但辅助剂的调整破消耗时间间,而且在份子量低于1000时会出现由辅助剂造成的干扰峰(interference peak),是以很难对1000以下的份子量进行分析。产综研这次研发的“纳米点离子化法”不需辅助剂,而且能在试料不分解的情况下进行离子化。
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Conclusion: Full dissociation can be made between the interference peak and baicalin peak.
结论:该法能使干扰峰与黄芩苷峰完全分离。
A detailed analysis about the circuit waveform and experimental data is also given the multi-frequency peak value and the frequency interference during the experiment are all analysed and processed.
分析了电路波形及实验数据、对实验研究过程中的多频率峰值、谐波干扰和幅值干扰等进行了分析和处理。
The practice proves that this circuit is effective for separation of high-frequency square wave signals and peak pulse interference signals.
实践证明:该电路能有效地实现高频方波信号与尖峰脉冲干扰信号的信噪分离。
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