A production process for preparing purified water containing water-soluble silicon
A technology of water-soluble silicon and production process, which is applied in descaling and water softening, multi-stage water/sewage treatment, water/sludge/sewage treatment, etc. It can solve the problems of lack of essence active silicon and achieve pure quality and data controllable effect
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Embodiment 1
[0047] The modulus n of the present embodiment is 1 or 2.5 or 3.5, and concrete steps are as follows:
[0048] (1) Select raw materials: select water-soluble silicon amorphous crystal particles (Na 2 O SiO 2 or Na 2 O 2.5SiO 2 or Na 2 O 3.5SiO 2 ) and purified water A, the diameter of the water-soluble silicon amorphous crystal particles is between 2 mm and 100 mm.
[0049] Among them, the purified water A is pure water that has been purified, such as: purified water A obtained by electrodialysis, RO reverse osmosis, ion exchange resin, flocculation, activated carbon adsorption, distillation, ultraviolet sterilization and other means. This case takes the purified water treated by RO reverse osmosis as an example. If the TDS value of municipal tap water is around 200ppm, the TDS value of purified water A after purification treatment is generally less than 10, or even close to 0, depending on the RO membrane. Depends on the desalination rate. The TDS value of purified wat...
Embodiment 2
[0061] Embodiment 2: the modulus n of this embodiment is 1:
[0062] Implement the calculation process and allocate materials according to the calculation results:
[0063] Water-soluble silicon amorphous crystal particles or powders with a modulus n of 1 are selected.
[0064] The calculation process is as follows:
[0065] According to the data recommendation, the daily intake of silicon is designed to be 80mg, the average daily intake of water is 1600mg, n is sodium silicate Na 2 O nSiO 2 modulus.
[0066] ①Silicon content coefficient:
[0067] a = daily intake of silicon / average daily intake of water
[0068] =80mg / 1600ml=80mg / 1600000mg
[0069] = 0.00005;
[0070] ②Amount of prepared water:
[0071] b=(n×Si / a-n×SiO 2 -Na 2 O) / H 2 O
[0072] =(n×28 / a-n×60-62) / 18
[0073] =(1×28 / 0.00005-1×60-62) / 18
[0074] =559878 / 18
[0075] ≈31104;
[0076] ③Na 2 O nSiO 2 And the weight ratio of purified water A:
[0077] c=(n×SiO 2 +Na 2 O) / (b×H 2 O)
[0078] =(n×...
Embodiment 3
[0109] Embodiment 3: The modulus n of this embodiment is 2.5.
[0110] Implement the calculation process and allocate materials according to the calculation results:
[0111] Water-soluble silicon amorphous crystalline particles or powders with a modulus n of 2.5 are selected.
[0112] The calculation process is as follows:
[0113] According to the data recommendation, the daily intake of silicon is designed to be 80mg, the average daily intake of water is 1600mg, and n is sodium silicate Na 2 O·nSiO 2 the modulus.
[0114] ①Silicon content coefficient:
[0115] a = daily intake of silicon / average daily intake of water
[0116] =80mg / 1600ml=80mg / 1600000mg
[0117] = 0.00005;
[0118] ②The number of parts to prepare water:
[0119] b=(n×Si / a-n×SiO 2 -Na 2 O) / H 2 o
[0120] =(n×28 / a-n×60-62) / 18
[0121] =(2.5×28 / 0.00005-2.5×60-62) / 18
[0122] =1399788 / 18
[0123] ≈77766;
[0124] ③Na 2 O.nSiO 2 and pure water weight ratio:
[0125] c=(n×SiO 2 +Na 2 O) / (b×H ...
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