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The total pore increased with increasing the overall growth rate of pastilles.
This topological transformation of the pore increased the sintering stress and promoted densification.
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The presence of the capsid in the pore increases the resistance in the pore and, consequently, reduces the ion current.
The thickness of the nitride layer and the size of micro-pore increased with increasing treatment temperature.
Meanwhile, the residual oil in small pores increased slightly.
The methane excess adsorption capacity in chlorite pores increased with an increase in pressure or decrease in pore size.
Second, the methane adsorption capacity in chlorite pores increased with the increase in pressure or decrease in the pore size.
After carbonation, harmful pores in aggregate reduced by 24.4% while harmless pores increased by 67.9%.
The size of the well-separated pores increased by increasing the oxidation duration.
The HNO3 modification increased mesopores surface area of activated carbon indicating the size of pores increased.
The average size of the surface pores increased uniformly with increasing temperature.
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