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Process optimization of silica encapsulation technique as a unique remediation technology for the treatment of crude oil contaminated soil

机译:硅胶封装技术的方法优化作为治疗原油污染土壤的独特修复技术

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The effect of hydrocarbon pollution on soil quality is globally challenging. Addressing the menace of pollution on soil necessitates research into the development of viable remediation technique that is fast, effective, efficient and environmentally friendly; with cutting edge advantages over conventional remediation techniques. The technique was designed using a formulated silica encapsulating product and applied on soil contaminated by simulation with 10% crude oil. Soil was characterized for its physicochemical properties using standard methods, while its TPH content determined by molecular spectroscopy. Properties such as conductivity, pH and phosphorus levels were severely impacted by the hydrocarbon effect. Silica encapsulating product was formulated from sodium silicate and sodium dodecyl sulphate using proper optimization procedures. The encapsulating product (sodium silicate and SDS) were used in a ratio of 1:2. Optimum concentrations of 60,000?ppm sodium silicate solution, 120,000?ppm SDS, applied at optimum pH and temperature of 5 and 25?°C respectively were established from the process optimization of the experimental technique. The technique shows rapid response towards TPH removal, as 86.79% TPH reduction is achieved after seven days of treatment. The encapsulation process follows pseudo first order kinetics. Significant reduction in metals; Ni (0.61–0.036?mg/kg), V (0.82–0.11?mg/kg) and Cd (0.05–0.016?mg/kg) shows the efficacy of the technique, thereby providing a dual alternative for the remediation of hydrocarbons and heavy metals. The technique seems to be effective in restoring some lost soil properties as seen in pH, conductivity and total nitrogen after treatment. The environmental friendliness, cost effectiveness and merits associated with this technique gives it a unique advantage over other conventional methods; as such presents promising alternative route for remediation experts in addressing the challenges associated with hydrocarbon and metals pollution on soil. Silica encapsulation technique is therefore suitable for outright applications in real field challenges.
机译:碳氢化合物污染对土壤质量的影响是全球挑战。解决土壤污染威胁需要研究可行的修复技术,快速,有效,高效,环保;通过常规修复技术的切削刃优点。该技术采用配制的二氧化硅包封产品设计,并涂在含有10%原油的模拟污染的土壤中。使用标准方法表征土壤的物理化学性质,而其TPH含量通过分子光谱法测定。通过烃效应严重影响电导率,pH和磷水平的性质。使用适当的优化程序,用硅酸钠和十二烷基硫酸钠配制二氧化硅包封产物。包封产物(硅酸钠和SDS)以1:2的比例使用。从实验技术的过程优化建立了在实验技术的过程优化中,建立了在最佳pH值和温度下施加的60,000℃的60,000℃的最佳浓度为120,000℃,温度为5和25Ω·℃。该技术显示出快速反应TPH去除,在治疗七天后,减少86.79%TPH减少。封装过程遵循伪第一阶动力学。金属显着减少; Ni(0.61-0.036?mg / kg),v(0.82-0.11?mg / kg)和cd(0.05-0.016?mg / kg)显示了该技术的功效,从而为修复碳氢化合物和碳氢化合物提供双替代方案重金属。该技术似乎有效地在治疗后在pH,电导率和总氮中恢复一些丢失的土壤性质。与该技术相关的环境友好性,成本效益和优点使其具有其他传统方法的独特优势;因此,为解决与土壤中烃和金属污染有关的挑战,提供了有希望的替代途径。因此,二氧化硅封装技术适用于实地挑战中的突出应用。

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