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V0CPAK0A1

Milli-Q

VOC-Pak® 精制器

Production of volatile organic compound-free water at the point of dispense of the Milli-Q® IQ/EQ 7 series water purification systems.

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About This Item

分類程式碼代碼:
41104212
eCl@ss:
33050190
NACRES:
JA.13

材料

carbon cartridge (activated)

品質等級

包裝

pkg of 1 unit

製造商/商標名

VOC-Pak®

相容性

for use with Milli-Q® EQ 7000
for use with Milli-Q® EQ 7008
for use with Milli-Q® EQ 7016
for use with Milli-Q® IQ 7000
for use with Milli-Q® IQ 7003
for use with Milli-Q® IQ 7005
for use with Milli-Q® IQ 7010
for use with Milli-Q® IQ 7015

運輸包裝

ambient

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一般說明

VOC-Pak® 精制器设计用于纯化超纯水,用于通过GC和GC-MS分析挥发性有机化合物(VOC)。精制器由专门设计用于有效去除超纯水中VOC的活性炭组成。对于需要无VOC超纯水用于分析应用的研究员来说,该装置是一个绝佳的选择。
当在分配Milli-Q® IQ 7000、Milli-Q® IQ 7003/05/10/15和Milli-Q® EQ 7000/08/16水净化系统的Q-POD®分配点加入超纯水时,VOC-Pak®精制器产生不含VOC的水。

應用

VOC-Pak® 精制器用于生产不含VOC的水,当加入超纯水时,用于GC和GC-MS分析。输送的不含VOC的超纯水适用于制备空白、标准品溶液、试剂和样品,用于这些物质的分析,或可能影响结果的情况,例如电化学研究。

特點和優勢

  • 经验证可生产300 L不含VOC的超纯水。
  • 易于维护:精制器易于安装和更换。
  • 重新设计的底部尖端以安全安装防护罩。
  • 用于RFID与Q-POD®分配器连接的e-Sure标签可实现完全可追溯性(数据管理)和POD′触摸屏界面上的自动耗材状态监控。
  • 在线提供质量证书。

法律資訊

Milli-Q is a registered trademark of Merck KGaA, Darmstadt, Germany
Q-POD is a registered trademark of Merck KGaA, Darmstadt, Germany
VOC-PAK is a registered trademark of Merck KGaA, Darmstadt, Germany

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Ran Chen et al.
Journal of the Electrochemical Society, 163(4), H3032-H3037 (2016-09-20)
Nanoscale scanning electrochemical microscopy (SECM) has emerged as a powerful electrochemical method that enables the study of interfacial reactions with unprecedentedly high spatial and kinetic resolution. In this work, we develop carbon nanoprobes with high electrochemical reactivity and well-controlled size
Tong Sun et al.
Faraday discussions, 210(0), 173-188 (2018-07-07)
This paper is concerned with long-distance interactions between an unbiased metal nanoparticle (NP) and a nanoelectrode employed as a tip in the scanning electrochemical microscope (SECM). A NP immobilized on the inert substrate acts as a bipolar electrode, producing positive
J S Cooper et al.
The Analyst, 140(9), 3233-3238 (2015-03-15)
Partially selective gold nanoparticle sensors have the sensitivity and selectivity to discriminate and quantify benzene, toluene, ethylbenzene, p-xylene and naphthalene (BTEXN) at concentrations relevant to the US Environmental Protection Agency. In this paper we demonstrate that gold nanoparticle chemiresistors can

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