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29317-04-2

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29317-04-2 Usage

Check Digit Verification of cas no

The CAS Registry Mumber 29317-04-2 includes 8 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 5 digits, 2,9,3,1 and 7 respectively; the second part has 2 digits, 0 and 4 respectively.
Calculate Digit Verification of CAS Registry Number 29317-04:
(7*2)+(6*9)+(5*3)+(4*1)+(3*7)+(2*0)+(1*4)=112
112 % 10 = 2
So 29317-04-2 is a valid CAS Registry Number.

29317-04-2Downstream Products

29317-04-2Relevant articles and documents

Study of imidazole performance as pseudo-affinity ligand in the purification of IgG from bovine milk

Abbasi, Hassan,Pourrostam-Ravadanaq, Pariya,Safa, Kazem D.

, (2020/04/08)

The spherical sepharose CL-6B beads were activated by epichlorohydrin in different epoxy contents (80, 120 and 160 μmolepoxide/mLgel) and, L-histidine and imidazole as pseudo-affinity ligands were covalently immobilized to them. Some linkers with different length, (1,2-ethanediol diglycidyl ether and 1,4-butanediol diglycidyl ether) were synthesized for activation of sepharose and the activated sepharose beads modified with imidazole and the performance of these adsorbents in the purification of immunoglobulin G from bovine milk were evaluated. Among the L-histidine bearing adsorbents, higher adsorption of IgG (0.28 mg/mL) was obtained by adsorbent with the lower concentration of L-histidine. The highest amount of IgG adsorption (0.53 mg/mL) was obtained by imidazole bearing adsorbent with the highest amount of imidazole and Among the adsorbents with synthesized linkers, the adsorbent with 1,2-ethanediol diglycidyl ether showed better performance and was able to purify 0.25 mg/mL IgG with high purity. The synthesized pseudo-affinity adsorbents represented the abbility to purify immunoglobulin G in one-step process with high purity and efficiency.

Polyoxyethylene ether carboxylic acid dimeric surfactant type drag reducer as well as preparation method and application thereof

-

Paragraph 0087; 0090-0091; 0096; 0099-0100; 0105; 0108-0109, (2019/09/13)

The invention discloses a polyoxyethylene ether carboxylic acid dimeric surfactant type drag reducer as well as a preparation method and application thereof. The polyoxyethylene ether carboxylic aciddimeric surfactant type drag reducer has a structure formula m=2, 3, 4, and n=1, 2, 3. The drag reducer disclosed by the invention is a dimeric surfactant type drag reducer which has a head group of carboxylic acid, and the head group has the advantages of being very good in temperature resistance, salt resistance, environment protection and the like, and is capable of overcoming influence of a high-salt environment upon drag reduction performance, so that the drag reducer disclosed by the invention is high in drag reduction efficiency, good in shearing resistance, long-lasting and stable in drag reduction rate and good in salt resistance; and polyoxyethylene ether carboxylic acid dimeric surfactants of different mass concentrations are dissolved into water, a drag reduction solution whichis high in drag reduction efficiency, good in shearing resistance, long-lasting and stable in drag reduction rate and good in salt resistance can be prepared without any other compounded chemical reagent, solution blending steps are simple, the drag reducer is very convenient to use, and meanwhile, the salt resistance is greatly improved.

One-pot Three Component Synthesis of ω-(oxathiolan-2-thion-5-yl)-α-oxazolidin-2-ones

Ghrab, Saad,Aroua, Lotfi,Beji, Mohamed

, p. 2397 - 2404 (2017/07/25)

We report a practical and one-pot synthesis of novel series of ω-(oxathiolan-2-thione-5-yl)-α- oxazolidin-2-ones (3a-h). The obtained compounds have been designed, synthesized via reaction of oligoethylene glycols diglycidyl ethers, isocyanate and carbon disulfide in the presence of catalytic amount of lithium bromide. A variety of important oxazolidinone derivatives can be obtained from simple starting materials in good yields and the biological activity of these new products will be investigated in complementary study.

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