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93050-82-9

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93050-82-9 Usage

General Description

Polyvinyl chloride (PVC) is a synthetic polymer made from the polymerization of vinyl chloride monomers. It is a versatile and widely used plastic material known for its durability, hardness, and resistance to chemicals, weathering, and abrasion. PVC can be rigid or flexible, depending on the additives and plasticizers used during its manufacturing process. It is commonly used in a wide range of applications, including construction materials (pipes, windows, doors), electrical insulation, medical devices, automotive parts, and packaging. However, PVC has been a subject of environmental and health concerns due to the release of harmful chemicals during its production and disposal, such as dioxins and phthalates. Efforts are being made to develop more sustainable alternatives to PVC and to improve recycling and waste management of PVC products.

Check Digit Verification of cas no

The CAS Registry Mumber 93050-82-9 includes 8 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 5 digits, 9,3,0,5 and 0 respectively; the second part has 2 digits, 8 and 2 respectively.
Calculate Digit Verification of CAS Registry Number 93050-82:
(7*9)+(6*3)+(5*0)+(4*5)+(3*0)+(2*8)+(1*2)=119
119 % 10 = 9
So 93050-82-9 is a valid CAS Registry Number.
InChI:InChI=1/C2H3Cl/c1-2-3/h2H,1H2

93050-82-9Downstream Products

93050-82-9Relevant articles and documents

Magnetically recyclable silica-coated ferrite magnetite-K10montmorillonite nanocatalyst and its applications in O, N, and S-acylation reaction under solvent-free conditions

Kumar, Pushpendra,Patil, Shripad M.,Tandon, Nitin,Tandon, Runjhun

, p. 21291 - 21300 (2021/07/01)

Novel silica-coated ferrite nanoparticles supported with montmorillonite (K10) have been prepared successfully by using a simple impregnation method. Further, these nanoparticles were characterized by using different analytical methods like FT-IR, PXRD, EDS, and FE-SEM techniques. In addition, these nanoparticles have been explored for their catalytic activity for the O, N, and S-acylation reactions under solvent-free conditions which gave moderate to excellent yields in a much shorter reaction time. Moreover, these nanoparticles could easily be separated out from the reaction medium after the reaction completion by using an external magnetic field and have been re-used for 10 cycles without any significant loss of the catalytic activity.

INSECTICIDAL COMPOSITION

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Paragraph 0069-0070, (2020/10/27)

PROBLEM TO BE SOLVED: To provide a composition that can exhibit effective insecticidal action on insect pests. SOLUTION: An insecticidal composition comprises, e.g., a compound represented by general formula (1) in the figure. [R1 is a C1-10 alkyl group or the like, where the alkyl group and the like may be substituted with a halogen atom or the like; R2 is a hydrogen atom or the like, or R2 may bind a methoxy group binding a carbon atom adjacent to a carbon atom which R2 binds, to form a -O-CH2-O- group.] SELECTED DRAWING: None COPYRIGHT: (C)2021,JPO&INPIT

Antifungal activity of phenolic monoterpenes and structure-related compounds against plant pathogenic fungi

Wang, Kaibo,Jiang, Shanshan,Pu, Te,Fan, Liming,Su, Fawu,Ye, Min

, p. 1 - 8 (2018/02/06)

The aim of this work is to explore the possibility of using the phenolic monoterpenes (PMs) as leading compounds with antifungal activity against plant disease. The in vitro antifungal activities of carvacrol and thymol against seven kinds of plant pathogenic fungi were evaluated on mycelium growth rate method, and the results showed that carvacrol and thymol exhibited broad spectrum antifungal activity. Structure requirement for the antifungal activity of PMs was also investigated. The preliminary conclusion was that phenolic hydroxyl and monoterpene were basic structures for the antifungal activity of PMs, and the position of phenolic hydroxyl showed less effect. Ester derivatives of carvacrol and thymol were more effective than carvacrol and thymol against plant pathogenic fungi. We suggested that carvacrol, thymol and their ester derivatives could potentially be used as new fungicide leading compounds.

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