首页> 外文会议>Annual Semiconductor Pure Water and Chemicals Conference(SPWCC): UPW Track; 20050215-16; Santa Clara,CA(US) >Determination Of Organic Acids And Inorganic Anions In Semiconductor-Industry Water
【24h】

Determination Of Organic Acids And Inorganic Anions In Semiconductor-Industry Water

机译:半导体工业水中有机酸和无机阴离子的测定

获取原文
获取原文并翻译 | 示例

摘要

Compared with traditional water-usage and water-discharge systems, treating semiconductor-industry reclaim water for reuse is more cost-effective and can produce a higher-quality product. There is less wear-and-tear on processing equipment, since reclaim water is typically cleaner than city water. Additionally, some municipalities are beginning to restrict water usage, resulting in a practical need for reprocessing procedures. However, knowing what contaminants are in the reclaim water is necessary for the efficient development of a repurification program. The organic contamination in water-purification process systems typically has been evaluated solely via total-organic-carbon (TOC) monitoring. These inline monitors can measure values sub-ppb and provide information on the overall "health" of the DIW system. However, with the advent of water reuse, this "bulk-property" number is not sufficient, and more details on the identity and level of each constituent are desired. A step in this direction has been the introduction of liquid chromatography coupled with organic-carbon detection (LC-OCD), a technique developed by Stefan Huber. This analysis provides quantitative information of classes of organics (e.g., humics, organic acids, polysaccharides) at sub-ppm levels. In some situations, identities and amounts of specific compounds are needed. One class of compounds that is of growing interest is organic acids (e.g., acetic, formic, lactic, oxalic). Water-purification systems can tolerate high levels of these ionizable organics, but not neutral species such as alcohols and ketones. Knowing which species are present lets the water-system owner know exactly what will be sent to the equipment. To help address this situation, a rapid ion-chromatographic method has been developed to quantify eight organic acids (as well as seven common anions) that typically are seen in reclaim waters. Calibration results, detection the sample was reanalyzed to identify and quantify the various component(s). This second analysis is shown in Figure 6. Both acetate and formate were found to be present, at 1 ± 1 ppb for acetate and 5 ± 2 ppb, respectively; the uncertainties are at the 95% confidence level. Another example is the analysis of a point-of-use (POU) sample. The chromatogram (front-end portion) for the ppt-level-anion screen is shown in Figure 7. The organic-acid analysis revealed the presence of three organic acids: acetate, formate, and propionate (see Figure 8). Concentrations were 15 ± 1 ppb, 44 ± 20 ppb, and 2 ± 1 ppb, respectively (confidence level = 95%). It should be noted that the sample had to be diluted 1-to-10 in order to quantify formate, since its concentration exceeded the upper limit (i.e., 32 ppb) of the calibration curve. Consequently, the uncertainty had to be multiplied by the dilution factor of ten.
机译:与传统的用水和排水系统相比,处理半导体工业再生水可重复使用的方法更具成本效益,并且可以生产更高质量的产品。由于再生水通常比城市用水清洁,因此加工设备的磨损更少。此外,一些市政当局开始限制用水,导致实际需要后处理程序。但是,了解有效再生水程序中的污染物是必需的。水净化工艺系统中的有机污染物通常仅通过总有机碳(TOC)监测进行评估。这些在线监视器可以测量sub-ppb值,并提供有关DIW系统总体“健康”的信息。然而,随着水的再利用的到来,这个“大宗商品”数量是不够的,并且需要关于每种成分的特性和水平的更多细节。朝着这一方向迈出的一步是引入液相色谱结合有机碳检测(LC-OCD),这是由Stefan Huber开发的技术。该分析提供了亚ppm级以下有机物类别的定量信息(例如腐殖质,有机酸,多糖)。在某些情况下,需要特定化合物的身份和数量。一类引起人们关注的化合物是有机酸(例如,乙酸,甲酸,乳酸,草酸)。水净化系统可以耐受高含量的这些可电离的有机物,但不能耐受中性物质,例如醇和酮。知道存在哪些种类,可使水系统所有者确切知道将要发送到设备的内容。为了帮助解决这种情况,已经开发了一种快速离子色谱方法来定量通常在再生水中看到的八种有机酸(以及七种常见阴离子)。重新分析校准结果,检测样品,以鉴定和定量各种成分。第二种分析结果如图6所示。发现乙酸盐和甲酸盐均以1±1 ppb的乙酸盐和5±2 ppb的盐存在。不确定性处于95%的置信水平。另一个示例是使用点(POU)样本的分析。 ppt级阴离子屏幕的色谱图(前端部分)如图7所示。有机酸分析显示存在三种有机酸:乙酸盐,甲酸盐和丙酸盐(见图8)。浓度分别为15±1 ppb,44±20 ppb和2±1 ppb(置信度= 95%)。应该注意的是,为了定量甲酸,样品必须稀释1至10倍,因为其浓度超过了校准曲线的上限(即32 ppb)。因此,不确定性必须乘以10的稀释系数。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号