PinAAcle 900T Atomic Absorption Spectrometer | PerkinElmer

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PinAAcle 900T 原子吸收光谱仪

幸运8平台彩票 PinAAcle™ 900T是一款顶级的实验室用火焰/石墨炉原子吸收光谱仪(AA),火焰/石墨炉一体化设计,带有纵向塞曼背景扣除系统。

部件号 PINAACLE900T
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详情 信息

PinAAcle 900T是一款火焰/石墨炉原子吸收光谱一体机,从火焰切换至石墨炉仅需几秒;具有高通量光学系统,以及业内信噪比最高的固态检测器。此外,它还配备最先进的光纤光路设计,可有效提升光通量,改善检出限; TubeView™全彩色石墨炉摄像头可使自动进样器的针头校准更加便捷,也可对灰化和电离过程进行实时监控,方便方法开发。PinAAcle 900T拥有小巧的外形,可有效节省您的实验室空间。

PinAAcle 900F配备Syngistix™操作软件,界面友好,操作简便,根据从进样到报告生成的检测流程而设计,并且可兼容多个原子光谱技术。

规格

21 CFR Part 11兼容 Yes
高度 64.0 cm
型号名称 PinAAcle 900T
便携式 No
产品品牌名称 PinAAcle
保修 1 Year
重量 141.0 kg
宽度 95.0 cm
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应用文献

应用文献

产品手册

PinAAcle 900 Series AA Spectrometers Brochure

PerkinElmer’s PinAAcle 900 AA spectrometers offer an array of exciting advances and a variety of configurations and capabilities to deliver the performance you need.

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Refinery and Natural Gas Analysis

幸运8平台彩票Oil refineries and natural gas producers around the world require their lab operations to perform large numbers of analyses before their products are used in industries and by consumers. Detection of even the slightest impurities, accurate process control and hydrocarbon distribution analysis is critical to the success of these operations.That’s how PerkinElmer can help. As a global scientific leader and solutions provider to refining and natural gas labs, PerkinElmer's proven technology and experience meets the ever-changing needs of the oil and gas industry. PerkinElmer is committed to the success of your oil and gas sample analysis by providing the instrumentation, software, consumables, and services you need for fast, easy and precise testing. The result: better control of your operations and improved product quality.

PDF 5 MB
婴幼儿谷类辅助食品中铅镉的快速检测方案

幸运8平台彩票目前婴幼儿食品中铅、镉的检测方法一般依据国标中的石墨炉原子吸收法、电杆耦合等离子体质谱法等。这些检测方法一般采用湿法消解或者微波消解进行样品前处理,每个样品通常需要1-2小时的时间进行前处理,操作起来耗时耗力, PerkinElmer根据国家标准和企业生产情况,开发了一套婴幼儿谷类辅助食品中铅镉检测的快速检测方案,帮助企业实现从原料大米到终产品婴幼儿谷类辅助食品的监控。

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单页

5 Tips to Improving Your Sample Digestion

Sample preparation is one of the most critical steps in your analytical process. Often accounting for 60% of your analytical timetable, it has a fundamental impact on laboratory throughput and analytical performance. Any errors within the sample preparation process will undermine the quality of your food data at all subsequent stages of your analysis. Here are five tips to improving your sample digestion for food samples.

PDF 219 KB

应用文献

Accurate Determination of Lead in Dairy Products by Graphite Furnace Atomic Absorption

The performance of this method was validated by assessing the Standard Reference Materials (SRMs) from the US National Institute of Standards and Technology (NIST) and China National Institute of Metrology (NIM) as well as by comparing these results with those obtained using inductively coupled plasma mass spectrometry (ICP-MS) after complete sample digestion by microwave method.

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Analysis of Arsenic, Cadmium and Lead in Chinese Spice Mixtures using Graphite Furnace Atomic Absorption SPectrophotometry

This application note describes an accurate and reliable microwave-assisted sample pretreatment procedure for the determination of arsenic, cadmium and lead in spices using graphite furnace atomic absorption spectrophotometry (GFAAS).

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Analysis of Fish and Seafood with the AAnalyst 800 Atomic Absorption Spectrophotometer for Trace Metal Contamination in Accordance with AOAC Methods 999.10 and 999.11

幸运8平台彩票Increased knowledge about the nutrient content of biological organisms is essential for a thorough understanding of ecological stoichiometry and nutrient transport in and among ecosystems.

PDF 334 KB
Analysis of Micronutrients in Fortified Breakfast Cereal by Flame AA Using Microwave Digestion and FAST Flame Sample Automation

幸运8平台彩票The efficient production of these nutritionally fortified breakfast cereals requires careful formulation and uniformity batch to batch. Ongoing analytical measurement of nutritional additives and the total micronutrient content in the cereal is one way in which food producers can quantify the quality and consistency of their cereal products. The ability to quickly, accurately, and easily analyze their samples is also key to timely data reporting, allowing real-time batch adjustments to be made and enhancing continuous process control. Food producers must also meet nutritional labeling guidelines which require an accurate assessment of micronutrients for regulatory labeling compliance.

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Analysis of Micronutrients in Fresh and Dried Fruits by Flame AA Using Microwave Digestion and Fast Flame Sample Automation

This work demonstrates the ability to accurately measure nutritional elements in a variety of fresh and dried fruits by flame atomic absorption using a FAST Flame sample automation for high sample throughput.

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Analysis of Micronutrients in Fruit Juice by Flame AA Using FAST Flame Sample Automation for Increased Sample Throughput

幸运8平台彩票This work demonstrates the ability to rapidly and accurately measure nutritional elements in fruit juices using flame AA with a FAST Flame sample automation system.

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Analysis of Micronutrients in Milk by Flame AA Using FAST Flame Sample Automation for Increased Sample Throughput

幸运8平台彩票This work demonstrates the ability to accurately measure nutritional elements in a variety of milk types by flame atomic absorption using FAST Flame sample automation for high sample throughput.

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Analysis of Micronutrients in Soil by Using AA 800 Atomic Absorption Spectrophotometer

Soil is used in agriculture, where it serves as the primary nutrient base for the plants. Soil material is a critical component in the mining and construction industries. Soil serves as a foundation for most construction projects.

PDF 415 KB
Analysis of Organic Fertilizers for Nutrients with AAnalyst 800 Atomic Absorption Spectrophotometer

幸运8平台彩票The fertilizer industry helps to ensure that farmers have the nutrients they need to grow enough crops to meet the world's requirements for food, feed, fiber and energy.

PDF 399 KB
Analysis of Pb, Cd and As in Tea Leaves Using Graphite Furnace Atomic Absorption Spectrophotometry

For many years, graphite furnace atomic absorption spectrophotometry (GFAAS) has been a reliable technique and the preferred method for this heavy metals analysis of tea leaves.

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Analysis of Vanadium, Nickel, Sodium and Iron in Fuel Oils using Flame Atomic Absorption Spectrophotometry

幸运8平台彩票Elemental analysis of fuel oil is an important step in quantifying its quality. While ICP-OES and ICP-MS instrumentation may receive more attention when it comes to metals analyses, FAAS is a viable option particularly in the petroleum industry.

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Determination of As, Se and Hg in Waters by Hydride Generation/Cold Vapor Absorption Spectroscopy

幸运8平台彩票Contamination of industrial and municipal water supplies with arsenic (As), selenium (Se), and mercury (Hg) can occur from natural deposits, industrial discharge, runoff from mining, landfill and agricultural operations.

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Determination of Toxic, Trace and Essential Elements in Food Matrices using THGA Coupled with Longitudinal Zeeman Background Correction

Ingestion of trace elements from food can be linked to nutrition, disease, and physiological development. Whether they are needed for proper nutritional value or contain toxic elements, the presence of major and minor elements in food needs to be verified to help determine health effects for the consumer. Acute or chronic exposure to heavy metals can lead to damaged nervous system function and have detrimental effects on vital organs. Food safety laboratories performing these analyses are often high-throughput and require a detection tool that is efficient and cost effective.

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Determination of Various Elements at Ultra-trace Levels in Ultrapure Acids and Photoresist Stripper Solutions by Graphite Furnace Atomic Absorption

This work demonstrates the ability to measure trace levels of various metals in ultrapure acids and photoresist stripper solutions by graphite furnace atomic absorption.

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Elemental Analysis of Beer by Flame Atomic Absorption with the PinAAcle 900

幸运8平台彩票This work demonstrates the ability to measure several elements in beer with Flame atomic absorption using the PinAAcle 900. No significant differences were observed between beers in glass bottles or metal cans.

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Fast Digestion Analysis of Lead and Cadmium in Rice Using Graphite Furnace Atomic Absorption

幸运8平台彩票Lead (Pb) and cadmium (Cd) are common pollutants in grains and are extremely toxic. Pb is harmful to human organs even at trace levels, and once it accumulates in the body, it causes inhibition of hemoglobin formation and neurological disorders. Cd is even classified as human carcinogen [Group 1 - according to International Agency for Research on Cancer]. It is reported that Cd leads to severe kidney problems which can be fatal and is also associated with brittle bones and liver problems. Rice, as the most widely consumed cereal grain in Asia/China, can quickly pick up Pb and Cd from toxins, pesticides and fertilizers in the soil, thereby endangering the health of millions of people through their diet. Therefore, it is extremely important to develop a simple, reliable method to monitor the levels of Pb and Cd in rice. According to Chinese national standard GB 2715-2016 Hygienic Standard for Grain, the maximum concentrations of Pb or Cd in grains must be below 0.2 mg/kg; the allowable level in the European Union is the same [EC 1881/2006]. The official technique for the determination of heavy metals in both cases is graphite furnace atomic absorption spectroscopy (GFAAS, GB/T 5009. 12-2017, GB/T 5009-2017. 15 and EN 14083:2003). Samples can be pretreated using various methods, including microwave digestion, hot block digestion, dry ashing, and hot plate digestion. It is found that these conventional digestion procedures are always complicated and time-consuming (two-four hours or even longer). Plus, conventional sample preparation techniques require large quantities of corrosive and oxidizing reagents, increasing the chance for contamination which could lead to inaccurate results. Special PTFE vessels are needed for microwave digestion; however, reusable utensils might also cause cross contamination.

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PinAAcle 900F火焰原子吸收测定啤酒中重金属元素

报告结果证明PinAAcle 900火焰原子吸收有能力来测定啤酒中元素,并有良好的精确度和准度。

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PinAAcle 900H 石墨炉原子吸收光谱仪预富集法直接测定水中的铊含量

幸运8平台彩票本文利用PinAAcle 900H 原子吸收光谱仪与Syngistix for AA 软件相结合,描述了一种测定水样品中超痕量铊的准确和可靠的样品富集方法。

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Quantification of Essential Metals in Spice Mixtures for Regulatory Compliance Using Flame Atomic Absorption Spectrophotometry

幸运8平台彩票There is an increasing need to monitor the essential element levels in food samples at ever decreasing concentrations. For this purpose, very sensitive, yet rapid and inexpensive methods are necessary. The quantification of trace metals in food samples has routinely been carried out by ICP-OES, ICP-MS, graphite furnace atomic absorption (GFAA) and flame atomic absorption (FAA). Compared with other techniques, FAA has the characteristics of good precision and simplicity with lower cost and minimum operator proficiency.

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The Analysis of Copper, Iron, and Manganese in Wine with FAST Flame Atomic Absorption

幸运8平台彩票This work demonstrates the ability of the PinAAcle 900 flame AA spectrometer to measure Cu, Fe, and Mn in wines to comply with Chinese wine import regulations coupled with FAST Flame sample automation for increased throughput.

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The Analysis of Major Elements in Drinking Water Using FAST Flame Sample Automation for Increased Sample Throughput

This work demonstrates the analysis of mineral elements in a variety of drinking waters using the PinAAcle 900 AA spectrometer coupled with a FAST Flame accessory.

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The Determination of Minerals and Metals in Multi-Mineral/Multi-Vitamin Tablets by Flame Atomic Absorption Spectroscopy

There are many mineral dietary supplements available in today’s marketplace to ensure that mineral deficiencies do not occur in one’s diet. The mineral content of these products must be verified for quality control purposes.

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Trace Elemental Characterization of Edible Oils with Graphite Furnace Atomic Absorption Spectrophotometer

The determination of the inorganic profile of oils is important because of the metabolic role of some elements in the human organism. On the one hand, there is knowledge of the food's nutritional value, which refers to major and minor elements.

PDF 531 KB
Trace Metals in Waters by GFAAS, in Accordance with U.S. EPA and Health Canada Requirements

Precise and accurate measurements at the regulated levels are an important factor for assuring safe drinking water. U.S. EPA Method 200.91 is the method cited by EPA, Health Canada, and the WHO for the use of graphite furnace atomic absorption spectroscopy (GFAAS). In evaluating a GFAAS system for determination of these elements, it must provide good sensitivity, low noise, limited drift, and accuracy in matrices with high salt content (hard water) that might be found in drinking waters. In this work, the PinAAcle™ 900T, with a unique optical system, is evaluated for the use of EPA Method 200.9 for As, Cd, Pb, Se, and Tl in drinking waters.

PDF 289 KB
依据法规要求采用火焰原子吸收光谱法对混合香辛料中的必需元素进行定量测定

本文采用PinAAcle 900T在火焰模式下对混合香料中Co,Cu,Mn,Ni和Zn的准确测定方法进行了开发,样品采用微波消解后,PinAAcle 900T火焰原子吸收光谱法进行测定没有任何的干扰。

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利用AAS 对饮用水样中铯进行分析

采用 Perkinelmer 公司的 PinAAcle 900T AAS, 可对饮用水样中的 Cs 进行测定, 灵敏度高, 稳定性好, 加标回收率稳定。

PDF 470 KB
利用原子吸收光谱法对污水样品中磷元素含量进行测定

幸运8平台彩票本文利用 PerkinElmer PinAAcle 900T AAS对污水样品中的P进行了有效测定,四个实际污水样品回收率在94% - 105%之间。

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在临床检验应用中采用横向加热技术石墨炉和塞曼效应背景校正测定血中铅

幸运8平台彩票在本研究中, 我们将对使用恒温平台石墨炉 (STPF) 和横向加热石墨管(THGA)技术的PinAAcle™ 900T原子吸收光谱仪在临床检验中测定血液样品中铅含量的应用性进行验证。

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多种前处理方法对明胶空心胶囊中铬元素进行定量分析

幸运8平台彩票对比不同的前处理方法在明胶空心胶囊中铬元素分析中的优劣, 寻找能够提高检测效率的途径。

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应用中使用纵向塞曼背景校正技术横向加热石墨炉原子吸收光谱测定血清中的铝

本研究将介绍了一种直接分析血清中铝的简单方法。 该方法使用水溶液标准配置校准曲线, 使用纵向塞曼背景校正技术、 横向加热、 等温平台石墨炉技术, 样品用量少、 , 能够满足较大浓度范围的血清样品测试, 而且将实验人员与样品接触的几率降到了最低。

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氢化物发生-冷蒸气原子吸收光谱法测定水中的砷、硒和汞

幸运8平台彩票PinAAcle 900T结合FIAS 400流动注射系统可以为水中砷、 硒和汞的分析提供准确和精确的数据。

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火焰原子吸收光谱法定量香料混合物中受限的必需金属

本文使用PinAAcle 900T原子吸收分光光度计以火焰原子吸收方式以及微波消解前处理方式准确测定香料混合物中的Co, Cu, Mn, Ni和Zn。

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火焰原子吸收光谱法快速分析葡萄酒中的铜、铁和锰

PinAAcle 900 原子吸收光谱仪和FASTFlame2 的联用技术提高了分析的准确性、 快速性和生产率。

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火焰原子吸收光谱法快速自动进样测试饮用水

本文使用PinAAcle AA90T光谱仪可靠地、有效地分析饮用水样品镁、 铁、 铜、 锌、 钠和钙。宽范围的浓度使用FAST Flame 2附件最大限度的减少了用户在稀释和建立标准时的人为误差,并提高了样品检测量。

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火焰原子吸收光谱法测定复合矿物/复合维生素片剂中的矿物质和金属元素

本文使用PerkinElmer®PinAAcle™ 900T来完成对矿物膳食补充剂中矿物质和金属元素的测定,以证明FAAS对这类样品检测的适用性。本实验测定了两个市售复合矿物片剂样品中的7种元素、一个NIST®标准参考物质,以及一个模拟混合食物膳食的市售参考物质。

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火焰原子吸收测定复合维生素片中各项矿物元素

幸运8平台彩票本文的目的主要是展示PerkinElmer® PinAAcle™ 900T火焰原子吸收仪器在这项检测任务中强大的适用性。 本文选定了两种复合维生素片商品、 一项NIST®标准参考物质及一项模拟混合食品参考物质, 测定了其中7中元素含量。

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石墨炉原子吸收光谱法分析茶叶中的铅、镉和砷

本实验建立了使用微波-辅助样品消解系统消解样品,使用PinAAcle 900T原子吸收分光光度计,石墨炉原子吸收光谱法, 准确测定茶叶中的砷、 镉和铅的方法。 加标回收率和标准参考物的分析表明了方法的准确度, 检出限证明了方法的稳定性和精密度。

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石墨炉原子吸收光谱法分析香料混合物中的铅、镉和砷

建立了采用PinAAcle 900T石墨炉原子吸收光谱法准确测定各种香料混合物中的铅、 镉和砷的完整方法。 结果表明, 经酸溶解微波消解后, 香料混合物中的砷, 镉和铅的GFAAS测定不受任何干扰。

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石墨炉原子吸收光谱法测定食品中的铅和镉

幸运8平台彩票本实验的研究重点在于采用石墨炉原子吸收光谱法对各类食品样品中的铅和镉进行测定。

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石墨炉原子吸收分光光度法测定食用油脂中的有毒痕量金属

本文用石墨炉原子吸收光谱法对食用油中的砷,铅和镉进行了分析。 优化了最佳热解和雾化温度, 并对检出限, 质量控制(QC) 检查和回收率进行了研究,以便建立一个快速准确的方法。

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石墨炉原子吸收分析食用油中痕量有害金属元素

本文报道了无需消解、石墨炉原子吸收GFAAS直接进样分析食用油的方法。

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石墨炉原子吸收法直接进样测定石脑油中的砷

本文介绍了使用石墨炉原子吸收法直接进样技术检测石脑油中的砷。

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石墨炉原子吸收法直接进样测定石脑油中的重金属

幸运8平台彩票本文介绍了使用石墨炉原子吸收法直接进样技术检测石脑油中的重金属。

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采用带有纵向塞曼扣背景技术的THGA 石墨炉法测定食品基体中的有毒、痕量及必须元素

此实验表明PinAAcle900T具有准确定量ppb低浓度范围的能力, 从而降低了ICP-MS用于测定食品中这些元素的必要性。

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采用微波消解及快速 自动进样器火焰原子吸收光谱法测定新鲜和干果中的微量营养元素

幸运8平台彩票幸运8平台彩票的PinAAcle900系列的原子吸收光谱仪能快速有效分析新鲜和干水果中宽浓度范围的铜,铁,镁,锰,锌,钾,钠和钙的含量。

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采用微波消解火焰原子吸收光谱法及FAST火焰自动进样器测定强化早餐谷物中的微量营养元素

幸运8平台彩票这项工作表明幸运8平台彩票的PinAAcle900系列的原子吸收光谱仪能快速有效分析谷物早餐中宽浓度范围的铜,铁,镁,锰,锌,钾,钠和钙的含量。

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采用火焰原子吸收光谱法和FAST火焰自动进样器通过提升样品通量对牛奶中的微量营养元素进行测定

幸运8平台彩票我们证明了幸运8平台彩票的PinAAcle900系列原子吸收光谱仪(火焰操作模式) 连同快速火焰自动进样附件能对各种乳制品中的营养元素进行测定。

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采用石墨炉原子吸收光谱法测定不同乳制品中的铅

幸运8平台彩票本文建立了一种简单的采用直接稀释的方法用于样品的制备,然后采用石墨炉原子吸收光谱法进行自动分析。这种方法最大限度减少了样品制备的时间,并减少了潜在污染的来源,而且保证的分析的速度。

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应用简报

萃取富集- 石墨炉原子吸收法 — 测定碳酸锂生产企业排放废水中的Tl含量

幸运8平台彩票《GB 31573-2015 无机化学工业污染物排放标准》中规定了,涉铊的无化合物工业企业排放废水中铊的限量值为0.005 mg/L。本文利用 PerkinElmer PinAAcle™ 900 AAS对碳酸锂生产企业的废水样品中的Tl含量进行测定。

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技术说明

Analytical Quality with Genuine PerkinElmer Graphite Parts

幸运8平台彩票The production of high-quality graphite components for atomic absorption spectroscopy requires stringent quality control. To ensure high quality and consistency, a specific high-density base graphite material has been developed for use with PerkinElmer graphite furnace systems.

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指南

Atomic Spectroscopy, A Guide to Selecting the Appropriate Technique and System

This guide provides a basic overview of the most commonly used atomic spectroscopy techniques and provides the information necessary to help you select the one that best suits your specific needs and applications.

PDF 1 MB
PinAAcle 500/900 AA Spectrometers - Preparing Your Lab

This document provides detailed instructions regarding the space, accessories and utilities required to operate PerkinElmer’s PinAAcle family of atomic absorption (AA) spectrometers (500 and 900 series) and other major AA accessories.

PDF 1 MB

目录

Atomic Spectroscopy 2018-2019 Consumables & Supplies Catalog

With instruments that are the industry standard worldwide, PerkinElmer accessories, consumables, methods and application support meet the most demanding requirements and are the preferred choice in thousands of laboratories globally.

PDF 8 MB