It is related to the burning temperature. This kind of oxide can be regarded as two types of oxides, that is, CU3 (PO4) 2 ~ \u003d 3CUO + P2O5 First decompose to CUO + P2O5, as long as there is a volatile, the reaction will reactIt is easier to occur. When the radius is large and the charge is low, the decomposition temperature is lower, but the price of cations and acid roots here is higher, so the decomposition temperature is not too low. The decomposed product P2O5 is easy to volatilize, and the remaining products are only CUO; If the temperature is high, the CUO will be further decomposed to CU2O + O2. The decomposition temperature is about 1000 degrees Celsius.
It is related to the burning temperature. This kind of oxide can be regarded as two types of oxides, that is, CU3 (PO4) 2 ~ \u003d 3CUO + P2O5 First decompose to CUO + P2O5, as long as there is a volatile, the reaction will reactIt is easier to occur. When the radius is large and the charge is low, the decomposition temperature is lower, but the price of cations and acid roots here is higher, so the decomposition temperature is not too low. The decomposed product P2O5 is easy to volatilize, and the remaining products are only CUO; If the temperature is high, the CUO will be further decomposed to CU2O + O2. The decomposition temperature is about 1000 degrees Celsius.
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First decompose to CUO + P2O5, as long as there is a volatile, the reaction will reactIt is easier to occur. When the radius is large and the charge is low, the decomposition temperature is lower, but the price of cations and acid roots here is higher, so the decomposition temperature is not too low.
The decomposed product P2O5 is easy to volatilize, and the remaining products are only CUO;
If the temperature is high, the CUO will be further decomposed to CU2O + O2. The decomposition temperature is about 1000 degrees Celsius.
First decompose to CUO + P2O5, as long as there is a volatile, the reaction will reactIt is easier to occur. When the radius is large and the charge is low, the decomposition temperature is lower, but the price of cations and acid roots here is higher, so the decomposition temperature is not too low.
The decomposed product P2O5 is easy to volatilize, and the remaining products are only CUO;
If the temperature is high, the CUO will be further decomposed to CU2O + O2. The decomposition temperature is about 1000 degrees Celsius.
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