| 中文名 |
七水硫酸锌
|
| 英文名 |
zinc sulfate heptahydrate
|
| 中文别名 |
硫酸锌,七水合物
七水合硫酸锌
硫酸锌七水
硫酸锌,七水
七水合硫酸锌
皓矾
硫酸锌(七水)
|
| 英文别名 |
ZINC SULFATE
MFCD00149894
White Vitrol
Ophthazinc T
Goslarite
EINECS 616-097-3
zinc(2+) sulfate heptahydrate
ZINCI SULFAS
Zinc sulfate heptahydrate
ZINC VITRIOL
Zinc sulphate heptahydrate
VasoClear A
zinc sulfate heptahydrate (1:1:7)
SALT OF VITRIOL
zinc sulphate 7-hydrate
ZINC SULFATE,ACS
Zinc sulfate hydrate (1:1:7)
|
| 密度 |
1.957
|
| 沸点 |
330ºC at 760 mmHg
|
| 熔点 |
100 °C
|
| 分子式 |
H14O11SZn
|
| 分子量 |
287.579
|
| 精确质量 |
285.954834
|
| PSA |
153.25000
|
| 外观性状 |
无色至白色结晶固体
|
| 储存条件 |
1.本品应贮存于阴凉干燥处,防止雨淋、受潮,防止日晒、受热。不得食用品、酸、碱及有色物质共贮混运。
2.勿与潮湿物品及其他有色原料混合堆置,运输工具要干净清洁。防止包装破损。
|
| 稳定性 |
1.易溶于水(20℃时为96.5g/100ml水;100℃时为663.6g/100ml)。微溶于醇和甘油。 2.在干燥空气中逐渐风化。280℃时失去全部结晶水而成无水物,500℃以上分解
|
| 水溶解性 |
960 g/L
|
| 分子结构 |
1、摩尔折射率:无可用
2、 摩尔体积(cm3/mol): 无可用
3、 等张比容(90.2K):无可用
4、 表面张力(dyne/cm):无可用
5、 极化率:无可用
|
| 计算化学 |
1.疏水参数计算参考值(XlogP):无
2.氢键供体数量:7
3.氢键受体数量:11
4.可旋转化学键数量:0
5.互变异构体数量:无
6.拓扑分子极性表面积95.6
7.重原子数量:13
8.表面电荷:0
9.复杂度:62.2
10.同位素原子数量:0
11.确定原子立构中心数量:0
12.不确定原子立构中心数量:0
13.确定化学键立构中心数量:0
14.不确定化学键立构中心数量:0
15.共价键单元数量:9
|
| 更多 |
1. 性状:无色斜方晶系棱柱状结晶。
2. 密度(g/mL,25/4℃): 1.957
3. 相对蒸汽密度(g/mL,空气=1):无可用
4. 熔点(ºC):100
5. 沸点(ºC,常压):无可用
6. 沸点(ºC,5.2kPa): 无可用
7. 折射率: 无可用
8. 闪点(ºC): 无可用
9. 比旋光度(º):无可用
10. 自燃点或引燃温度(ºC):无可用
11. 蒸气压(kPa,25ºC):无可用
12. 饱和蒸气压(kPa,60ºC):无可用
13. 燃烧热(KJ/mol):无可用
14. 临界温度(ºC):无可用
15. 临界压力(KPa):无可用
16. 油水(辛醇/水)分配系数的对数值:无可用
17. 爆炸上限(%,V/V):无可用
18. 爆炸下限(%,V/V): 无可用
19. 溶解性:易溶于水。微溶于醇和甘油。不溶于液氨和酮。在干燥空气中逐渐风化。
|
毒理学数据:
对皮肤、黏膜有刺激性。无水物及浓溶液可引起皮肤溃疡。吸入粉尘可引起呼吸、消化及循环系统功能异常。工作人员应作好防护。小鼠经口LC50:1.18g/kg;大鼠经口LD50: 2.949g/kg。
生态学数据:
该物质对环境可能有危害,对水体应给予特别注意。
CHEMICAL IDENTIFICATION
-
RTECS NUMBER :
-
ZH5300000
-
CAS REGISTRY NUMBER :
-
7446-20-0
-
LAST UPDATED :
-
199707
-
DATA ITEMS CITED :
-
18
-
MOLECULAR FORMULA :
-
O4-S-Zn.7H2-O
-
MOLECULAR WEIGHT :
-
287.57
-
WISWESSER LINE NOTATION :
-
ZN S-O4 &QH 7
HEALTH HAZARD DATA
ACUTE TOXICITY DATA
-
TYPE OF TEST :
-
LDLo - Lowest published lethal dose
-
ROUTE OF EXPOSURE :
-
Unreported
-
SPECIES OBSERVED :
-
Human - man
-
DOSE/DURATION :
-
221 mg/kg
-
TOXIC EFFECTS :
-
Details of toxic effects not reported other than lethal dose value
-
TYPE OF TEST :
-
LD50 - Lethal dose, 50 percent kill
-
ROUTE OF EXPOSURE :
-
Oral
-
SPECIES OBSERVED :
-
Rodent - rat
-
DOSE/DURATION :
-
2150 mg/kg
-
TOXIC EFFECTS :
-
Details of toxic effects not reported other than lethal dose value
-
TYPE OF TEST :
-
LD50 - Lethal dose, 50 percent kill
-
ROUTE OF EXPOSURE :
-
Intraperitoneal
-
SPECIES OBSERVED :
-
Rodent - rat
-
DOSE/DURATION :
-
200 mg/kg
-
TOXIC EFFECTS :
-
Details of toxic effects not reported other than lethal dose value
-
TYPE OF TEST :
-
LDLo - Lowest published lethal dose
-
ROUTE OF EXPOSURE :
-
Subcutaneous
-
SPECIES OBSERVED :
-
Rodent - rat
-
DOSE/DURATION :
-
330 mg/kg
-
TOXIC EFFECTS :
-
Details of toxic effects not reported other than lethal dose value
-
TYPE OF TEST :
-
LDLo - Lowest published lethal dose
-
ROUTE OF EXPOSURE :
-
Intravenous
-
SPECIES OBSERVED :
-
Rodent - rat
-
DOSE/DURATION :
-
49 mg/kg
-
TOXIC EFFECTS :
-
Details of toxic effects not reported other than lethal dose value
-
TYPE OF TEST :
-
LD50 - Lethal dose, 50 percent kill
-
ROUTE OF EXPOSURE :
-
Oral
-
SPECIES OBSERVED :
-
Rodent - mouse
-
DOSE/DURATION :
-
2200 mg/kg
-
TOXIC EFFECTS :
-
Details of toxic effects not reported other than lethal dose value
-
TYPE OF TEST :
-
LD50 - Lethal dose, 50 percent kill
-
ROUTE OF EXPOSURE :
-
Intraperitoneal
-
SPECIES OBSERVED :
-
Rodent - mouse
-
DOSE/DURATION :
-
75 mg/kg
-
TOXIC EFFECTS :
-
Details of toxic effects not reported other than lethal dose value
-
TYPE OF TEST :
-
LDLo - Lowest published lethal dose
-
ROUTE OF EXPOSURE :
-
Subcutaneous
-
SPECIES OBSERVED :
-
Mammal - dog
-
DOSE/DURATION :
-
78 mg/kg
-
TOXIC EFFECTS :
-
Details of toxic effects not reported other than lethal dose value
-
TYPE OF TEST :
-
LDLo - Lowest published lethal dose
-
ROUTE OF EXPOSURE :
-
Intravenous
-
SPECIES OBSERVED :
-
Mammal - dog
-
DOSE/DURATION :
-
66 mg/kg
-
TOXIC EFFECTS :
-
Details of toxic effects not reported other than lethal dose value
-
TYPE OF TEST :
-
LDLo - Lowest published lethal dose
-
ROUTE OF EXPOSURE :
-
Oral
-
SPECIES OBSERVED :
-
Rodent - rabbit
-
DOSE/DURATION :
-
1914 mg/kg
-
TOXIC EFFECTS :
-
Details of toxic effects not reported other than lethal dose value
-
TYPE OF TEST :
-
LDLo - Lowest published lethal dose
-
ROUTE OF EXPOSURE :
-
Intravenous
-
SPECIES OBSERVED :
-
Rodent - rabbit
-
DOSE/DURATION :
-
44 mg/kg
-
TOXIC EFFECTS :
-
Details of toxic effects not reported other than lethal dose value
-
TYPE OF TEST :
-
LDLo - Lowest published lethal dose
-
ROUTE OF EXPOSURE :
-
Subcutaneous
-
SPECIES OBSERVED :
-
Rodent - guinea pig
-
DOSE/DURATION :
-
590 mg/kg
-
TOXIC EFFECTS :
-
Behavioral - somnolence (general depressed activity) Behavioral - coma Gastrointestinal - hypermotility, diarrhea
-
TYPE OF TEST :
-
TDLo - Lowest published toxic dose
-
ROUTE OF EXPOSURE :
-
Oral
-
SPECIES OBSERVED :
-
Rodent - rat
-
DOSE/DURATION :
-
226226 mg/kg/13W-C
-
TOXIC EFFECTS :
-
Gastrointestinal - changes in structure or function of endocrine pancreas Nutritional and Gross Metabolic - weight loss or decreased weight gain Biochemical - Enzyme inhibition, induction, or change in blood or tissue levels - transaminases
-
TYPE OF TEST :
-
TDLo - Lowest published toxic dose
-
ROUTE OF EXPOSURE :
-
Oral
-
SPECIES OBSERVED :
-
Rodent - mouse
-
DOSE/DURATION :
-
443898 mg/kg/13W-C
-
TOXIC EFFECTS :
-
Gastrointestinal - changes in structure or function of endocrine pancreas Kidney, Ureter, Bladder - other changes Endocrine - changes in thymus weight
-
TYPE OF TEST :
-
TDLo - Lowest published toxic dose
-
ROUTE OF EXPOSURE :
-
Intravenous
-
SPECIES OBSERVED :
-
Rodent - rabbit
-
DOSE/DURATION :
-
99 mg/kg/3W-I
-
TOXIC EFFECTS :
-
Sense Organs and Special Senses (Eye) - effect, not otherwise specified Biochemical - Enzyme inhibition, induction, or change in blood or tissue levels - transaminases
-
TYPE OF TEST :
-
Micronucleus test
MUTATION DATA
-
TEST SYSTEM :
-
Rodent - mouse
-
DOSE/DURATION :
-
20 gm/kg
-
REFERENCE :
-
ARGEAR Archiv fuer Geschwulstforschung. (VEB Verlag Volk und Gesundheit Neue Gruenstr. 18, Berlin DDR-1020, Ger. Dem. Rep.) V.1- 1949- Volume(issue)/page/year: 51,605,1981 *** NIOSH STANDARDS DEVELOPMENT AND SURVEILLANCE DATA *** NIOSH OCCUPATIONAL EXPOSURE SURVEY DATA : NOES - National Occupational Exposure Survey (1983) NOES Hazard Code - X7277 No. of Facilities: 160 (estimated) No. of Industries: 2 No. of Occupations: 5 No. of Employees: 2849 (estimated) No. of Female Employees: 705 (estimated)
|
【方法一】
合成法反应器中先加入以18%硫酸溶解锌渣的稀溶液,在搅拌下加入氧化锌(或含锌原料)调成浆状。然后加人硫酸,在带搅拌的耐酸反应器中进行反应,控制Ph5.1即为反应终点,浓度约38°Bé。反应液经过滤,液加热至80℃,加人锌粉将铜、镉、镍等置换出来,再经过滤,滤液加热至80℃以上,加入高锰酸钾(或漂白粉)并加热至沸,将铁、锰等杂质氧化,过滤后滤液先经澄清,然后蒸发至49~52°Bé,经冷却结晶、离心脱水、干燥,制得七水硫酸锌。其
ZnO+H2SO4→ZnSO4+H2O
【方法二】
在相对密度1.16的稀硫酸中缓慢加入锌料,温度控制在80~90℃,约2h后溶液Ph值达5.1~5.4,反应完毕,此时溶液相对密度约1.35;然后加入少量的高锰酸钾或漂白粉,使铁、锰氧化沉淀,过滤弃渣,滤液入置换桶,加入少量锌粉,在75~90℃下搅拌40~50min,置换出铜、铅、镉等重金属杂质。过滤后,滤液再用少量的高锰酸钾或漂白粉氧化,进一步除去少量的铁、锰,过滤得相对密度为1.28~1.32的硫酸锌溶液。此溶液冷却后在结晶锅中结晶2~3d,分离结晶,甩干后在40~50℃下烘干得成品。
ZnO+H2SO4→ZnSO4+H2O
【方法三】
在相对密度1.16的稀硫酸中缓慢加入锌料,温度控制在80-90℃,约2h后溶液PH达5.1-5.4,反应完毕,此时溶液相对密度约1.35。然后加入少量的高锰酸钾湖漂白粉,使铁、锰氧化沉淀,过滤弃渣,滤液入置换桶,加入少量锌粉,在75-90℃下搅拌40-50min,置换出铜、铅、铬等重金属杂质。过滤后,滤液再用少量的高锰酸钾或漂白粉氧化,进一步除去少量的铁、锰,过滤得相对密度为1.28-1.32的硫酸锌溶液。此溶液冷却后在结晶锅中结晶2-3天,分离结晶,甩干后在40-50℃下烘干得成品。
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