CAS 63449-39-8

这就是贵公司的产品在自己欧洲网店里的样子
页面、名称、CAS 号、技术信息 —— 都已经就位。
现在只差 5 样,全部与贵公司自己的资料有关。
我们已经做好 产品页面 · 英文名称 · CAS 号 · 技术数据 · 欧盟合规信息框架 需要贵公司提供,只有 5 样 1. 贵公司的商标(logo)
2. 公司名称与注册地址
3. 每种规格的价格
4. 包装规格与最小起订量(25 kg 桶 / 200 L 桶 / 1 t IBC…)
5. 纯度等级(如 99%、AR、GR)
收到这四样之后会发生什么

现在这份安全数据表和产品标签上印的,是 MolGod 的名称和地址。 这是因为贵公司的资料我们还没有 —— 我们不会替贵公司编造。

收到之后,我们把它们全部换成贵公司的
安全数据表、产品标签、产品页面、报价单、发票 —— 从头到尾都是贵公司的品牌, 不会出现我们的名字。

贵公司拿到的是一个可以直接开始卖货的网店,不是一份演示文件。

适用范围:仅限欧盟市场

我们编制的安全数据表依据的是欧盟法规—— (EC) No 1907/2006(REACH)附件 II 及 (EU) 2020/878。

中文版本是从欧盟版本翻译而来的,仅供参考。 它不是中国市场上具有法律效力的文件,不能用于在中国境内的 申报、备案、运输或流通。

中国市场的安全数据表须按 GB/T 16483GB/T 17519 另行编制, 这不在本次交付范围内。贵公司在中国境内的合规文件,仍由贵公司自行负责。

我们是做网店的公司,不是化工公司。
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Парафин хлорированный. CAS 63449-39-8.

We are not issuing this sheet yet.

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Get the full details for CAS 63449-39-8

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  • The specification, and the certificate of analysis where batch data exists.
  • sources.txt — every citation with the date it was read.
  • An explicit list of what we could not establish — fields marked unavailable rather than filled with an estimate. This is the honest part of the document and we do not hide it in a footnote.

Your European buyer is going to forward this to somebody who was not on the call. The pack exists so that what they forward is complete, self-explanatory and traceable — rather than four attachments and a sentence beginning “I think this is everything”.

These switch the language of this page. Single substances. Mixtures on enquiry. One document, one language — additional languages are priced separately. Every version, including the Chinese one, is written to EU law — (EC) No 1907/2006 (REACH) Annex II and (EU) 2020/878 — and translated from it. The Chinese version is a reference translation, not a legally valid document for the Chinese market: an SDS for China must be compiled separately to GB/T 16483 and GB/T 17519.

Data transcribed from regulatory registers and technical literature, with the source and edition stated. It does not replace the supplier's safety data sheet. Fields without a recorded source are marked as such.

Chemical Overview: CAS 63449-39-8 — Uts Shanghai
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SCIENTIFIC RESEARCH

[1]Semantic Scholar2025
Eun Jeong Gong, Chang Seok Bang, J. Lee et al.. (2025). "Knowledge-Practice Performance Gap in Clinical Large Language Models: Systematic Review of 39 Benchmarks". Journal of Medical Internet Research
[2]Semantic Scholar2024
Tianxin Xu, Jie Yuan, Fei Song et al.. (2024). "Exploring the functional role of tRF-39-8HM2OSRNLNKSEKH9 in hepatocellular carcinoma". Heliyon. https://doi.org/10.1016/j.heliyon.2024.e27153
[3]Semantic Scholar2024
I. Ruotolo, G. Sellitto, A. Berardi et al.. (2024). "Psychometric properties of the Parkinson's disease Questionnaire-39 and its short form Parkinson's disease Questionnaire-8: A systematic review and
[4]Semantic Scholar2023
Shu-Fan Wang, Gabriel M. Rebeiz. (2023). "Dual-Band 28- and 39-GHz Phased Arrays for Multistandard 5G Applications". IEEE transactions on microwave theory and techniques. https://doi.org/10.1109/TMTT.
[5]Semantic Scholar2023
Shu-Fan Wang, Abdulrahman A. Alhamed, Gabriel M. Rebeiz. (2023). "An 8-Element 5G Multistandard 28-/39-GHz Dual-Band, Dual-Polarized Phased Array for Compact Systems". IEEE transactions on microwave t
[6]Semantic Scholar2022
You Li, Xin Wang, E. Broberg et al.. (2022). "Seasonality of respiratory syncytial virus and its association with meteorological factors in 13 European countries, week 40 2010 to week 39 2019". Euro s
[7]OpenAlex2021
Lorena Verduci, Emilio Tarcitano, Sabrina Strano et al.. (2021). "CircRNAs: role in human diseases and potential use as biomarkers". Cell Death and Disease. https://doi.org/10.1038/s41419-021-03743-3
[8]OpenAlex2021
Nan Zhao, Xinxin Fang, Shiwen Zhang et al.. (2021). "Male renal functions are associated with serum short- and medium-chain chlorinated paraffins in residents from Jinan, China". Environment Internati
📚 Scientific references (Chicago Author-Date) 20 refs · 3 baz

MOLECULE Per-CAS bibliography (live from 13+ databases)

Sources: db:semantic_scholar (7) · db:openalex (12) · db:crossref (1)

  1. db:semantic_scholar Eun Jeong Gong, Chang Seok Bang, J. Lee et al.. (2025). "Knowledge-Practice Performance Gap in Clinical Large Language Models: Systematic Review of 39 Benchmarks". Journal of Medical Internet Research. https://doi.org/10.2196/84120
  2. db:semantic_scholar Tianxin Xu, Jie Yuan, Fei Song et al.. (2024). "Exploring the functional role of tRF-39-8HM2OSRNLNKSEKH9 in hepatocellular carcinoma". Heliyon. https://doi.org/10.1016/j.heliyon.2024.e27153
  3. db:semantic_scholar I. Ruotolo, G. Sellitto, A. Berardi et al.. (2024). "Psychometric properties of the Parkinson's disease Questionnaire-39 and its short form Parkinson's disease Questionnaire-8: A systematic review and meta-analysis.". Journal of clinical neuroscience. https://doi.org/10.1016/j.jocn.2024.03.032
  4. db:semantic_scholar Shu-Fan Wang, Gabriel M. Rebeiz. (2023). "Dual-Band 28- and 39-GHz Phased Arrays for Multistandard 5G Applications". IEEE transactions on microwave theory and techniques. https://doi.org/10.1109/TMTT.2022.3220272
  5. db:semantic_scholar Shu-Fan Wang, Abdulrahman A. Alhamed, Gabriel M. Rebeiz. (2023). "An 8-Element 5G Multistandard 28-/39-GHz Dual-Band, Dual-Polarized Phased Array for Compact Systems". IEEE transactions on microwave theory and techniques. https://doi.org/10.1109/TMTT.2023.3253553
  6. db:semantic_scholar You Li, Xin Wang, E. Broberg et al.. (2022). "Seasonality of respiratory syncytial virus and its association with meteorological factors in 13 European countries, week 40 2010 to week 39 2019". Euro surveillance : bulletin Europeen sur les maladies transmissibles = European communicable disease bulletin. https://doi.org/10.2807/1560-7917.ES.2022.27.16.2100619
  7. db:openalex Lorena Verduci, Emilio Tarcitano, Sabrina Strano et al.. (2021). "CircRNAs: role in human diseases and potential use as biomarkers". Cell Death and Disease. https://doi.org/10.1038/s41419-021-03743-3
  8. db:openalex Nan Zhao, Xinxin Fang, Shiwen Zhang et al.. (2021). "Male renal functions are associated with serum short- and medium-chain chlorinated paraffins in residents from Jinan, China". Environment International. https://doi.org/10.1016/j.envint.2021.106514
  9. db:openalex Qianru He, Lini Zhao, Xiaobai Liu et al.. (2019). "MOV10 binding circ-DICER1 regulates the angiogenesis of glioma via miR-103a-3p/miR-382-5p mediated ZIC4 expression change". Journal of Experimental & Clinical Cancer Research. https://doi.org/10.1186/s13046-018-0990-1
  10. db:semantic_scholar A. Bhattacharya, J. Beaulieu, D. Bennett et al.. (2018). "WFIRST Exoplanet Mass-measurement Method Finds a Planetary Mass of 39 ± 8 M⊕ for OGLE-2012-BLG-0950Lb". Astronomical Journal. https://doi.org/10.3847/1538-3881/aaed46
  11. db:openalex Ivano Legnini, Gaia Di Timoteo, Francesca Rossi et al.. (2017). "Circ-ZNF609 Is a Circular RNA that Can Be Translated and Functions in Myogenesis". Molecular Cell. https://doi.org/10.1016/j.molcel.2017.02.017
  12. db:openalex Lasse S. Kristensen, Thomas B. Hansen, Morten T. Venø et al.. (2017). "Circular RNAs in cancer: opportunities and challenges in the field". Oncogene. https://doi.org/10.1038/onc.2017.361
  13. db:openalex Yumin Wang, Yongzhen Mo, Zhaojian Gong et al.. (2017). "Circular RNAs in human cancer". Molecular Cancer. https://doi.org/10.1186/s12943-017-0598-7
  14. db:openalex Dawei Rong, Handong Sun, Zhouxiao Li et al.. (2017). "An emerging function of circRNA-miRNAs-mRNA axis in human diseases". Oncotarget. https://doi.org/10.18632/oncotarget.19154
  15. db:openalex Jing Zhang, Hui Liu, Lidan Hou et al.. (2017). "Circular RNA_LARP4 inhibits cell proliferation and invasion of gastric cancer by sponging miR-424-5p and regulating LATS1 expression". Molecular Cancer. https://doi.org/10.1186/s12943-017-0719-3
  16. db:crossref Ping Yang, Zhijun Qiu, Yuan Jiang et al.. (2016). "Silencing of cZNF292 circular RNA suppresses human glioma tube formation via the Wnt/β-catenin signaling pathway". Oncotarget. https://doi.org/10.18632/oncotarget.11523
  17. db:openalex Gonghuan Yang, Yu Wang, Yixin Zeng et al.. (2013). "Rapid health transition in China, 1990–2010: findings from the Global Burden of Disease Study 2010". The Lancet. https://doi.org/10.1016/s0140-6736(13)61097-1
  18. db:openalex Martin Scheringer, Sebastian Strempel, Sirja Hukari et al.. (2012). "How many persistent organic pollutants should we expect?". Atmospheric Pollution Research. https://doi.org/10.5094/apr.2012.044
  19. db:openalex Ulysses Paulino Albuquerque, Reinaldo Farias Paiva de Lucena, Júlio Marcelino Monteiro et al.. (2006). "Evaluating Two Quantitative Ethnobotanical Techniques". Ethnobotany Research and Applications. https://doi.org/10.17348/era.4.0.51-60
  20. db:openalex Jacqueline H. Smith, A.K. Mallett, R. A. J. Priston et al.. (1996). "Ninety-Day Feeding Study in Fischer-344 Rats of Highly Refined Petroleum-Derived Food-Grade White Oils and Waxes". Toxicologic Pathology. https://doi.org/10.1177/019262339602400210
Regulatory status of the substance
No entries for this CAS in the restriction lists checked (SVHC candidate list, REACH Annex XVII; datasets incomplete — this is not a confirmation of compliance). CLP classification and transport status (ADR): see the GHS section and the safety data sheet (SDS).
🧪 Chemical Data
CAS Number
63449-39-8
🔍 External identifiers
3 of 16 ID systems19%
DatabaseIdentifierActions
CAS Registry Number63449-39-8Open →
EC Number264-150-0[1]Open →
WikiData QIDQ417632Open →

Sources: PubChem (NIH), Wikidata SPARQL, KEGG, ChEMBL (EBI), CompTox CTX (EPA).

📚 Scientific references (Chicago Author-Date) (1 sources)
  1. ECHA. EC Inventory — EINECS, ELINCS, NLP and List Numbers assigned under REACH. Helsinki: European Chemicals Agency. dotyczy: EC Number

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Парафин хлорированный — CAS 63449-39-8. Listed by Uts Shanghai. Prepared from the supplier’s public catalogue; not verified against their internal data.

Data from PubChemSource: PubChem (NIH)