和接触时间(3-80分钟)的参数中的5,5克/升,和60分钟,分别进行了优化。根据Langmuir等温(最佳拟合的模型),CSN的最大吸附量(98.04毫克/克),得到的2.4倍比CSC(40.73毫克/克),比CSS更高9.5倍(10.29毫克/克)。通过吸附剂的吸附铜过程是最佳拟合的伪二级动力学模型。在CSN,CSC和CSS生物质被成功地重新使用5,4,和4倍。热力学研究表明,由CSN铜吸附过程是放热的和非自发的。最后,从藻类制备吸附剂的适用性是由清洁模拟废水进行测试。

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