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Theoretical and Experimental Studies of Processes of Oily Wastewater Treatment with a Synergetic Mixture

机译:用协同混合物处理油性废水处理的理论与实验研究

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Theoretical studies of processes of oily wastewater treatment for removing various impurities determined the main mechanism of the formation of coagulation structures and aggregates with their subsequent settling and phase separation, which disturb the aggregation and kinetic stability of the medium. It was found that a more advanced coagulation leads to the destruction of interlayers of the medium between particles, which brings the particles into direct contact with each other. This results in the formation of rigid aggregates with fractal structure, which consist both of hard particles, and of asphaltenes and resins, sometimes shaped as flakes. If the particles coagulate in a turbulent flow, their number decreases, although their sizes increase up to the sizes of aggregates. It was noted that the formation of coagulation structures is beneficial for separation of the solid phase from the liquid phase in wastewater treatment. An investigation was made of the potential of a synergetic mixture of slaked lime and ferric chloride for accelerating the formation of coagulation structures in oily waste-water treatment. Experimental studies showed the efficiency of using such a mixture for removing petroleum products and solid particles in wastewater treatment. In intense stirring of this mixture in a mixer at 1500-2000 rpm, isotropic turbulence is reached, which favors the coagulation and aggregation of particles. It was found that the best composition of the mixture is 1.0 g of slaked lime and 0.06 cm~3 of ferric chloride, which best promote the high-quality coagulation and settling of particles. Based on the boundary conditions for mass transfer, kinetic models for calculating the consumption of the mixture were proposed, and a kinetic parameter was estimated. The results of the performed experiments showed that, with increasing concentration of the mixture, the impurity content of wastewater progressively decreases, and wastewater becomes almost transparent. Using the synergetic mixture in wastewater treatment creates conditions for the formation of stronger structures of aggregates prone to natural settling.
机译:用于去除各种杂质的油性废水处理方法的理论研究确定了凝血结构形成的主要机制和与它们随后的沉降和相分离形成的聚集体,这扰乱了培养基的聚集和动力学稳定性。发现更先进的凝结导致颗粒之间的介质中间层的破坏,这使颗粒与彼此直接接触。这导致形成具有分形结构的刚性聚集体,其包括硬颗粒和沥青质和树脂,有时形状为薄片。如果颗粒在湍流中凝结,则它们的数量降低,尽管它们的尺寸增加到聚集体的尺寸。注意,凝固结构的形成是有利于从废水处理中的液相分离固相。调查是对肉石和氯化铁的协同混合物的潜力,以加速油性废水处理中的凝固结构的形成。实验研究表明,使用这种混合物用于除去石油产品和废水处理中的固体颗粒的效率。在搅拌混合器中搅拌在1500-2000rpm的混合器中,达到各向同性湍流,其涉及颗粒的凝血和聚集。结果发现,混合物的最佳组成为1.0g甲基石灰和0.06cm〜3的氯化铁,最能促进颗粒的高质量凝固和沉降。基于传质的边界条件,提出了用于计算混合物消耗的动力学模型,估计动力学参数。所进行实验的结果表明,随着混合物浓度的增加,废水的杂质含量逐渐降低,废水几乎透明。使用废水处理中的协同混合物会产生易于易于自然沉降的骨料较强结构的条件。

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