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化学品 Formaldehyd (CAS 50-00-0)。完整百科卡片 — 分类、性质和安全数据 — 如下。
🔒 演示模式 — 此商品不出售。
合法物质。dhscientific.com 是 MOL-GOD 平台的演示 — 我们不出售任何商品,也不处理订单。被禁止的物质会依据法规基准在此自动拦截(例如可参见七氯)。
数据转录自法规登记册和专业文献,并注明来源与版本。不能替代供应商的安全数据表。未记录来源的字段已作相应标注。
化学概述: FormaldehydeMolGod_OVERVIEW_1
| 分子式 | CH2O[1] |
| 分子量 | 30.026 g/mol[1] |
| 熔点 | -92 °C[1][2] |
| 沸点 | -19 °C[1][2] |
| 密度 | 0.8153 g/cm³[1][2] |
| LogP(亲脂性) | 0.35[1][2] |
| pKa | 13.27[2] |
| IUPAC名称 | formaldehyde[1] |
| SMILES | C=O[1] |
| InChIKey | WSFSSNUMVMOOMR-UHFFFAOYSA-N[1] |
同义词: formaldehyde · formalin · methanal · 50-00-0 · formol
数据来源: PubChem (NLM/NIH), CRC Handbook 105th ed. (Haynes 2024)
最后更新: 2026-06-30
📚 科学参考文献(芝加哥作者-日期格式) (2 来源)
- PubChem. National Center for Biotechnology Information (NIH/NLM), chemical compound database. ↗ applies to: 分子式 · 分子量 · 熔点 · 沸点 · 密度 · LogP(亲脂性) · IUPAC名称 · SMILES · InChIKey
- Rumble, J.R., ed. CRC Handbook of Chemistry and Physics. 105th ed. Boca Raton: CRC Press, 2024. ↗ applies to: 熔点 · 沸点 · 密度 · LogP(亲脂性) · pKa
科学研究
📚 科学参考文献(芝加哥作者-日期格式) 19 refs · 4 baz
MOLEKUŁA 按CAS号参考文献(实时来自13+数据库)
来源: db:Europe PMC (1) · db:openalex (12) · db:core (5) · db:molgod_data_citations:crossref (1)
- db:Europe PMC (2025). "Formaldehyde and its surrogates as a C1 platform for defossilised modern societies.". https://doi.org/10.1039/d5cs00882d →
- db:openalex Nathan H. Chen, Karrera Y. Djoko, Frédéric J. Veyrier et al.. (2016). "Formaldehyde Stress Responses in Bacterial Pathogens". Frontiers in Microbiology. https://doi.org/10.3389/fmicb.2016.00257 →
- db:core Geissler, Erik, Szilagyi, Imre, M., Czakkel, O. et al.. (2013). "TiO2-doped resorcinol–formaldehyde (RF) polymer and carbon gels with photocatalytic activity". https://doi.org/10.2478/nanome-2013-0001 →
- db:openalex Eloïse A. Marais, Daniel J. Jacob, T. P. Kurosu et al.. (2012). "Isoprene emissions in Africa inferred from OMI observations of formaldehyde columns". Atmospheric chemistry and physics. https://doi.org/10.5194/acp-12-6219-2012 →
- db:core (2012). "Formaldehyde 50-00-0". https://doi.org/10.1002/0471701343.sdp12723.pub2 →
- db:molgod_data_citations:crossref (2011). "NIOSH skin notation (SK) profile: formaldehyde/formalin [CAS No. 50-00-0].". https://doi.org/10.26616/nioshpub2011145 →
- db:core Kanatharana, Proespichaya, Thavarungkul, Panote, Higson, Seamus P. J. et al.. (2010). "Sol-gel based sensor for selective formaldehyde determination". https://doi.org/10.1016/j.aca.2009.11.034 →
- db:openalex Gunnar Damgård Nielsen, Peder Wolkoff. (2010). "Cancer effects of formaldehyde: a proposal for an indoor air guideline value". Archives of Toxicology. https://doi.org/10.1007/s00204-010-0549-1 →
- db:openalex Susana Viegas, Carina Ladeira, Carla Nunes et al.. (2010). "Genotoxic effects in occupational exposure to formaldehyde: A study in anatomy and pathology laboratories and formaldehyde-resins production". Journal of Occupational Medicine and Toxicology. https://doi.org/10.1186/1745-6673-5-25 →
- db:openalex Anton C. de Groot, Mari‐Ann Flyvholm, Gerda Lensen et al.. (2009). "Formaldehyde‐releasers: relationship to formaldehyde contact allergy. Contact allergy to formaldehyde and inventory of formaldehyde‐releasers". Contact Dermatitis. https://doi.org/10.1111/j.1600-0536.2009.01582.x →
- db:openalex Michael Hauptmann, Patricia A. Stewart, Jay H. Lubin et al.. (2009). "Mortality From Lymphohematopoietic Malignancies and Brain Cancer Among Embalmers Exposed to Formaldehyde". JNCI Journal of the National Cancer Institute. https://doi.org/10.1093/jnci/djp416 →
- db:openalex T. Stavrakou, Jean‐François Müller, Isabelle De Smedt et al.. (2009). "Evaluating the performance of pyrogenic and biogenic emission inventories against one decade of space-based formaldehyde columns". Atmospheric chemistry and physics. https://doi.org/10.5194/acp-9-1037-2009 →
- db:openalex T. Stavrakou, Jean‐François Müller, Isabelle De Smedt et al.. (2009). "Global emissions of non-methane hydrocarbons deduced from SCIAMACHY formaldehyde columns through 2003–2006". Atmospheric chemistry and physics. https://doi.org/10.5194/acp-9-3663-2009 →
- db:openalex A. Heckel, Andreas Richter, T. Tarsu et al.. (2005). "MAX-DOAS measurements of formaldehyde in the Po-Valley". Atmospheric chemistry and physics. https://doi.org/10.5194/acp-5-909-2005 →
- db:openalex Eric Brown, Michael R. Kessler, Nancy R. Sottos et al.. (2003). "In situ poly(urea-formaldehyde) microencapsulation of dicyclopentadiene". Journal of Microencapsulation. https://doi.org/10.1080/0265204031000154160 →
- db:core Chance, K., Daniel J. Jacob, Palmer, P. I. et al.. (2000). "Satellite observations of formaldehyde over North America from GOME". https://doi.org/10.1029/2000gl011857 →
- db:openalex Sherwood Burge, M G Harries, W.K. Lam et al.. (1985). "Occupational asthma due to formaldehyde.". Thorax. https://doi.org/10.1136/thx.40.4.255 →
- db:openalex John D. Goddard, Henry F. Schaefer. (1979). "The photodissociation of formaldehyde: Potential energy surface features". The Journal of Chemical Physics. https://doi.org/10.1063/1.437353 →
- db:core (0). "ToxFAQs for formaldehyde".
物理化学性质
快速参考
详细性质
Uzupełnienie tabeli „Właściwości fizykochemiczne (baza danych)” poniżej — powtórzone wartości pokazujemy tylko raz.
| 属性 | 值 | 单位 | 条件 | 来源 |
|---|---|---|---|---|
| 折射率(nD) | 1.3746[1][2] | 20 °C, D-line | CRC Handbook 105th ed. (Haynes 2024) |
🔬 高级属性
化学标识符
C=O 数据来源: CRC Handbook 105th ed. (Haynes 2024) (ISBN 9781032655628)
最后更新: 2026-06-30
📡 光谱学 — CAS 50-00-0MolGod_SPECHUB_MAIN
理化性质(数据库) 13 字段 MolGod评分:主要
| 属性 | 值 | 单位 | 条件 | 来源 |
|---|---|---|---|---|
| 熔点 | -92 [1][2] | °C | 1 atm | CRC Handbook 105th ed. (Haynes 2024) |
| 沸点 | -19 [1][2] | °C | CRC Handbook 105th ed. (Haynes 2024) | |
| 水溶性 | 400 [1] | g/L | 20°C | CRC Handbook 105th ed. (Haynes 2024) |
| 密度 (ρ) | 0.8153 [1][2] | g/cm³ | -20°C | CRC Handbook 105th ed. (Haynes 2024) |
| 折射率 (n_D) | 1.3746 [1][2] | — | 20°C, sodium D | CRC Handbook 105th ed. (Haynes 2024) |
| 蒸气压 | 3886 [1] | mmHg | 25°C | CRC Handbook 105th ed. (Haynes 2024) |
| 闪点 | 60 [1] | °C | closed cup | CRC Handbook 105th ed. (Haynes 2024) |
| 自燃温度 | 424 [1][3] | °C | in air | CRC Handbook 105th ed. (Haynes 2024) |
| UV λmax | 270 [1] | nm | CRC Handbook 105th ed. (Haynes 2024) | |
| UV εmax | 19 [1] | M⁻¹·cm⁻¹ | at λmax | CRC Handbook 105th ed. (Haynes 2024) |
| pKa₁ | 13.27 [1] | — | CRC Handbook 105th ed. (Haynes 2024) | |
| logP (辛醇/水) | 0.35 [1] | — | CRC Handbook 105th ed. (Haynes 2024) | |
| 介电常数 (ε) | 13.3 [1] | — | CRC Handbook 105th ed. (Haynes 2024) |
📚 科学参考文献(芝加哥作者-日期格式) (3 来源)
- Rumble, J.R., ed. CRC Handbook of Chemistry and Physics. 105th ed. Boca Raton: CRC Press, 2024. ↗ applies to: 熔点 · 沸点 · 水溶性 · 密度 (ρ) · 折射率 (n_D) · 蒸气压 · 闪点 · 自燃温度 · UV λmax · UV εmax · pKa₁ · logP (辛醇/水) · 介电常数 (ε)
- PubChem. National Center for Biotechnology Information (NIH/NLM), chemical compound database. ↗ applies to: 熔点 · 沸点 · 密度 (ρ) · 折射率 (n_D)
- DECHEMA, PTB, and BAM. CHEMSAFE - Database of Evaluated Safety Characteristics for the Avoidance of Explosions. Frankfurt am Main: DECHEMA e.V.; Braunschweig/Berlin: Physikalisch-Technische Bundesanstalt and Bundesanstalt fur Materialforschung und -prufung. ↗ applies to: 自燃温度
物理化学值来源于上述独立、同行评审的来源。
纯度检查指南 质量控制
使用标准化分析方法验证试剂纯度。选择下方的测试方法并输入您的测量结果,系统将自动计算。
🛡️ 安全 — CAS 50-00-0MolGod_SAFEHUB_MAIN
GHS/CLP分类——(EC) No 1272/2008法规 + UN GHS Rev. 9 (2021)。
🚨 危险说明(H)
- H350 — 可能致癌(说明接触途径――如已确证无其他接触途径造成这一危害)
- H341 — 怀疑会导致遗传性缺陷(说明接触途径――如已确证无其他接触途径造成这一危害)
- H330 — 吸入致命
- H302 — 吞咽有害
- H314 — 造成严重皮肤灼伤和眼损伤
- H317 — 可能导致皮肤过敏反应
- H335 — 可引起呼吸道刺激
🛡 防范说明(P)
- P201 — 使用前取得专用说明。
- P202 — 在阅读并明了所有安全措施前切勿搬动。
- P260 — 不要吸入粉尘/烟/气体/气雾/蒸气/喷雾。
- P264 — 作业后彻底清洗手部[和……]。
- P270 — 使用本产品时不要进食、饮水或吸烟。
- P271 — 只能在室外或充分通风的情况下使用。
- P272 — 受沾染的工作服不得带出工作场地。
- P280 — 戴防护手套/穿防护服/戴防护眼罩/戴防护面具/戴听力保护装置……
- P284 — 在通风不足的情况下戴呼吸防护装置
- P301+P312 — 如误吞咽:: 如感觉不适,呼叫中毒急救中心/医生/……
- P301+P330+P331 — 如误吞咽:: 漱口。; 不得诱导呕吐。
- P302+P352 — 如皮肤沾染:: 用水充分清洗/……
- P303+P361+P353 — 如皮肤(或头发)沾染:: 立即脱掉所有沾染的衣服。; 用水清洗患处【或淋浴】
- P304+P340 — 如误吸入:: 将人转移到空气新鲜处,保持呼吸舒适体位。
- P305+P351+P338 — 如进入眼睛:: 用水小心冲洗几分钟。; 如戴隐形眼镜并可方便地取出,取出隐形眼镜。继续冲洗。
- P308+P313 — 如已接触或有疑虑:: 求医/就诊。
- P310 — 立即呼叫中毒急救中心/医生/……
- P312 — 如感觉不适,呼叫中毒急救中心/医生/……
- P320 — 必须立即接受专门治疗(见本标签上的……)。
- P321 — 专门治疗(见本标签上的……)。
- P330 — 漱口。
- P333+P313 — 如发生皮肤刺激或皮疹:: 求医/就诊。
- P362+P364 — 脱掉沾染的衣服。: 清洗后方可重新使用。
- P363 — 沾染的衣服清洗后方可重新使用。
- P403+P233 — 存放于通风良好处。: 保持容器密闭。
- P405 — 存放处须加锁。
- P501 — 处置内装物/容器……
✓ 根据CLP法规(EC) 1272/2008附件VI的统一分类(官方、具有约束力的分类)。 索引号:605-001-00-5。
参考文献(芝加哥格式): European Chemicals Agency. "formaldehyde … %, Index No. 605-001-00-5." In Table 3 of Annex VI to Regulation (EC) No 1272/2008 (CLP Regulation), 23rd Adaptation to Technical Progress (harmonised list as of 2026-07-07). Helsinki: European Chemicals Agency, 2026. https://echa.europa.eu/information-on-chemicals/annex-vi-to-clp.
翻译:CLP 法规 (EC) 1272/2008,附件 III 和 IV。数据:PubChem/NLM。
📚 综合科学参考文献 — Chicago Author-Date 10 来源
从所有Safety Hub选项卡收集的参考文献。CAS号: 50-00-0 ·
PubChem ↗
- Parlament Europejski i Rada UE. 2008. "Rozporządzenie (WE) nr 1272/2008 w sprawie klasyfikacji, oznakowania i pakowania substancji (CLP)." Dz.Urz. UE L 353. [↗] GHS,法规
- United Nations Economic Commission for Europe (UNECE). 2021. "Globally Harmonized System of Classification and Labelling of Chemicals (GHS), Ninth Revised Edition." United Nations, Geneva. [↗] GHS
- Goldfrank, Lewis R., Robert S. Hoffman, Mary Ann Howland, et al.. 2019. "Goldfrank's Toxicologic Emergencies, 11th ed.." McGraw-Hill Education, New York. ISBN 978-1-25-985961-8. Pierwsza pomoc, Toksykologia
- National Institute for Occupational Safety and Health (NIOSH). 2023. "NIOSH Pocket Guide to Chemical Hazards (DHHS Publ. 2005-149)." U.S. Department of Health and Human Services / CDC, Cincinnati, OH. [↗] Pierwsza pomoc, PPE, Toksykologia
- European Committee for Standardization (CEN). 2016. "EN 374-1:2016 — Protective gloves against dangerous chemicals and micro-organisms." CEN, Brussels. [↗] PPE
- UNECE. 2023. "European Agreement Concerning the International Carriage of Dangerous Goods by Road (ADR 2025)." United Nations, Geneva. [↗] Utylizacja, Regulacje
- National Fire Protection Association (NFPA). 2022. "NFPA 400 — Hazardous Materials Code." NFPA, Quincy, MA. [↗] Magazynowanie
- Urben, P.G. (ed.). 2017. "Bretherick's Handbook of Reactive Chemical Hazards, 8th ed.." Butterworth-Heinemann / Elsevier, Oxford. [↗] Magazynowanie
- Ministerstwo Klimatu i Środowiska RP. 2023. "Baza danych o produktach i opakowaniach oraz o gospodarce odpadami (BDO)." Ministerstwo Klimatu i Środowiska, Warszawa. [↗] Utylizacja
- International Agency for Research on Cancer (IARC / WHO). 2024. "IARC Monographs on the Identification of Carcinogenic Hazards to Humans — List of Classifications." WHO, Lyon. [↗] Toksykologia
具有自身参考文献的选项卡(紧急情况、个人防护装备、储存、废物)在其各自章节中包含额外的书目条目。
分析统计(t检验·RSD·Grubbs·Q-Dixon) ICH Q2
粘贴一系列重复测量结果(CSV或每行一个数字)。计算器将计算平均值、标准差和95%置信区间,并检测异常值(Grubbs + Dixon Q)。
📐 统计公式
x̄ = Σxᵢ / n— 算术平均值s² = Σ(xᵢ - x̄)² / (n-1)— 样本方差s = √s²— 标准差RSD% = (s / x̄) × 100%— 相对标准差CI₉₅ = x̄ ± t(0.05, n-1) × s / √n— Student's tG = |xᵢ - x̄| / s— Grubbs检验Q = |xsuspect - xnearest| / |xmax - xmin|— Dixon Q-test
来源:ICH Q2(R2) 分析方法验证 · ICH PDF ↗
缓冲液配方计算器 唯一
从 20 种常用缓冲体系列表中选择 → 输入目标 pH → 获得精确配方,包括称量质量。
步骤 1:选择缓冲体系
📜 配方历史记录(最近 10 条)
运输分类(ADR / IATA / IMDG) UN 2209
🛣️ ADR 公路运输
- 类别:
- 8
- 包装组:
- III
- 运输名称:
- Formaldehyde solution (25-37%)
- 隧道代码:
- (E)
- Limited Quantity (L):
- 5
✈️ IATA 航空运输
- 类别:
- 8
- 包装说明:
- 852 / 856
- 最大数量(PAX):
- 5 L
- 最大数量 (CAO):
- 60 L
🚢 IMDG 海运
- 类别:
- 8
- EmS Code:
- F-A, S-B
来源: ADR 2025 ↗ · IATA DGR ↗ · IMDG Code ↗
🔧 HPLC故障排除——决策树 6 常见问题
6种最常见HPLC问题的诊断及决策树(每个问题5个步骤)。 来源: Snyder/Kirkland/Dolan 3rd ed. Chapter 17 + LCGC LC Troubleshooting columns 1989-2024.
宽峰 medium
症状: 色谱图上所有峰都比预期宽(半峰宽 > 2倍正常值)
🔍 诊断树:
-
1. 检查是所有峰变宽还是只有部分峰
→ 是: 所有峰→仪器问题(色谱柱或系统)
→ 否: 仅部分峰→化学问题(特定分析物与色谱柱的相互作用) -
2. 更换测试柱——问题是否消失?
→ 是: 色谱柱已耗尽——填料损坏,前几毫米有空隙。更换。
→ 否: 液相色谱系统问题 -
3. 检查死体积——进样环、连接件、检测器
→ 是: 对于4.6 mm色谱柱,进样环 > 100 µL或连接松动→更换卡套,缩短管路
→ 否: 继续诊断 -
4. 温度测试:将色谱柱从25°C升至40°C
→ 是: 峰变窄→传质动力学过慢(升高温度)
→ 否: Continue -
5. 检查流速与该色谱柱的最佳范德姆特值
→ 是: 4.6mm/5µm的最佳流速为1.0 mL/min,2.1mm/3µm的最佳流速为0.4 mL/min
→ 否: Continue
- 色谱柱已耗尽(无保护柱时超过2000次进样)
- 系统死体积 > 100 µL(错误的进样环、长管路、卡套松动)
- 温度过低(传质动力学)
- 流速超出范德姆特最佳值
- 样品溶剂比流动相A更强
- ✓ 更换色谱柱(当>2000次进样时)
- ✓ 检查所有连接——管路尽可能短
- ✓ 将色谱柱温度升至40°C(如果物质稳定)
- ✓ 将流速降至van Deemter最佳值
- ✓ 将样品溶解在流动相A中(而非纯有机相)
峰拖尾(拖尾因子T > 1.5) high
症状: 峰在晚洗脱侧有延伸的“拖尾”(根据USP,不对称度T = b/a > 1.5)
🔍 诊断树:
-
1. 物质是否含有碱性基团(氨基、吡啶)?
→ 是: 是 → 硅醇相互作用!向流动相A中添加0.1% TFA或5-10 mM TEA。
→ 否: Continue -
2. 检查流动相pH与物质pKa的关系
→ 是: pH = pKa ± 1 → 部分电离,峰分裂。使pH远离pKa ≥ 2个单位。
→ 否: Continue -
3. 检查色谱柱使用时间(>1500次进样?)
→ 是: 是 → 硅醇暴露(柱流失)。更换为具有更高封端度的色谱柱(XTerra、Symmetry)。
→ 否: Continue -
4. 样品是否含有金属(来自玻璃小瓶的Fe、Cu)?
→ 是: 是 → 使用II型无色小瓶或PFA小瓶。向样品中添加0.1mM EDTA。
→ 否: Continue
- 硅醇相互作用(碱性分析物 + 硅胶游离硅醇)
- pH处于分析物pKa边界(峰分裂)
- 旧色谱柱(柱流失,高硅醇活性)
- 样品中的金属(螯合 → 拖尾)
- 色谱柱过载(4.6mm色谱柱上>50 µg)
- ✓ 向流动相A中加入0.1% TFA(UV)或0.1%甲酸(LC-MS)
- ✓ 选择高纯度封端的色谱柱:Waters XBridge BEH、Phenomenex Kinetex
- ✓ 在pH值距离pKa ≥ 2个单位的条件下操作
- ✓ 向样品中加入0.1mM EDTA(螯合Fe/Cu)
- ✓ 对于4.6 mm色谱柱,将进样体积减少至≤ 20 µL
基线漂移 medium
症状: 基线在>5分钟内系统性上升或下降
🔍 诊断树:
-
1. 是否使用梯度(B%增加)?
→ 是: 是 → 流动相A与B在检测波长下吸收不同。溶剂更换导致UV截止波长变化。检查有机相UV吸光度百分比。
→ 否: 继续(等度) -
2. 检查色谱柱温度——是否稳定在±0.5°C?
→ 是: 是(稳定)→ 继续
→ 否: 不稳定 → 开启柱温箱(>25°C受控) -
3. 测试:关闭自动进样器,仅运行泵+色谱柱+检测器
→ 是: 漂移消失 → 自动进样器污染(清洁针头、隔垫)
→ 否: Continue -
4. 检查灯的使用时间(UV用D2灯)
→ 是: 是(>1500小时)→ 更换灯
→ 否: Continue
- 梯度洗脱,流动相UV截止值不同
- 色谱柱温度不稳定
- 自动进样器针头/隔垫污染
- UV灯老化(>1500h)
- 检测器流通池污染
- 色谱柱未平衡(<10个柱体积)
- ✓ 用100% A预平衡色谱柱10-15个柱体积
- ✓ 开启色谱柱恒温箱,温度30-40°C稳定
- ✓ 用50:50乙腈-水溶液清洗检测器流通池
- ✓ 如果D2灯使用时间>1500小时,请更换
- ✓ 使用基线扣除(Chromeleon、Empower原生功能)
无峰/丢失峰 critical
症状: 预期分析物峰未出现在色谱图上
🔍 诊断树:
-
1. 进样是否实际发生?
→ 是: 检查自动进样器日志、泵压力(进样时应下降)
→ 否: 自动进样器问题→检查定量环、进样针、样品瓶中的样品 -
2. 样品是否在样品瓶中(体积正确,未蒸发)?
→ 是: Continue
→ 否: 无样品——重新移液 -
3. 样品稳定性——制备时间是否超过24小时?
→ 是: 是→降解。重新制备新鲜样品。
→ 否: Continue -
4. 检查检测波长与物质的λmax是否匹配
→ 是: 检测波长与λmax不匹配→无信号。扫描DAD 200-400nm。
→ 否: Continue -
5. 测试:进样纯标准品(已知浓度,新鲜)
→ 是: 标准品出峰→样品问题(基质、衍生化)
→ 否: 标准品也无峰→系统问题(色谱柱、流动相、梯度)
- 样品未从样品瓶中抽取(自动进样器故障)
- 样品降解(超过24小时,pH/温度/光照)
- 检测波长错误
- 流动相错误(例如忘记加TFA)
- 色谱柱接反/固定相错误
- 物质在死时间(V0)洗脱→无保留,不可见
- ✓ 严格按照协议重新制备新鲜样品
- ✓ 紫外-可见DAD扫描200-400nm并搜索λmax
- ✓ 检查流动相组成——是否添加了TFA?
- ✓ 测试色谱柱反向(小心!)
- ✓ 对于保留时间<1分钟——降低B比例,用甲醇代替乙腈
- ✓ 在插件方法库中检查预期保留时间
压力过高 critical
症状: 泵压力>色谱柱最大压力的80%或系统因高压错误停机
🔍 诊断树:
-
1. 检查色谱柱是否连接正确(箭头方向)
→ 是: OK
→ 否: 色谱柱接反→将其翻转(切勿反向安装运行) -
2. 测试:从系统中移除色谱柱,仅运行泵+检测器
→ 是: 压力降至 <50 bar → 色谱柱问题(堵塞)
→ 否: 压力保持高位 → 在线过滤器堵塞,烧结滤片污染 -
3. 检查预柱过滤器(在线烧结滤片)
→ 是: 污染且变棕色 → 更换
→ 否: Continue -
4. 用 50:50 ACN:H2O 反向冲洗(不带色谱柱)——问题消失?
→ 是: 颗粒卡在第一毫米处——冲洗 30 分钟可能恢复
→ 否: 更换色谱柱
- 在线过滤器(烧结滤片)被颗粒堵塞
- 缓冲盐析(高 %B 时沉淀)
- 样品含有悬浮物(进样前用 0.22 µm 过滤)
- 色谱柱堵塞(柱床压实)
- 梯度含缓冲液相 + 高有机相 → 盐沉淀
- ✓ 进样前务必用0.22 µm PVDF过滤样品
- ✓ 每100次进样(或压力升高>20%时)更换在线过滤器
- ✓ 不要使用>20mM磷酸盐缓冲液+>70%乙腈(盐会析出)
- ✓ 用50:50乙腈:水反向冲洗色谱柱30分钟(如果制造商允许)
- ✓ 使用4×3mm预柱保护主色谱柱
鬼峰 high
症状: 色谱图上校准中不存在的无法解释的峰
🔍 诊断树:
-
1. 测试:空白进样(纯样品溶剂)
→ 是: 出现鬼峰 → 系统或洗脱液污染
→ 否: 仅与样品一起出现 → 基质 -
2. 鬼峰是否随梯度增大(在高 %B 下洗脱)?
→ 是: 是 → 色谱柱过载或前一次运行中的强保留物质
→ 否: 与梯度无关 → 自动进样器残留 -
3. Increase carryover wash (between injections)
→ 是: 有帮助 → 残留是原因。使用更强的清洗程序。
→ 否: Continue -
4. 纯水进样——是否有峰?
→ 是: 是 → 水源污染(来自 DI 系统的有机物)
→ 否: Continue
- 自动进样器针/定量环中的残留
- 洗脱液污染(即使是 HPLC 级)
- 前一次运行中的强保留组分
- 样品瓶中的塑料(邻苯二甲酸酯、来自瓶盖的 PEG)
- 纯化不充分的去离子水
- ✓ 加强清洗程序:100% B → 100% A → 50:50(3个循环)
- ✓ 校准前进行强清洗:100% DMSO或100%甲醇
- ✓ 如有疑问,用0.22 µm PTFE过滤洗脱液
- ✓ 使用琥珀色玻璃瓶和聚四氟乙烯内衬盖盛装样品
- ✓ 定期进行梯度升至100% B并持续10分钟(清洗)
📚 科学参考文献(芝加哥作者-日期格式)——点击展开
- Snyder, Lloyd R., Joseph J. Kirkland, and John W. Dolan. 2010. Introduction to Modern Liquid Chromatography. 3rd ed. John Wiley & Sons. Chapter 17 (Troubleshooting) pp. 559-616. ISBN 978-0-470-16754-0. https://doi.org/10.1002/9780470508183 [link ↗]
- Dolan, John W.. 2014. LC Troubleshooting (monthly column 1989-2024). LCGC North America. [link ↗] — John Dolan 35-letnia seria miesięcznych artykułów problemowych
- Kromidas, Stavros. 2017. HPLC Made to Measure: A Practical Handbook for Optimization. 2nd ed. Wiley-VCH. ISBN 978-3-527-31377-1. — Praktyczny przewodnik problem-solving dla labs analitycznych
- Dolan, John W.. 2013. When to Modify Method Conditions. 192-199. [link ↗] — Decision flow for changing flow rate / temperature / %B vs swapping columns.
- Dong, Michael W.. 2019. HPLC and UHPLC for Practicing Scientists. 2nd ed. Wiley. ISBN 978-1-119-31378-3. https://doi.org/10.1002/9781119313793 [link ↗] — Chapter 9 covers troubleshooting modern UHPLC systems (sub-2 µm particles).
- Meyer, Veronika R.. 2010. Practical High-Performance Liquid Chromatography. 5th ed. Wiley. ISBN 978-0-470-68218-0. — Solid step-by-step problem isolation chapter (eluents, columns, instruments).
- Snyder, L. R., J. J. Kirkland, and J. L. Glajch. 1997. Practical HPLC Method Development. 2nd ed. Wiley. ISBN 978-0-471-00703-6. — Method-development companion volume with troubleshooting cross-refs.
- Carr, Peter W.. 2009. The new physical chemistry of HPLC. 1764-1772. https://doi.org/10.1016/j.chroma.2008.11.094 [link ↗] — Theoretical basis for diagnosing efficiency losses (mass-transfer, eddy diffusion).
- Heyden, Yvan Vander, et al.. 2009. Robustness of pharmaceutical liquid chromatographic methods. 2120-2129. https://doi.org/10.1016/j.jchromb.2008.10.052 [link ↗] — How to diagnose method failures vs. system failures (Plackett-Burman).
- Engelhardt, Heinz. 2014. 100 Years of Chromatography. 2nd ed. Wiley-VCH. ISBN 978-3-527-33473-5. — Historical context for ghost-peak phenomenology (silica chemistry).
Deskryptory Lipinskiego (struktura)
稳定性与保质期顾问 Arrhenius
输入储存条件 → Arrhenius算法将预测剩余浓度、半衰期和使用建议。
📐 计算详情(Arrhenius + 一级动力学)
视觉降解迹象:
- White solid = paraformaldehyde
❄️ 储存建议
- Temperature:
- 15-25°C (NEVER below 15°C — paraformaldehyde precipitates)
- Stabilizers:
- Methanol 10-15%
- Container:
- HDPE/glass
- Incompatible:
- Oxidizers, bases, amines
🧪 溶液配制助手(Smart Prep) MolGod_PREP_2
输入您要制备的内容——我将生成SOP
📚 科学文献概览 — CAS 50-00-0MolGod_LITHUB_MAIN
⭐ 关键发现(科学文献) 20 出版物
50-00-0
— multi-criteria ranking (W12): 30%引用·20%近期性·20%主题·15%历史·15%开放获取.
-
#1Eric Brown, Michael R. Kessler, Nancy R. Sottos et al. (2003) · Journal of Microencapsulation重要性: 702次引用 · open access
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#2Nathan H. Chen, Karrera Y. Djoko, Frédéric J. Veyrier et al. (2016) · Frontiers in Microbiology重要性: 153次引用 · 综述 · open access
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#3Eloïse A. Marais, Daniel J. Jacob, T. P. Kurosu et al. (2012) · Atmospheric chemistry and physics重要性: 230次引用 · open access
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#4T. Stavrakou, Jean‐François Müller, Isabelle De Smedt et al. (2009) · Atmospheric chemistry and physics重要性: 258次引用 · open access
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#5Michael Hauptmann, Patricia A. Stewart, Jay H. Lubin et al. (2009) · JNCI Journal of the National Cancer Institute重要性: 247次引用 · open access
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#6A. Heckel, Andreas Richter, T. Tarsu et al. (2005) · Atmospheric chemistry and physics重要性: 230次引用 · open access
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#7Chance, K., Daniel J. Jacob, Palmer, P. I. et al. (2000) · Geophysical Research Letters重要性: 224次引用 · open access
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#8T. Stavrakou, Jean‐François Müller, Isabelle De Smedt et al. (2009) · Atmospheric chemistry and physics重要性: 224次引用 · open access
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#9Gunnar Damgård Nielsen, Peder Wolkoff (2010) · Archives of Toxicology重要性: 216次引用 · 综述 · open access
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#10John D. Goddard, Henry F. Schaefer (1979) · The Journal of Chemical Physics重要性: 197次引用 · open access
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#11Anton C. de Groot, Mari‐Ann Flyvholm, Gerda Lensen et al. (2009) · Contact Dermatitis重要性: 192次引用 · 综述 · open access
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#12Kanatharana, Proespichaya, Thavarungkul, Panote, Higson, Seamus P. J. et al. (2010) · Analytica Chimica Acta重要性: 103次引用 · open access
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#13Sherwood Burge, M G Harries, W.K. Lam et al. (1985) · Thorax重要性: 125次引用 · open access
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#14Susana Viegas, Carina Ladeira, Carla Nunes et al. (2010) · Journal of Occupational Medicine and Toxicology重要性: 101次引用 · open access
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#15Andrea Rodil; Jan Deska; Martin H. G. Prechtl (2025) · Chemical Society Reviews重要性: 近期(2025) · open access
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#16Geissler, Erik, Szilagyi, Imre, M., Czakkel, O. et al. (2013) · Nanomaterials and the Environment重要性: Open access
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#17Valverde-Santiago M; Pontel LB (2025) · Molecular cell重要性: 必引文献(经典) · 近期(2025) · 综述
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#18Atkins J; Kukuyan AM; Toma M et al. (2025) · Leukemia重要性: 必引文献(经典) · 近期(2025)
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#19Wolkoff P (2025) · Archives of toxicology重要性: 必引文献(经典) · 近期(2025) · 综述
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#20(2011)重要性: Open access
📚 参考文献(综合书目,芝加哥作者-日期格式) 129 条目
以上折叠面板中针对CAS号50-00-0引用的所有科学来源。格式: 《芝加哥格式手册》第17版,作者-日期系统.
🗄️ 科学数据库
- NIST. n.d. NIST Chemistry WebBook: CAS 50-00-0. Gaithersburg, MD: National Institute of Standards and Technology. https://webbook.nist.gov/cgi/cbook.cgi?ID=50-00-0.
- AIST. n.d. Spectral Database for Organic Compounds (SDBS): CAS 50-00-0. Tsukuba, Japan: National Institute of Advanced Industrial Science and Technology. https://sdbs.db.aist.go.jp/.
- Linstrom, Peter J., and William G. Mallard, eds. n.d. NIST Chemistry WebBook: NIST Standard Reference Database Number 69. Gaithersburg, MD: National Institute of Standards and Technology. https://doi.org/10.18434/T4D303.
- PubChem. n.d. PubChem Compound Summary: CAS 50-00-0. Bethesda, MD: National Center for Biotechnology Information (NCBI), National Library of Medicine. https://pubchem.ncbi.nlm.nih.gov/#query=50-00-0.
- U.S. EPA. n.d. CompTox Chemicals Dashboard: CAS 50-00-0. Research Triangle Park, NC: U.S. Environmental Protection Agency. https://comptox.epa.gov/dashboard/chemical/details/DTXSID7020637.
📐 标准/指南
- ICH. 2003. "Stability Testing of New Drug Substances and Products: Q1A(R2)." Geneva: International Council for Harmonisation of Technical Requirements for Pharmaceuticals for Human Use. https://database.ich.org/sites/default/files/Q1A%28R2%29%20Guideline.pdf.
- National Fire Protection Association (NFPA). 2024. "NFPA 30: Flammable and Combustible Liquids Code." NFPA, Quincy, MA. https://www.nfpa.org/codes-and-standards/all-codes-and-standards/list-of-codes-and-standards/detail?code=30.
- Occupational Safety and Health Administration (OSHA). 2023. "29 CFR 1910.106 — Flammable Liquids." U.S. Department of Labor, Federal Register. https://www.osha.gov/laws-regs/regulations/standardnumber/1910/1910.106.
- European Chemicals Agency (ECHA). 2024. "Annex VI to Regulation (EC) No 1272/2008 (CLP) — Harmonised Classification and Labelling." ECHA, Helsinki / Official Journal of the European Union. https://echa.europa.eu/regulations/clp/clp-classification.
- European Committee for Standardization (CEN). 2016. "EN 374-1:2016 — Protective gloves against dangerous chemicals and micro-organisms — Part 1: Terminology and performance requirements for chemical risks." CEN, Brussels. https://standards.cencenelec.eu/dyn/www/f?p=205:110:::::FSP_PROJECT,FSP_ORG_ID:38536,6080&cs=1B0DAA8B85DF42E4A2C70E5D71F0BFA32.
- European Committee for Standardization (CEN). 2001. "EN 166:2001 — Personal eye-protection — Specifications." CEN, Brussels. https://standards.cencenelec.eu/dyn/www/f?p=CEN:110:0::::FSP_PROJECT:6541&cs=1F1A4E0A78C4DB6A28DBE2E8C29D89DCF.
- European Committee for Standardization (CEN). 2009. "EN 14605:2005+A1:2009 — Protective clothing against liquid chemicals — Performance requirements for clothing with liquid-tight (Type 3) or spray-tight (Type 4) connections." CEN, Brussels. https://standards.cencenelec.eu/dyn/www/f?p=CEN:110:0::::FSP_PROJECT:21581&cs=1A04A2D3C7CC58E9E6CB58D55F7EBFB7E.
- National Institute for Occupational Safety and Health (NIOSH). 2017. "Recommendations for Chemical Protective Clothing: A Companion to the NIOSH Pocket Guide." U.S. Department of Health & Human Services / CDC. https://www.cdc.gov/niosh/ncpc/default.html.
- Occupational Safety and Health Administration (OSHA). 2011. "Personal Protective Equipment — General requirements." U.S. Department of Labor — 29 CFR 1910.132. https://www.osha.gov/laws-regs/regulations/standardnumber/1910/1910.132.
📖 书籍
- Rumble, John R., ed. 2024. CRC Handbook of Chemistry and Physics: 105th Edition. Boca Raton, FL: CRC Press. https://hbcp.chemnetbase.com/.
- Hansen, Charles M. 2007. Hansen Solubility Parameters: A User's Handbook, 2nd ed.. Boca Raton, FL: CRC Press. https://www.routledge.com/Hansen-Solubility-Parameters-A-Users-Handbook/Hansen/p/book/9780849372483.
- Barton, Allan F. M. 1991. CRC Handbook of Solubility Parameters and Other Cohesion Parameters: 2nd ed.. Boca Raton, FL: CRC Press. https://www.routledge.com/CRC-Handbook-of-Solubility-Parameters-and-Other-Cohesion-Parameters/Barton/p/book/9780849301766.
- Connors, Kenneth A., Gordon L. Amidon, and Valentino J. Stella. 1986. Chemical Stability of Pharmaceuticals: A Handbook for Pharmacists, 2nd ed.. New York: Wiley. https://doi.org/10.1002/0471734683.
- Rumble, John R., ed. 2019. CRC Handbook of Chemistry and Physics: 100th Edition. Boca Raton, FL: CRC Press. https://hbcp.chemnetbase.com/.
- Urben, Peter G. 2017. Bretherick's Handbook of Reactive Chemical Hazards, 8th Edition. Academic Press / Elsevier, Oxford. https://www.sciencedirect.com/book/9780081010594.
📘 专著
- IARC. n.d. IARC Monographs on the Identification of Carcinogenic Hazards to Humans: CAS 50-00-0. Lyon, France: International Agency for Research on Cancer, World Health Organization.
📄 科学文章(同行评审)
- Stefanis, Emmanuel, and Costas Panayiotou. 2008. "Prediction of Hansen Solubility Parameters with a New Group-Contribution Method." International Journal of Thermophysics 29: 568-585. https://doi.org/10.1007/s10765-008-0415-z.
- Stoll, Vincent S., and John S. Blanchard. 1990. "Buffers: Principles and Practice: In Methods in Enzymology, vol. 182." San Diego: Academic Press. https://doi.org/10.1016/0076-6879(90)82008-P.
🌐 网站
- ECHA. 2023. "Guidance on the Application of the CLP Criteria." European Chemicals Agency. https://echa.europa.eu/guidance-documents/guidance-on-clp.
- European Parliament. 2006. "Regulation (EC) No 1907/2006 (REACH)." Official Journal of the European Union L 396: 1–849.
- ECHA. 2023. "Candidate List of Substances of Very High Concern for Authorisation." European Chemicals Agency. https://echa.europa.eu/candidate-list-table.
- European Parliament. 2008. "Regulation (EC) No 1272/2008 on Classification, Labelling and Packaging of Substances and Mixtures (CLP)." Official Journal of the European Union L 353: 1–1355.
- ECHA. 2017. "Guidance on the Compilation of Safety Data Sheets." Version 3.1. European Chemicals Agency. ECHA-17-G-01-EN. https://echa.europa.eu/documents/10162/23047722/sds_en.pdf.
- ECHA. 2022. "Restrictions Under REACH — Annex XVII." European Chemicals Agency. https://echa.europa.eu/substances-restricted-under-reach.
- United Nations. 2021. Globally Harmonized System of Classification and Labelling of Chemicals (GHS). 9th revised ed. ST/SG/AC.10/30/Rev.9. New York and Geneva: United Nations. https://unece.org/ghs-rev9-2021.
- ECHA. 2020. "Understanding REACH." European Chemicals Agency. https://echa.europa.eu/regulations/reach/understanding-reach.
- ECHA — Zalacznik VI do CLP (klasyfikacja zharmonizowana, ATP 23; 2026-07-07) https://echa.europa.eu/information-on-chemicals/annex-vi-to-clp.
- U.S. Occupational Safety and Health Administration (2024) — 29 CFR 1910.120 — Hazardous Waste Operations and Emergency Response (HAZWOPER) https://www.osha.gov/hazwoper.
- National Fire Protection Association (2018) — NFPA 472: Standard for Competence of Responders to Hazardous Materials/Weapons of Mass Destruction Incidents https://www.nfpa.org/codes-and-standards/nfpa-472.
- European Parliament and Council (2012) — Directive 2012/18/EU on the Control of Major-Accident Hazards Involving Dangerous Substances (Seveso III) https://eur-lex.europa.eu/legal-content/EN/TXT/?uri=celex:32012L0018.
- U.S. National Institute for Occupational Safety and Health (2024) — NIOSH Pocket Guide to Chemical Hazards https://www.cdc.gov/niosh/npg/.
- European Chemicals Agency (2020) — Guidance on the Compilation of Safety Data Sheets (SDS), Version 3.1 https://echa.europa.eu/documents/10162/23047722/sds_en.pdf.
- Snyder, Lloyd R., John W. Dolan, and Joseph J. Kirkland. 2010. Introduction to Modern Liquid Chromatography. Wiley.
- Schoenmakers, Peter J.. 1986. Optimization of Chromatographic Selectivity: A Guide to Method Development. Elsevier.
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- Nikitas, Pavlos, and Adrian Pappa-Louisi. 2009. "Retention models for isocratic and gradient elution in reversed-phase liquid chromatography." Journal of Chromatography A 1216: 1737-1755. https://doi.org/10.1016/j.chroma.2008.10.005.
- Carr, Peter W.. 2009. "The new physical chemistry of HPLC." Journal of Chromatography A 1216: 1764-1772. https://doi.org/10.1016/j.chroma.2008.11.094.
- Dong, Michael W.. 2019. HPLC and UHPLC for Practicing Scientists. Wiley. https://doi.org/10.1002/9781119313793.
- Wu, Naijun, and Anton M. Clausen. 2007. "Fundamental and practical aspects of ultrahigh pressure liquid chromatography for fast separations." Journal of Separation Science 30: 1167-1182. https://doi.org/10.1002/jssc.200700026.
- Stoll, Dwight R., and Peter W. Carr. 2017. "Two-Dimensional Liquid Chromatography: A State of the Art Tutorial." Analytical Chemistry 89: 519-531. https://doi.org/10.1021/acs.analchem.6b03506.
- Dolan, John W.. 2013. "When to Modify Method Conditions." LCGC North America 31: 192-199. https://www.chromatographyonline.com/view/when-modify-method-conditions.
- Meyer, Veronika R.. 2010. Practical High-Performance Liquid Chromatography. Wiley.
- Van Deemter, J. J., F. J. Zuiderweg, and A. Klinkenberg. 1956. "Longitudinal diffusion and resistance to mass transfer as causes of nonideality in chromatography." https://doi.org/10.1016/0009-2509(56)80003-1.
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- Poppe, Hans. 1997. "Some reflections on speed and efficiency of modern chromatographic methods." https://doi.org/10.1016/S0021-9673(97)00376-2.
- Wu, Naijun, and Anton M. Clausen. 2007. "Fundamental and practical aspects of ultrahigh pressure liquid chromatography for fast separations." https://doi.org/10.1002/jssc.200700026.
- Carr, Peter W.. 2009. "The new physical chemistry of HPLC." https://doi.org/10.1016/j.chroma.2008.11.094.
- Knox, John H.. 1977. "Practical aspects of LC theory." https://doi.org/10.1093/chromsci/15.9.352.
- Snyder, L. R., J. J. Kirkland, and J. L. Glajch. 1997. "Practical HPLC Method Development." Wiley.
- Engelhardt, Heinz. 2014. "100 Years of Chromatography." Wiley-VCH.
- Sadek, Paul C.. 2002. "The HPLC Solvent Guide." Wiley-Interscience.
- Snyder, L. R.. 1978. "Classification of the solvent properties of common liquids." https://doi.org/10.1093/chromsci/16.6.223.
- Reichardt, Christian, and Thomas Welton. 2010. "Solvents and Solvent Effects in Organic Chemistry." Wiley-VCH.
- Vailaya, Anant, and Csaba Horváth. 1998. "Retention thermodynamics in hydrophobic interaction chromatography." https://doi.org/10.1021/ie980212h.
- Krstulović, Andrea M., and Phyllis R. Brown. 1981. "Reversed-phase High-Performance Liquid Chromatography." Wiley.
- Boysen, Reinhard I., and Milton T. W. Hearn. 2009. "Multi-modal HPLC of proteins." https://doi.org/10.1093/chromsci/47.8.645.
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