Nano iron oxyhydroxide and preparation method thereof
A kind of iron oxyhydroxide and nano-technology, which is applied in the field of nano-iron oxyhydroxide and its preparation, can solve the problems of unfavorable commercial application of final products, unfavorable adsorption and decomposition of organic matter, excessive temperature and time, etc., and achieve excellent photocatalytic performance, raw materials Inexpensive, anti-agglomeration effect
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Embodiment 1
[0026] The concrete steps of preparation are:
[0027] Step 1, first mix ethylene glycol and deionized water according to the volume ratio of 0.8:1.2, and then sonicate for 5 minutes to obtain an aqueous solution of ethylene glycol. According to the ratio of 1.8:90 by weight, ferrous sulfate is added into the aqueous solution of ethylene glycol and ultrasonicated for 5 minutes to obtain the ferrous sulfate mixture; according to the ratio of 1.3:30 by weight, urea is added into the aqueous solution of ethylene glycol and ultrasonically used for 5 minutes , to obtain the urea mixture.
[0028] Step 2: first inject the urea mixed solution at a rate of 0.8 ml / min into the stirred ferrous sulfate mixed solution at a temperature of 90° C. according to the volume ratio of 0.8:3 to obtain a reaction solution. Inject air into the reaction solution for 3h at a rate of 2.5ml / min to obtain a mixture similar to figure 1 and figure 2 shown, and as image 3 , Figure 4 and Figure 5 T...
Embodiment 2
[0030] The concrete steps of preparation are:
[0031] Step 1, first mix ethylene glycol and deionized water according to the volume ratio of 0.9:1.1, and then sonicate for 6 minutes to obtain an aqueous solution of ethylene glycol. Add ferrous sulfate to ethylene glycol aqueous solution and ultrasonicate for 6 minutes according to the ratio of 1.9:90 by weight to obtain a ferrous sulfate mixture; add urea to ethylene glycol aqueous solution for 6 minutes according to the ratio of 1.4:30 by weight , to obtain the urea mixture.
[0032] Step 2: first inject the urea mixed solution at a rate of 0.9 ml / min into the stirred ferrous sulfate mixed solution at a temperature of 91° C. according to the volume ratio of 0.9:3 to obtain a reaction solution. Then inject air into the reaction solution for 2.8h at a rate of 2.8ml / min to obtain a mixture similar to figure 1 and figure 2 shown, and as image 3 , Figure 4 and Figure 5 The nanometer iron oxyhydroxide shown in the curve....
Embodiment 3
[0034] The concrete steps of preparation are:
[0035] Step 1, first mix ethylene glycol and deionized water according to the volume ratio of 1:1, and then sonicate for 7 minutes to obtain an aqueous solution of ethylene glycol. Then add ferrous sulfate into the aqueous ethylene glycol solution and ultrasonicate for 7 minutes according to the ratio of 2:90 by weight to obtain a ferrous sulfate mixture; add urea into the aqueous glycol solution and ultrasonicate for 7 minutes according to the ratio of 1.5:30 by weight , to obtain the urea mixture.
[0036] Step 2: first inject the urea mixed solution into the stirred ferrous sulfate mixed solution at a temperature of 93° C. at a rate of 1 ml / min according to a volume ratio of 1:3 to obtain a reaction solution. Then inject air into the reaction solution for 2.5h at a rate of 3ml / min to obtain the following figure 1 and figure 2 shown, and as image 3 , Figure 4 and Figure 5 The nanometer iron oxyhydroxide shown in the c...
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