• 基本信息
  • 制备方法及用途
  • 物化性质
  • 安全信息
  • 毒理性
  • MSDS
  • 结构与计算化学
  • 上游产品
  • 下游产品

氯 基本信息

中文名称:
氯 
中文别名:
氯;
液氯;
氯气 
英文名称:
dichlorine
英文别名:
dichlorine;
Chlore;
Cl2;
Cloro;
chlorine0;
Chlorine;
Chlor;
Chloor;
Bertholite;
Chlor8 
CAS No.:
7782-50-5
分 子 式:
Cl2
分 子 量:
70.90600
精确分子量:
69.93770
PSA:
0.00000
MDL:
MFCD00010934
EINECS:
231-959-5
BRN:
3902968
InChI:
InChI=1/Cl2/c1-2
风险术语:
23-36/37/38-50
分子结构式:
SDS:
查看

氯 制备方法及用途

制备方法

主要用于大规模集成电路、光纤、高温超导等高新技术领域。氯是一种强氧化剂,它能不同程度地氧化冷却水中的某些有机缓蚀阻垢剂。氯还能与水中的有机烃类反应生成氯代烃,该类物质已被证明具有致癌性,而且排放的废水中游离余氯对水生生物有毒害作用。最好与非氧化型杀菌剂、黏泥剥离剂配合使用。液氯一般经汽化后使用。用于纺织品和造纸的漂白。冶金工业用于生产金属钛、镁等。化学工业用于生产次氯酸钠、三氯化铝、三氯化铁、漂白粉、溴素、三氯化磷等无机化工产品,还用于生产有机氯化物,如氯乙酸、环氧氯丙烷、一氯代苯等。也用于生产氯丁橡胶、塑料及增塑剂。日用化学工业用于生产合成洗涤剂原料烷基磺酸钠和烷基苯磺酸钠等。农药工业用作生产高效杀虫剂、杀菌剂、除草剂、植物生长刺激剂的原料。还用于自来水的消毒、净化。可用作半导体生产中的气体蚀刻剂,特别是与三氯化硼混合可用作铝的蚀刻;可用于晶体生长、热氧化等工艺。还可用于MCVD法生产单膜光纤预制件。液氯一般经气化后使用。用于纺织品和造纸的漂白。冶金工业用于生产金属钛、镁等。化学工业用于生产次氯酸钠、三氯化铝、三氯化铁、漂白粉、溴素及三氯化磷等无机化工产品,还用于生产有机氯化物,如氯乙酸、环氧氯丙烷、一氯代苯等。也用于生产氯丁橡胶、塑料及增塑剂。日用化学工业用于生产合成洗涤剂原料,如烷基磺酸钠和烷基苯磺酸钠等。农药工业用作生产高效杀虫剂、杀菌剂、除草剂和植物生长刺激剂的原料。还用于自来水的消毒、净化。用于漂白,制造氯化合物、盐酸、聚氯乙烯等。

合成制备方法

1.冷冻法 由氯气干燥室来的干燥氯气(压力0.196133~0.225553MPa),通过飞沫捕集器分离除去酸沫杂质后,进入方箱式液化槽中的氯冷凝蛇管,被管外的氯化钙盐水(-25~-35℃)冷却,冷凝成液体氯,未冷凝的含氯废气经废气分离器,分离出来的不凝废气送往它处使用,液氯流人液氯计量槽,用干燥压缩空气压送至液氯槽或直接压送至液氯槽车或钢瓶包装。被氯气加热的氯化钙盐水,在旋桨式搅拌器的推动下流向方箱液化槽的另一侧——氨蒸发器外,由于液氨蒸发的致冷作用,重新冷却返回氯冷凝蛇管侧,不断循环,连续制得液氯成品。

2.装置如图。在烧瓶1中放10g KMnO4粉末,由末端带弯管的图氯气制备装置

1—浮兹烧瓶;2—滴液漏斗;3—装有浓H2SO4的瓶子;4—移液管;5—排气管;6—反应器滴液漏斗2滴加60~65mL盐酸(相对密度1.17),可以逸出均匀的氯气流。如果需要在压力下向反应器中通入氯气,可用调节装置。将烧瓶与一装有浓H2SO4的瓶3相连,于瓶塞的一孔插入可自由移动的移液管4,并与通至通风橱的管5相连。当移液管自硫酸中提出时,气体则进入通风橱中。当移液管浸入酸中时,氯气即进入反应器中,只是当相应于移液管位置的酸柱不能平衡气体的压力时,氯气才能进入通风橱中。与此法类似,用来氧化盐酸的氧化剂还可以用MnO2或K2Cr2O7。

3.大量氯气(或经常制取少量氯气)可利用漂白粉与盐酸的反应。在启普发生器的中间球内放入漂白粉小块,并加入盐酸(相对密度1.12)为了提纯释出的氯气可使其通过盛有水和浓H2SO4的洗瓶。漂白粉块可用新鲜漂白粉压制而成。若长时间停止操作最好将盐酸从发生器中倒出。因为盐酸会溶解氯而逐渐充满中间球部,又会开始发生氯气。钢瓶装的工业品氯含有少量O2、N2、HCl、H2O等杂质。为提纯,首先使氯气通过两个浓H2SO4洗瓶,然后通过CaO柱(除去HCl)和P2O5管,为除去O2和N2须将气体液化,即将其在用干冰和丙酮的混合物冷却到-78℃的接受器中冷凝。未冷凝的气体主要是氧用泵抽出。然后将氯蒸发并重新冷凝,重复操作数次后,再在真空及液化空气温度下进行分馏,收集中间馏分,即得纯净氯气。

图制备DCl的仪器

1—D2SO4储器;2—连接管;3—盛有NaCl的瓶;4—DCl接受器;5—内封口;6—加料管;7—联泵管;8—敲击器;9—防溅雾的阱

一般以工业液氯为原料,经干燥、吸附、冷凝净化,可制取高纯氯。

用途简介

用途

1.主要用于大规模集成电路、光纤、高温超导等高新技术领域。

2.氯是一种强氧化剂,它能不同程度地氧化冷却水中的某些有机缓蚀阻垢剂。氯还能与水中的有机烃类反应生成氯代烃,该类物质已被证明具有致癌性,而且排放的废水中游离余氯对水生生物有毒害作用。最好与非氧化型杀菌剂、黏泥剥离剂配合使用。

3.液氯一般经汽化后使用。用于纺织品和造纸的漂白。冶金工业用于生产金属钛、镁等。化学工业用于生产次氯酸钠、三氯化铝、三氯化铁、漂白粉、溴素、三氯化磷等无机化工产品,还用于生产有机氯化物,如氯乙酸、环氧氯丙烷、一氯代苯等。也用于生产氯丁橡胶、塑料及增塑剂。日用化学工业用于生产合成洗涤剂原料烷基磺酸钠和烷基苯磺酸钠等。农药工业用作生产高效杀虫剂、杀菌剂、除草剂、植物生长刺激剂的原料。还用于自来水的消毒、净化。

4.可用作半导体生产中的气体蚀刻剂,特别是与三氯化硼混合可用作铝的蚀刻;可用于晶体生长、热氧化等工艺。还可用于MCVD法生产单膜光纤预制件。

5.液氯一般经气化后使用。用于纺织品和造纸的漂白。冶金工业用于生产金属钛、镁等。化学工业用于生产次氯酸钠、三氯化铝、三氯化铁、漂白粉、溴素及三氯化磷等无机化工产品,还用于生产有机氯化物,如氯乙酸、环氧氯丙烷、一氯代苯等。也用于生产氯丁橡胶、塑料及增塑剂。日用化学工业用于生产合成洗涤剂原料,如烷基磺酸钠和烷基苯磺酸钠等。农药工业用作生产高效杀虫剂、杀菌剂、除草剂和植物生长刺激剂的原料。还用于自来水的消毒、净化。

6.用于漂白,制造氯化合物、盐酸、聚氯乙烯等。[20]

氯 物化性质

外观与性状:
淡绿色-黄色气体带有一种刺激的气味
密度:
1.468(0℃)
熔点:
−101 °C(lit.)
沸点:
−34 °C(lit.)
水溶解性:
0.7 g/100 mL
折射率:
1.375
蒸汽密度:
2.48 (vs air)
存储条件/存储方法:
库房通风低温干燥,轻装轻卸,与易燃气体、氨、金属粉末分开储运
稳定性相关:

1.具有窒息的气味,有强烈刺激臭和腐蚀性。性质很活泼,虽不自燃,但可以助燃,在日光下与其他易燃气体混合时会发生燃烧和爆炸,可以和大多数元素或化合物起反应。剧毒。在0℃,599986Pa下凝结为金黄色液体,20℃,100mL水中能溶解氯0.7291g,液氯相对密度1.557(-34℃),2.13(-195℃)。化学性质活泼,几乎与所有元素都能发生作用。

2.稳定性[16]  稳定

3.禁配物[17]  易燃或可燃物、烷烃、炔烃、卤代烷烃、芳香烃、胺类、醇类、乙醚、氢、金属、苛性碱、非金属单质、非金属氧化物、金属氢化物等

4.聚合危害[18]  不聚合

其它信息:

1.性状:黄绿色、有刺激性气味的气体。[1]

2.熔点(℃):-101[2]

3.沸点(℃):-34.0[3]

4.相对密度(水=1):1.41(20℃)[4]

5.相对蒸气密度(空气=1):2.5[5]

6.饱和蒸气压(kPa):673(20℃)[6]

7.临界温度(℃):144[7]

8.临界压力(MPa):7.71[8]

9.辛醇/水分配系数:0.85[9]

10.溶解性:微溶于冷水,溶于碱、氯化物和醇类。[10]

氯 安全信息

风险类别:
2.3
海关代码:
2801100000
WGK_Germany:
2
德国有关水污染物质的分类清单
危险类别码:
R23;R36/37/38;R50
安全说明:
S9-S45-S61
RTECS号:
FO2100000
安全标志:
S9:保持容器在一个有良好通风放的场所。
S45:出现意外或者感到不适,立刻到医生那里寻求帮助(最好带去产品容器标签)。
S61:避免排放到环境中。参考专门的说明/安全数据表。
危险标志:
T:Toxic

氯 毒理性

CHEMICAL IDENTIFICATION

RTECS NUMBER :
FO2100000
CHEMICAL NAME :
Chlorine
CAS REGISTRY NUMBER :
7782-50-5
LAST UPDATED :
199712
DATA ITEMS CITED :
63
MOLECULAR FORMULA :
Cl2
MOLECULAR WEIGHT :
70.90
WISWESSER LINE NOTATION :
G2

HEALTH HAZARD DATA

ACUTE TOXICITY DATA

TYPE OF TEST :
LCLo - Lowest published lethal concentration
ROUTE OF EXPOSURE :
Inhalation
SPECIES OBSERVED :
Human
DOSE/DURATION :
2530 mg/m3/30M
TOXIC EFFECTS :
Lungs, Thorax, or Respiration - structural or functional change in trachea or bronchi Lungs, Thorax, or Respiration - emphysema Lungs, Thorax, or Respiration - chronic pulmonary edema
TYPE OF TEST :
LCLo - Lowest published lethal concentration
ROUTE OF EXPOSURE :
Inhalation
SPECIES OBSERVED :
Human
DOSE/DURATION :
500 ppm/5M
TOXIC EFFECTS :
Details of toxic effects not reported other than lethal dose value
TYPE OF TEST :
LC50 - Lethal concentration, 50 percent kill
ROUTE OF EXPOSURE :
Inhalation
SPECIES OBSERVED :
Rodent - rat
DOSE/DURATION :
293 ppm/1H
TOXIC EFFECTS :
Details of toxic effects not reported other than lethal dose value
TYPE OF TEST :
LC50 - Lethal concentration, 50 percent kill
ROUTE OF EXPOSURE :
Inhalation
SPECIES OBSERVED :
Rodent - mouse
DOSE/DURATION :
137 ppm/1H
TOXIC EFFECTS :
Details of toxic effects not reported other than lethal dose value
TYPE OF TEST :
LCLo - Lowest published lethal concentration
ROUTE OF EXPOSURE :
Inhalation
SPECIES OBSERVED :
Mammal - dog
DOSE/DURATION :
800 ppm/30M
TOXIC EFFECTS :
Behavioral - muscle weakness Gastrointestinal - nausea or vomiting Lungs, Thorax, or Respiration - dyspnea
TYPE OF TEST :
LCLo - Lowest published lethal concentration
ROUTE OF EXPOSURE :
Inhalation
SPECIES OBSERVED :
Rodent - guinea pig
DOSE/DURATION :
3200 ppm/3H
TOXIC EFFECTS :
Details of toxic effects not reported other than lethal dose value
TYPE OF TEST :
LCLo - Lowest published lethal concentration
ROUTE OF EXPOSURE :
Inhalation
SPECIES OBSERVED :
Mammal - species unspecified
DOSE/DURATION :
500 ppm/5M
TOXIC EFFECTS :
Details of toxic effects not reported other than lethal dose value
TYPE OF TEST :
TDLo - Lowest published toxic dose
ROUTE OF EXPOSURE :
Oral
SPECIES OBSERVED :
Rodent - rat
DOSE/DURATION :
3312 mg/kg/92D-C
TOXIC EFFECTS :
Blood - change in clotting factors
TYPE OF TEST :
TDLo - Lowest published toxic dose
ROUTE OF EXPOSURE :
Oral
SPECIES OBSERVED :
Rodent - rat
DOSE/DURATION :
109 gm/kg/2Y-C
TOXIC EFFECTS :
Endocrine - changes in spleen weight Blood - changes in other cell count (unspecified) Biochemical - Metabolism (Intermediary) - Plasma proteins not involving coagulation
TYPE OF TEST :
TCLo - Lowest published toxic concentration
ROUTE OF EXPOSURE :
Inhalation
SPECIES OBSERVED :
Rodent - rat
DOSE/DURATION :
9 ppm/6H/6W-I
TOXIC EFFECTS :
Kidney, Ureter, Bladder - other changes Blood - changes in leukocyte (WBC) count Biochemical - Enzyme inhibition, induction, or change in blood or tissue levels - phosphatases
TYPE OF TEST :
TDLo - Lowest published toxic dose
ROUTE OF EXPOSURE :
Oral
SPECIES OBSERVED :
Rodent - rat
DOSE/DURATION :
7568 mg/kg/28D-C
TOXIC EFFECTS :
Behavioral - food intake (animal) Liver - changes in liver weight Kidney, Ureter, Bladder - changes in bladder weight
TYPE OF TEST :
TDLo - Lowest published toxic dose
ROUTE OF EXPOSURE :
Oral
SPECIES OBSERVED :
Rodent - rat
DOSE/DURATION :
42 gm/kg/2W-C
TOXIC EFFECTS :
Brain and Coverings - changes in brain weight Liver - changes in liver weight Kidney, Ureter, Bladder - changes in bladder weight
TYPE OF TEST :
TCLo - Lowest published toxic concentration
ROUTE OF EXPOSURE :
Inhalation
SPECIES OBSERVED :
Rodent - rat
DOSE/DURATION :
9100 ppb/6H/5D-I
TOXIC EFFECTS :
Sense Organs and Special Senses (Olfaction) - effect, not otherwise specified Lungs, Thorax, or Respiration - structural or functional change in trachea or bronchi Nutritional and Gross Metabolic - weight loss or decreased weight gain
TYPE OF TEST :
TDLo - Lowest published toxic dose
ROUTE OF EXPOSURE :
Oral
SPECIES OBSERVED :
Rodent - mouse
DOSE/DURATION :
153 gm/kg/73W-C
TOXIC EFFECTS :
Cardiac - changes in heart weight Kidney, Ureter, Bladder - changes in bladder weight Related to Chronic Data - changes in ovarian weight
TYPE OF TEST :
TCLo - Lowest published toxic concentration
ROUTE OF EXPOSURE :
Inhalation
SPECIES OBSERVED :
Rodent - mouse
DOSE/DURATION :
9100 ppb/6H/5D-I
TOXIC EFFECTS :
Sense Organs and Special Senses (Olfaction) - effect, not otherwise specified Lungs, Thorax, or Respiration - structural or functional change in trachea or bronchi Nutritional and Gross Metabolic - weight loss or decreased weight gain
TYPE OF TEST :
TDLo - Lowest published toxic dose
ROUTE OF EXPOSURE :
Oral
SPECIES OBSERVED :
Rodent - rat
DOSE/DURATION :
5096 mg/kg/2Y-C
TOXIC EFFECTS :
Tumorigenic - equivocal tumorigenic agent by RTECS criteria Blood - leukemia
TYPE OF TEST :
TDLo - Lowest published toxic dose
ROUTE OF EXPOSURE :
Oral
DOSE :
565 mg/kg
SEX/DURATION :
male 8 week(s) pre-mating female 2 week(s) pre-mating - 3 week(s) post-birth
TOXIC EFFECTS :
Reproductive - Effects on Newborn - biochemical and metabolic

MUTATION DATA

TEST SYSTEM :
Rodent - mouse
REFERENCE :
ENMUDM Environmental Mutagenesis. (New York, NY) V.1-9, 1979-87. For publisher information, see EMMUEG. Volume(issue)/page/year: 7,201,1985 *** REVIEWS *** ACGIH TLV-Not classifiable as a human carcinogen DTLVS* The Threshold Limit Values (TLVs) and Biological Exposure Indices (BEIs) booklet issues by American Conference of Governmental Industrial Hygienists (ACGIH), Cincinnati, OH, 1996 Volume(issue)/page/year: TLV/BEI,1997 ACGIH TLV-STEL 2.9 mg/m3 (1 ppm) DTLVS* The Threshold Limit Values (TLVs) and Biological Exposure Indices (BEIs) booklet issues by American Conference of Governmental Industrial Hygienists (ACGIH), Cincinnati, OH, 1996 Volume(issue)/page/year: TLV/BEI,1997 ACGIH TLV-TWA 1.5 mg/m3 (0.5 ppm) DTLVS* The Threshold Limit Values (TLVs) and Biological Exposure Indices (BEIs) booklet issues by American Conference of Governmental Industrial Hygienists (ACGIH), Cincinnati, OH, 1996 Volume(issue)/page/year: TLV/BEI,1997 *** U.S. STANDARDS AND REGULATIONS *** EPA FIFRA 1988 PESTICIDE SUBJECT TO REGISTRATION OR RE-REGISTRATION FEREAC Federal Register. (U.S. Government Printing Office, Supt. of Documents, Washington, DC 20402) V.1- 1936- Volume(issue)/page/year: 54,7740,1989 MSHA STANDARD-air:TWA 1 ppm (3 mg/m3) DTLVS* The Threshold Limit Values (TLVs) and Biological Exposure Indices (BEIs) booklet issues by American Conference of Governmental Industrial Hygienists (ACGIH), Cincinnati, OH, 1996 Volume(issue)/page/year: 3,46,1971 OSHA PEL (Gen Indu):CL 1 ppm (3 mg/m3) CFRGBR Code of Federal Regulations. (U.S. Government Printing Office, Supt. of Documents, Washington, DC 20402) Volume(issue)/page/year: 29,1910.1000,1994 OSHA PEL (Construc):CL 1 ppm (3 mg/m3) CFRGBR Code of Federal Regulations. (U.S. Government Printing Office, Supt. of Documents, Washington, DC 20402) Volume(issue)/page/year: 29,1926.55,1994 OSHA PEL (Shipyard):CL 1 ppm (3 mg/m3) CFRGBR Code of Federal Regulations. (U.S. Government Printing Office, Supt. of Documents, Washington, DC 20402) Volume(issue)/page/year: 29,1915.1000,1993 OSHA PEL (Fed Cont):CL 1 ppm (3 mg/m3) CFRGBR Code of Federal Regulations. (U.S. Government Printing Office, Supt. of Documents, Washington, DC 20402) Volume(issue)/page/year: 41,50-204.50,1994 *** OCCUPATIONAL EXPOSURE LIMITS *** OEL-ARAB Republic of Egypt:TWA 1 ppm (3 mg/m3) JAN 1993 OEL-AUSTRALIA:TWA 1 ppm (3 mg/m3) JAN 1993 OEL-AUSTRIA:TWA 0.5 ppm (1.5 mg/m3) JAN 1993 OEL-BELGIUM:TWA 0.5 ppm (1.5 mg/m3);STEL 1 ppm (3 mg/m3) JAN 1993 OEL-DENMARK:TWA 0.5 ppm (1.5 mg/m3) JAN 1993 OEL-FINLAND:TWA 0.5 ppm (1.5 mg/m3);STEL 1 ppm (3 mg/m3) JAN 1993 OEL-FRANCE:STEL 1 ppm (3 mg/m3) JAN 1993 OEL-GERMANY:TWA 0.5 ppm (1.5 mg/m3) JAN 1993 OEL-HUNGARY:STEL 1 mg/m3 JAN 1993 OEL-INDIA:TWA 1 ppm (3 mg/m3);STEL 3 ppm (9 mg/m3) JAN 1993 OEL-JAPAN:TWA 1 ppm (2.9 mg/m3) JAN 1993 OEL-THE NETHERLANDS:TWA 1 ppm (3 mg/m3) JAN 1993 OEL-THE PHILIPPINES:TWA 1 ppm (3 mg/m3) JAN 1993 OEL-POLAND:TWA 1.5 mg/m3 JAN 1993 OEL-RUSSIA:TWA 1 ppm;STEL 1 mg/m3 JAN 1993 OEL-SWEDEN:TWA 0.5 ppm (1.5 mg/m3);STEL 1 ppm (3 mg/m3) JAN 1993 OEL-SWITZERLAND:TWA 0.5 ppm (1.5 mg/m3);STEL 1 ppm (3 mg/m3) JAN 1993 OEL-THAILAND:TWA 1 ppm (3 mg/m3) JAN 1993 OEL-TURKEY:TWA 1 ppm (3 mg/m3) JAN 1993 OEL-UNITED KINGDOM:TWA 1 ppm (3 mg/m3);STEL 3 ppm (9 mg/m3) JAN 1993 OEL IN BULGARIA, COLOMBIA, JORDAN, KOREA check ACGIH TLV OEL IN NEW ZEALAND, SINGAPORE, VIETNAM check ACGIH TLV *** NIOSH STANDARDS DEVELOPMENT AND SURVEILLANCE DATA *** NIOSH RECOMMENDED EXPOSURE LEVEL (REL) : NIOSH REL TO CHLORINE-air:10H TWA 0.5 ppm;STEL 1 ppm REFERENCE : NIOSH* National Institute for Occupational Safety and Health, U.S. Dept. of Health, Education, and Welfare, Reports and Memoranda. Volume(issue)/page/year: DHHS #92-100,1992 NIOSH OCCUPATIONAL EXPOSURE SURVEY DATA : NOHS - National Occupational Hazard Survey (1974) NOHS Hazard Code - 18040 No. of Facilities: 21429 (estimated) No. of Industries: 169 No. of Occupations: 86 No. of Employees: 220544 (estimated) NOES - National Occupational Exposure Survey (1983) NOES Hazard Code - X9656 No. of Facilities: 338 (estimated) No. of Industries: 3 No. of Occupations: 6 No. of Employees: 4768 (estimated) No. of Female Employees: 1862 (estimated) NOES - National Occupational Exposure Survey (1983) NOES Hazard Code - 18040 No. of Facilities: 5343 (estimated) No. of Industries: 70 No. of Occupations: 75 No. of Employees: 178105 (estimated) No. of Female Employees: 20221 (estimated)
毒理学数据:

1.急性毒性[11]  LC50:850mg/m3(大鼠吸入,1h)

2.刺激性   暂无资料

3.亚急性与慢性毒性[12]  家兔吸入2~5mg/m3,每天5h,1~9个月,出现消瘦、上呼吸道炎、肺炎、胸膜炎及肺气肿等。大鼠吸入41~97mg/m3,每天1~2h,3~4周,引起严重但非致死性的肺气肿与气管病变。

4.致突变性[13]  细胞遗传学分析:人淋巴细胞20ppm。精子形态学分析:小鼠经口20mg/kg(5d)(连续)。微生物致突变:鼠伤寒沙门菌1800μg/L。

5.其他[14]  LCLo:2530mg/m3(人吸入30min),500ppm(人吸入5min)

生态数据:

1.生态毒性[15]  LC50:0.44mg/L(96h)(蓝鳃太阳鱼);0.49mg/L(96h)(水蚤)

2.生物降解性  暂无资料

3.非生物降解性  暂无资料

氯 MSDS

第一部分:化学品名称

氯 分子结构与计算化学数据

分子结构数据

1、摩尔折射率:11.74

2、摩尔体积(cm3/mol):51.3

3、等张比容(90.2K):109.0

4、表面张力(dyne/cm):20.4

5、介电常数:无可用的

6、极化率(10-24cm3):4.65

7、单一同位素质量:69.937705 Da

8、标称质量:70 Da

9、平均质量:70.906 Da

计算化学数据

1.疏水参数计算参考值(XlogP):1.6

2.氢键供体数量:0

3.氢键受体数量:0

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0

7.重原子数量:2

8.表面电荷:0

9.复杂度:0

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:1

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