Dipartimento di Scienze del Suolo, della Pianta, dell'Ambiente, delle Produzioni Animali, Università di Napoli Federico II, Via Università 100, 80055 Portici, Italy.
Anal Bioanal Chem. 2010 Aug;397(7):3071-8. doi: 10.1007/s00216-010-3884-4. Epub 2010 Jun 19.
Size-fractions from a soil humic acid were separated by preparative size-exclusion chromatography (SEC), desalted, and concentrated by ultrafiltration and vacuum centrifugation without being subjected to any freeze-drying process. After having assessed the lack of formation of any multiple-charged ions by high-resolution Fourier transform ion cyclotron resonance electrospray ionization (ESI) mass spectrometry (MS), the size-fractions were used by direct infusion to compare the molecular ion distribution by both atmospheric pressure chemical ionization (APCI)- and ESI-MS in negative mode. The weight- (Mw) and number-averaged (Mn) molecular weight obtained by ESI-MS were invariably larger than by APCI-MS for all size-fractions, thereby indicating that ESI is more efficient than APCI to evaluate the molecular mass distribution of humic samples. No substantial difference was observed when concentration and pH of unfreeze-dried humic size-fractions were varied. The negative mode was applied to assess the effect of cone voltage from -20 to -60 V on ESI of the humic size-fractions further separated through an on-line SEC column. The resulting mass spectra and Mw and Mn values suggested that the variation of cone voltage in ESI-MS affects the ionization potential of associated humic molecules more in solution rather than their fragmentation. These findings agree with previous observations which indicated a limitation of ESI in providing consistent mass detection for a complex mixture of heterogeneous humic molecules, especially when they are aggregated by a freeze-drying process.
采用制备性体积排阻色谱(SEC)对土壤腐殖酸进行级分分离,通过超滤和真空离心进行脱盐和浓缩,而无需进行任何冻干过程。在通过高分辨率傅里叶变换离子回旋共振电喷雾电离(ESI)质谱(MS)评估不存在形成任何多电荷离子之后,直接注入这些级分,通过大气压化学电离(APCI)-和 ESI-MS 在负离子模式下比较分子离子分布。通过 ESI-MS 获得的重均(Mw)和数均(Mn)分子量始终大于 APCI-MS 的分子量,这表明 ESI 比 APCI 更有效地评估腐殖样品的分子量分布。当不冻干的腐殖质级分的浓度和 pH 值发生变化时,没有观察到明显的差异。采用负离子模式进一步评估通过在线 SEC 柱进一步分离的腐殖质级分的电喷雾的锥电压从-20 到-60 V 的影响。所得质谱和 Mw 和 Mn 值表明,ESI-MS 中的锥电压变化更影响溶液中相关腐殖质分子的电离电位,而不是它们的碎片化。这些发现与之前的观察结果一致,这些观察结果表明 ESI 在为复杂的异质腐殖质分子混合物提供一致的质量检测方面存在局限性,尤其是当它们通过冻干过程聚集时。