Technological method of rare earth industrial wastewater treatment and cyclic utilization
A technology of industrial wastewater and process method, which is applied in the fields of metallurgical wastewater treatment, extraction water/sewage treatment, water/sewage multi-stage treatment, etc., can solve the problems of no economic value, incomplete treatment, large amount of secondary waste residue, etc. Achieving good economic value and realizing the effect of wastewater recycling
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Embodiment 1
[0016] Example 1: Take 1L of waste water (rare earth industrial waste water) and put it into a 2L beaker, and the analysis results are shown in Table 1.
[0017] Element
CaO
MgO
CL-
SO42-
content
1.18
16.9
2.35
28.2
[0018] Add solid calcium chloride under stirring, continue to stir for 30 minutes, filter, and discard the filter residue. The components of the filtrate are shown in Table 2.
[0019] Element
CaO
MgO
CL-
SO42-
content
1.31
16.32
22.96
1.86
[0020] Add the solution to slaked lime, react for 30 minutes, filter, and send samples of the filtrate and residue respectively. The filtrate is shown in Table 3, and the drying of the filter residue is shown in Table 4.
[0021] Element
CaO
MgO
CL-
SO42-
content
16.3
0.06
22.96
1.24
[0022] Element
CaO
MgO
content
2.37
90.12
[0023] The fil...
Embodiment 2
[0025] Example 2: Take 1L of waste water (rare earth industrial waste water), the analysis results are shown in Table 6
[0026] Element
CaO
MgO
CL-
SO42-
content
0.87
21.23
21.45
48.24
[0027] Add unslaked lime to the waste water to remove SO42-, react for 30 minutes and filter, discard the filter residue, and the results of the filtrate are shown in Table 7
[0028] Element
CaO
MgO
CL-
SO42-
content
1.15
8.77
21.45
1.44
[0029] The waste water is added with slaked lime to remove magnesium, and the obtained filtrate and filter residue are sent as samples respectively. The filtrate results are shown in Table 8, and the filter residue is dried and sampled, and the results are shown in Table 9
[0030] Element
CaO
MgO
CL-
SO42-
content
10.96
0.06
20.17
0.41
[0031] Element
CaO
MgO
content
2.47
90.1...
Embodiment 3
[0034] Embodiment 3: get 1L waste water (rare earth industrial waste water), its analysis result is as shown in table 11,
[0035] Element
[0036] Add unslaked lime to the wastewater to remove SO42-, react for 30 minutes and filter, discard the filter residue, and the results of the filtrate are shown in Table 12.
[0037] Element
[0038] The waste water is added with slaked lime to remove magnesium, and the obtained filtrate and filter residue are sent as samples respectively. The results of the filtrate are shown in Table 13, and the results of the filter residue drying and sampling are shown in Table 14
[0039] Element
[0040] Element
[0041] With the filtrate shown in example 3 table 13, do roasting ore leaching according to solid-to-liquid ratio 1:8, water leaching slag sample analysis, the result is as shown in table 10
[0042] Element
[0043] By adopting the process of the invention, the magnesium-containing wast...
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