| 882 |
TiO2 |
Nanjing High Technology Nano Material |
VK-TA18 |
0.018 |
|
Purity(%) |
99.8 |
|
바로가기 |
| 0.018 |
|
Specific surface area(m2/g) |
60~90 |
|
| 0.018 |
|
pH |
6~8 |
|
| 0.018 |
|
Loss on drying(%) |
1 |
105°C, 2h |
| 0.018 |
|
Loss on ignition(%) |
2 |
|
| 881 |
TiO2 |
Nanjing High Technology Nano Material |
VK-T25SG |
0.01~0.04 |
Rutile |
Purity(%) |
99 |
|
바로가기 |
| 0.01~0.04 |
Rutile |
Specific surface area(m2/g) |
10~40 |
|
| 0.01~0.04 |
Rutile |
pH |
6~8 |
|
| 0.01~0.04 |
Rutile |
Loss on drying(%) |
1 |
105°C, 2h |
| 0.01~0.04 |
Rutile |
Loss on ignition(%) |
5 |
|
| 880 |
TiO2 |
Nanjing High Technology Nano Material |
VK-T25H |
0.01~0.04 |
Rutile |
Purity(%) |
99 |
|
바로가기 |
| 0.01~0.04 |
Rutile |
Specific surface area(m2/g) |
15~45 |
|
| 0.01~0.04 |
Rutile |
pH |
6~8 |
|
| 0.01~0.04 |
Rutile |
Loss on drying(%) |
1 |
105°C, 2h |
| 0.01~0.04 |
Rutile |
Loss on ignition(%) |
5 |
|
| 879 |
TiO2 |
Nanjing High Technology Nano Material |
VK-T60 |
0.06 |
|
Purity(%) |
99.8 |
|
바로가기 |
| 0.06 |
|
Specific surface area(m2/g) |
20~40 |
|
| 0.06 |
|
pH |
6~8 |
|
| 878 |
TiO2 |
Nanjing High Technology Nano Material |
VK-T25 |
0.03 |
|
Purity(%) |
99.8 |
|
바로가기 |
| 0.03 |
|
Specific surface area(m2/g) |
30~50 |
|
| 0.03 |
|
pH |
6~8 |
|
| 877 |
TiO2 |
Nanjing High Technology Nano Material |
VK-T15 |
0.015 |
|
Purity(%) |
99.8 |
|
바로가기 |
| 0.015 |
|
Specific surface area(m2/g) |
30~50 |
|
| 0.015 |
|
pH |
6~8 |
|
| 876 |
Hollow glass sphere |
Nanjing High Technology Nano Material |
34P30 |
- |
- |
Density(g/cm3) |
0.34±0.02 |
|
바로가기 |
|
|
Crush Strength (psi) |
3000 |
|
|
|
Oil absorption (cc/100g) |
44 |
|
|
|
Particle Size (um) |
29~31 |
|
| 875 |
Hollow glass sphere |
Nanjing High Technology Nano Material |
HM20 |
- |
- |
Density (g/cm3) |
1.0~1.1 |
True density |
바로가기 |
| - |
- |
Density (g/cm3) |
0.38~0.40 |
Bulk Density |
| - |
- |
Compressive Strength (psi) |
18000 |
|
| - |
- |
Size (um) |
12 |
D50 |
| - |
- |
Size (um) |
20 |
D90 |
| 874 |
TiO2 |
Nanjing High Technology Nano Material |
VK-TA33 |
0.015 |
Anatase |
Purity(%) |
99.9 |
|
바로가기 |
| 0.015 |
Anatase |
pH |
1~5 |
|
| 873 |
TiO2 |
Nanjing High Technology Nano Material |
VK-TA39 |
0.01~0.05 |
Anatase |
Purity(%) |
20 |
|
바로가기 |
| 872 |
TiO2 |
Nanjing High Technology Nano Material |
J25 |
0.035~0.065 |
|
Purity(%) |
99.5 |
|
바로가기 |
| 0.035~0.065 |
|
Specific surface area(m2/g) |
35~65 |
|
| 0.035~0.065 |
|
pH |
5.0~8.0 |
|
| 0.035~0.065 |
|
Loss on drying(%) |
2 |
105°C, 2h |
| 0.035~0.065 |
|
Loss on ignition(%) |
5 |
|
| 871 |
TiO2 |
Nanjing High Technology Nano Material |
VK-T25H |
0.01~0.04 |
Rutile |
Purity(%) |
99 |
|
바로가기 |
| 0.01~0.04 |
Rutile |
Specific surface area(m2/g) |
15~45 |
|
| 0.01~0.04 |
Rutile |
pH |
6~8 |
|
| 0.01~0.04 |
Rutile |
Loss on drying(%) |
1 |
105°C, 2h |
| 0.01~0.04 |
Rutile |
Loss on ignition(%) |
5 |
|
| 870 |
TiO2 |
Nanjing High Technology Nano Material |
VK-T25G3 |
0.01~0.04 |
Rutile |
Purity(%) |
99 |
|
바로가기 |
| 0.01~0.04 |
Rutile |
Specific surface area(m2/g) |
10~40 |
|
| 0.01~0.04 |
Rutile |
Loss on drying(%) |
1 |
105°C, 2h |
| 0.01~0.04 |
Rutile |
Loss on ignition(%) |
5 |
|
| 869 |
TiO2 |
Nanjing High Technology Nano Material |
VK-T25Y3 |
0.01~0.04 |
Rutile |
Purity(%) |
99 |
|
바로가기 |
| 0.01~0.04 |
Rutile |
Specific surface area(m2/g) |
15~45 |
|
| 0.01~0.04 |
Rutile |
Loss on drying(%) |
1 |
105°C, 2h |
| 0.01~0.04 |
Rutile |
Loss on ignition(%) |
5 |
|
| 868 |
TiO2 |
Nanjing High Technology Nano Material |
VK-T25H3 |
0.01~0.04 |
Rutile |
Purity(%) |
99 |
|
바로가기 |
| 0.01~0.04 |
Rutile |
Specific surface area(m2/g) |
15~45 |
|
| 0.01~0.04 |
Rutile |
pH |
6~8 |
|
| 0.01~0.04 |
Rutile |
Loss on drying(%) |
1 |
105°C, 2h |
| 0.01~0.04 |
Rutile |
Loss on ignition(%) |
5 |
|
| 867 |
ZrO2 |
Nanjing High Technology Nano Material |
US3600 |
0.04 |
|
Purity(%) |
> 99 |
|
바로가기 |
| 0.04 |
|
Specific surface area(m2/g) |
20~40 |
|
| 0.04 |
|
Density(g/cm3) |
5.89 |
True density |
| 0.04 |
|
Loss on drying(%) |
0.64 |
110°C, 2h |
| 0.04 |
|
Loss on ignition(%) |
0.75 |
850°C, 2h |
| 866 |
ZrO2 |
Nanjing High Technology Nano Material |
US3659 |
0.02 |
|
Purity(%) |
99.95 |
|
바로가기 |
| 0.02 |
|
Specific surface area(m2/g) |
30~60 |
|
| 0.02 |
|
Density(g/cm3) |
5.89 |
True density |
| 865 |
ZnCO3 |
Nanjing High Technology Nano Material |
US3595 |
0.02 |
|
Purity(%) |
99.5 |
|
바로가기 |
| 0.02 |
|
Specific surface area(m2/g) |
80 |
|
| 0.02 |
|
pH |
6.0~6.5 |
|
| 0.02 |
|
Loss of weight in drying(%) |
2.6 |
|
| 0.02 |
|
Loss of weight on ignition(%) |
26.9 |
|
| 0.02 |
|
Density(g/cm3) |
0.4 |
Bulk density |
| 0.02 |
|
Whiteness |
90.7 |
|
| 864 |
Hollow glass sphere |
Nanjing High Technology Nano Material |
HM15 |
- |
- |
Density (g/cm3) |
1.3 ~ 1.4 |
True density |
바로가기 |
| - |
- |
Density (g/cm3) |
0.39~0.42 |
Bulk Density |
| - |
- |
Compressive Strength (psi) |
18000 |
|
| - |
- |
Size (um) |
10 |
D50 |
| - |
- |
Size (um) |
15 |
D90 |
| 863 |
ZnO |
Nanjing High Technology Nano Material |
US3592 |
0.02 |
|
Purity(%) |
99 |
|
바로가기 |
| 0.02 |
|
Specific surface area(m2/g) |
20~60 |
|
| 0.02 |
|
pH |
8.5~9.0 |
|
| 0.02 |
|
Loss of weight in drying(%) |
0.42 |
|
| 0.02 |
|
Loss of weight on ignition(%) |
2.1 |
|
| 0.02 |
|
Density(g/cm3) |
0.532 |
Bulk density |
| 0.02 |
|
Density(g/cm3) |
5.606 |
True density |