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- W2392238979 abstract "The present paper intends to introduce its newly renovated method in dining wastewater treatment by using the immobilized biologically activated carbon (IBAC) technology. Since the the dining wastewater is complicated with high organic content and multiple harmful chemical components, it is quite difficult to process it. Taking the wastewater that flows out of the cafeteria of Bohai University as a sample, first of all, as the first step of our research, we let the dining wastewater running through the sand leach pretreatment. Then it is let to pass over the middle basin of a treating device to carry on the full aeration. And, next, the dining wastewater is introduced over an IBAC column with the height of IBAC being 40 cm and the treating process lasting for 30 min. The other data involved with wastewater treatment can be illustrated as follows: the pH value of the wastewater is 8; the average removing rate of sand filtration by using the IBAC technology can be made as high as 57% to UV254; the average removing rate of sand filtration to turbidity can reach 66.4%; the average removing rate of sand filtration can be made to get to 77.20% to CODCr; then, the average removing rate of oil remnants could be up to 86%. In addition, the experimental results prove that the higher the raw water concentrations are,the higher the removing rate of the four targets—UV254, turbidity, CODCr and oil content—will be. From what is illustrated above, it can be concluded that the filtration-IBAC technology proves to be advantageous in many ways, such as small field area for treating, economic in investment and low working cost, little pollution involved and therefore less contamination to cause. In addition, it is easy to realize continuous or non-stop treating. Therefore, it is therefore feasible to be adopted for the given purpose." @default.
- W2392238979 created "2016-06-24" @default.
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- W2392238979 date "2007-01-01" @default.
- W2392238979 modified "2023-09-26" @default.
- W2392238979 title "A new treatment for dining wastewater by using immobilized biologically activated carbon" @default.
- W2392238979 hasPublicationYear "2007" @default.
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