Name | Zinc naphthenate |
Synonyms | Einecs 234-409-2 Zinc naphthenate ZINC NAPHTHENATE Zinc uversol fungicide Naphtenate de zinc [iso-french] Zinc naphthenate Basic information |
CAS | 12001-85-3 |
EINECS | 234-409-2 |
Molecular Formula | 2(C11H7O2).Zn |
Molar Mass | 319.71 |
Density | 0.962g/mLat 25°C(lit.) |
Flash Point | 135°F |
Appearance | liquid |
Specific Gravity | 1.01 |
Color | viscous |
Refractive Index | n20/D 1.4630(lit.) |
Use | Mainly used as metal products rust inhibitor, paint, printing ink and resin drying agent, wetting agent, Insecticide, Fungicide, wood preservative, etc |
Risk Codes | R45 - May cause cancer R22 - Harmful if swallowed R65 - Harmful: May cause lung damage if swallowed |
Safety Description | S53 - Avoid exposure - obtain special instructions before use. S45 - In case of accident or if you feel unwell, seek medical advice immediately (show the label whenever possible.) S62 - If swallowed, do not induce vomitting; seek medical advice immediately and show this container or label. |
UN IDs | UN 1993 3/PG 3 |
WGK Germany | 1 |
RTECS | QK9275000 |
TSCA | Yes |
Hazard Class | 3 |
Packing Group | III |
CN201520687907.X
applicant (patent):
Funan Minghuan Chemical Co., Ltd.
inventor:
Abstract:
The utility model provides a reactor for producing zinc naphthenate, which relates to the field of naphthenate preparation technology and preparation device, the reactor body comprises a cylindrical kettle body, the upper and lower heads and the bottom of the kettle are equipped with a tubular heat exchanger and a raw material flow guide mechanism, and the outer surfaces of the cylindrical kettle body and the lower head are covered with a jacket. The utility model adopts a shell and tube heat exchanger structure and a jacket structure on the external surface of the kettle, and a heating carrier is introduced into the tube and the jacket respectively, so that the reaction temperature in the kettle can be effectively controlled, the heat transfer efficiency is improved, and the material is heated uniformly, and through the raw material diversion mechanism, the traditional dropping method of adding raw materials is changed, the operation and control are more simple and convenient, and the reaction raw materials can be mixed quickly and evenly, the conversion rate of the reaction was improved, the production cycle was shortened, and the production efficiency was improved.
, Poplar
Abstract:
pear trees need various elements in the process of growth and development, and zinc is one of the important elements needed. Pear is often due to zinc deficiency caused by the occurrence of lobular disease. Application of zinc sulfate spraying leaf surface, if not mixed with the right amount of lime spray, it is easy to occur damage, so that the pear leaves zoom off, to bring losses to production. According to foreign patent information, zinc naphthenate is an organic zinc fertilizer, with non-toxic, easy to use, good emulsification, large dispersion, no side effects and other advantages, the effect of increasing production is remarkable. In view of the actual problem of zinc deficiency in pear areas in China, the water-soluble zinc naphthenate emulsion developed and produced in China was used in the field experiment of Yali pear in Liuhan Orchard, Yongmin county, Hebei province in 1983.
Key words:
zinc naphthenate significant effect pear tree zinc sulfate zinc deficiency water-soluble lobular disease development and production developmental process Field Trial
year:
1989
, Poplar
Abstract:
Abstract:
Key words:
zinc naphthenate lobular disease Yali pear zinc sulfate mixed injection zinc ratio foliar spraying zinc Blade urea zinc fertilizer
year:
1990
CN201520687932.8
application date:
20150907
Public/Announcement Number:
CN205023837U
Public/announcement date:
20160210
applicant (patent):
Funan Minghuan Chemical Co., Ltd.
inventor:
National and provincial code:
CN341225
Abstract:
The utility model discloses a pump truck for zinc naphthenate production, which comprises a vehicle body, a pump, a liquid inlet pipe, a connecting pipe, a filter and a liquid outlet pipe, the pump is fixedly installed on the left part of the top surface of the frame, the filter is fixedly installed on the right part of the top surface of the frame, the liquid inlet pipe is fixedly installed on the pump, the connecting pipe is fixedly connected between the pumps and the filter, and the filter includes a support frame, filter cartridge, filter cover, lock and pressure gauge, the support frame fixed mounted on the top surface of the right filter cartridge fixed on the support frame, the filter cover hinged on the top surface of the filter cartridge, lock connected to the filter cover and filter cartridge, the pressure gauge is fixed and installed on the filter cover; The liquid outlet pipe is fixed and installed on the bottom of the filter cartridge, and the liquid outlet pipe is equipped with a valve. It solves the problems that the existing storage raw materials affect the quality, the fixed installation of pumps and pipeline transportation have high production costs, and the large footprint and high maintenance costs.
CN201520660537.0
application date:
20150827
Public/Announcement Number:
CN205023917U
Public/announcement date:
20160210
applicant (patent):
Funan Minghuan Chemical Co., Ltd.
inventor:
National and provincial code:
CN341225
Abstract:
The utility model discloses a purification device for zinc naphthenate production wastewater, comprising a sedimentation tank, a stirring pump, a support frame 1, a support frame 2, a dosing pipe and a dosing tank, the sedimentation tank is provided with partition 1 and partition 2, partition 1 and partition 2. The sedimentation tank is divided into primary sedimentation tank, secondary sedimentation tank, tertiary sedimentation tank and primary sedimentation tank, the top surface of the secondary sedimentation tank and the tertiary sedimentation tank are both installed with a support frame 1, and a stirring pump is installed in the middle of the support frame 1; The support frame 2 includes a support Plate 1, a support rod 1, a support Rod 2 and a support Rod 3, and the supporting base frame, the supporting plate 1 is fixed and installed on the corner of the primary sedimentation tank, the supporting rod 1, the supporting Rod 2 and the supporting rod are fixed and installed on the supporting Plate 1, the right front of the primary sedimentation tank and the right front side of the primary sedimentation tank, the supporting frame is fixed and installed on the supporting rod 1, the supporting Rod 2 and the supporting Rod 3, which solves the problem of purification and treatment of wastewater from the production of zinc naphthenate.
Jin Wenjing , Chen Liang , Zhou song
Abstract:
The reaction characteristics of epoxy resin system with bisphenol A glycidyl ether (EP) as matrix, methyl hexamethylene anhydride (MHHPA) as curing agent and zinc naphthenate as accelerator were studied in this paper. By the position and shape of the exothermic peak of the dynamic DSC curve, it is found that zinc Naphthenate can effectively promote the reaction of anhydride curing epoxy and reduce the initial reaction temperature. At the same time, the curing reaction process of the system was scanned by DSC at different heating rates, the kinetic analysis was carried out, and the kinetic parameters were calculated. And the accuracy and rationality of the resin system used as a generator impregnation were verified by the measurement of the system conversion rate.
Key words:
zinc naphthenate epoxy anhydride system reaction kinetics curing characteristics
meeting name:
National epoxy resin application technology academic exchange meeting and academic exchange meeting of central China society
Meeting Time:
2011
cited:
EPA chemical information | Information provided by: ofmpub.epa.gov (external link) |
use | used to prepare various antirust oils and antirust grease, combined with barium petroleum sulfonate, to prepare cast iron antirust oil mainly used as antirust and corrosion inhibitor for metal products, drier, wetting agent, insecticide, antifungal agent, wood preservative, etc. |
toxic substance data | information provided by: pubchem.ncbi.nlm.nih.gov (external link) |