Bioretention pond filler based on sulfur autotrophic denitrification
A bioretention tank and denitrification technology, applied in biological water/sewage treatment, water pollutants, anaerobic digestion treatment, etc., can solve the problems of secondary pollution, effluent chemical oxygen demand (COD), effluent turbidity, etc.
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Embodiment 1
[0025] The three fillers of sulfur, limestone and quartz sand were made into mixed fillers according to different volume dosage ratios, and the dosage ratios are shown in Table 1. All fillers were washed with distilled water and ultrapure water before the filling experiment, centrifuged at a speed of 2000-3000r / min, and repeated 3-5 times, then dried naturally in a cool place and passed through a 10mm sieve before filling. A support layer is arranged below the mixed packing layer, the support layer is composed of stones, and the height of the support layer is 5cm.
[0026] The mixed filler is used for the treatment of street rainwater (collected from Tianjin Airport Industrial Park after rain), with different filler ratios (sulfur:limestone:quartz sand), influent and effluent nitrate nitrogen (NO 3 - -N) concentration and removal rate are as shown in Table 1.
[0027] Table 1 Effect of different filler ratios on NO in street rainwater 3 - -N removal effect
[0028]
[...
Embodiment 2
[0031] Three kinds of fillers, pyrite, dolomite and gravel, are made into mixed fillers according to different volume dosage ratios, and the dosage ratios are shown in Table 2. All fillers were washed with distilled water and ultrapure water before the filling experiment, centrifuged at a speed of 2000-3000r / min, and repeated 3-5 times, then dried naturally in a cool place and passed through a 10mm sieve before filling. A support layer is arranged below the mixed packing layer, the support layer is composed of stones, and the height of the support layer is 5cm.
[0032] The mixed filler is used for the treatment of street rainwater (collected from Tianjin Airport Industrial Park after rain), with different filler ratios (pyrite: dolomite: gravel), influent and effluent nitrate nitrogen (NO 3 - -N) concentration and removal rate are as shown in table 2.
[0033] Table 2 Effect of different filler ratios on NO in street rainwater 3 - -N removal effect
[0034]
[0035] I...
Embodiment 3
[0037] Five kinds of fillers including sulfur, pyrite, limestone, dolomite and crushed stone were made into mixed fillers according to different volume dosage ratios, and the dosage ratios are shown in Table 3. All fillers were washed with distilled water and ultrapure water before the filling experiment, centrifuged at a speed of 2000-3000r / min, and repeated 3-5 times, then dried naturally in a cool place and passed through a 10mm sieve before filling. A support layer is arranged below the mixed packing layer, the support layer is composed of stones, and the height of the support layer is 5cm.
[0038] The mixed filler is used for the treatment of roof rainwater (collected from Tianjin University Beiyangyuan Campus after rain), with different filler ratios (sulfur: pyrite: limestone: dolomite: gravel), influent and effluent nitrate nitrogen (NO 3 - -N) concentration and removal rate are as shown in table 3.
[0039] Table 3 Effect of different filler ratios on roof rainwate...
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