LIAISON™: Fully-Automated Universal Interface for Bulk 13C High-Precision Isotope Analysis using Cavity Ring-Down Spectroscopy
Describes application and function of a the LIAISON, a new Picarro universal interface for high throughput analysis.
Describes application and function of a the LIAISON, a new Picarro universal interface for high throughput analysis.
While stable isotope techniques have been previously applied to partition evapotranspiration (ET) fluxes in crops, it has only recently become possible to take in situ, long-term, continuous (every 10 seconds) measurements of stable water vapor isotopologues. A Picarro water vapor isotope analyzer (L1115-i) based on cavity ringdown spectroscopy (CRDS) was recently…
The regulation of Earth’s climate and its ability to sustain life are critically linked to water as it exists in all three of its phases (gas, liquid, and solid). Earth’s water cycle, its movement between the hydrosphere, biosphere, and the atmosphere, and how it undergoes phase changes, is incredibly complex. While we continue to gain insight into the water cycle, there remains…
The quantification of fugitive methane emissions from extended sources such as landfills is problematic due to the high temporal variability and spatial heterogeneity of the emission. Additionally, the relationship between the emission rate and the gas concentration at a given location is dependent on the meteorological conditions and local topography, preventing accurate quantification of…
Cavity Ring-Down spectroscopy is becoming a gold standard for atmospheric monitoring. High sensitivity and precision coupled with low drift characteristics ensure optimal operation even in remote field stations or on aircraft and ships. However, current platforms have been limited to two or three species simultaneous observation. Research and development at Picarro have been focused on…
Hydrothermal fluids from two vent sites along the East Scotia Ridge, E2 and E9, were analyzed for their hydrogen and oxygen isotopic values using a Picarro L1115-i CRDS. The fluids display varying salinity, sulfate and hydrogen sulfide content. None of the samples analyzed in this work showed any signs of spectroscopic interference. Isotopic values of the fluids were combined with…
The world’s first continuous flow isotopic TIC/DOC-CRDS measurements are reported here with remarkable achieved precisions. A measurement precision of the isotopic ratio in the range of 0.2 ‰ to 0.4 ‰ was achieved in minutes of measurement time. Such precision readily distinguishes the isotopic DIC and DOC signatures from a set of three different streamwater samples collected from various…
Describes a field campaign wherein a Picarro water isotope analyzer was used to measure isotopes in water vapor over a corn field in China for the purpose of studying evapotranspiration. The Picarro sampled vapor along with a cold trap sampling system and the real-time Picarro data was compared to offline analysis of the trapped vapor.
The recent development of a field deployable water isotope analyzer using CRDS technology was used to directly measure the vapor isotopes in real time and at multiple heights above the crop canopy. This technique was coupled with additional samples gathered using conventional techniques and a new xylem water extracting apparatus developed by the IAEA.
In a paper published by the Integrated Carbon Observation System (ICOS), the drift performance of 47 Picarro analyzers of 3 different generations were compared (Yver Kowket al, Atmos. Meas. Tech. Discuss., 8, 4219–4272, 2015). The results show that methane drift (the minimum of the Allan standard deviation) was much better in first-generation G1000 analyzers.
…High-salinity waters such as Seawater poses an operational and maintenance challenge to the measurements of water stable isotopes via Cavity Ring-Down Spectroscopy. As liquid samples are evaporated in the vaporizer peripheral before being sent to the CRDS analyzer, salt precipitates accumulate in the vaporizer chamber. As a result, the sample-to-sample memory performance degrades over time…
Soil flux chamber measurements are a key tool for determining production and sequestration of direct and indirect greenhouse gases. The Picarro G2508 Cavity Ring-down Spectrometer radically simplifies soil flux analyses by providing simultaneous measurements of five gases: CO2, CH4, N2O, NH3, and H2O, and by ready field deployment. The Picarro Soil Flux Software (SFP) …
With a global warming potential of nearly 300, N2O is a critically important greenhouse gas, contributing about 5 % of the US total GHG emissions. Agriculture soil management practices are the dominant source of anthropogenic N2O emissions, contributing nearly 75 % of US N2O emissions. In urban areas, vehicle tailpipe emissions and waste water treatment plants are…
The necessity for constant monitoring of greenhouse gases (GHGs) is clearly evident now more than ever. Moreover, interpreting and understanding the processes that dictate the production and consumption of these gases will allow for proper management of GHGs in order to mitigate its detrimental climate effects. Presence of oxygen, or lack of it, is the driving force for determining pathways…
华盛顿大学的 Jeffrey Richey 教授及其同事在亚马逊河盆地探索碳循环
这个故事始于20多年前,当时Jeffrey Richey教授的研究小组开始考虑热带地区,特别是亚马逊河盆地,对全球碳循环的重要性。考虑到全球碳循环的“…
在 Picarro,我们喜欢跟随在项目中使用我们分析仪的科学家和研究小组来体验 Picarro 分析仪的多样化应用场景。下面的研究带我们回顾了德国 Alfred Wegener 研究所的 Polarstern 破冰船的航行。我们谨代表 Picarro 的全体员工,感谢 Jean-Louis Bonne …
CRDS 系统用于揭示在缺乏研究的环境中生态系统温室气体动态
监测恶劣和偏远环境生态系统中的温室气体通量对于提高我们对全球碳预算和氮预算的理解至关重要。新型高精度分析仪具有痕量气体检测功能和低功率激光器,为这些类型的应用提供了新的监测可能性。当与自动腔室系统结合使用时,这些分析仪可以提供丰富的温室气体排放数据集,从而揭示一些难以监控和理解的过程。在本次网络研讨会中,Christine O'Connell 博士(Silver Lab,Berkeley)将讨论 G2508 和 Eosense eosAC 呼吸室系统在波多黎各山地雨林中研究氧化还原和干旱环境的应用。Nick Nickerson 博士(Eosense)将继续讨论使用 Picarro GasScouter 气体浓度分析仪在离网型湿地部署中使用 eosAC 腔室系统,以及在沿海荒地/…
Picarro G2207-i 气体浓度与同位素分析仪将高精度和低漂移 O2 浓度测量与环境空气中的 δ18O 分析相结合,使其成为用于包括大气中氧监控等具有挑战性应用的理想选择,能够确定碳循环中所涉及的生物地球化学过程。
如果您想了解有关已停产型号的任何信息,请联系我们。
Model # | 产品名称 | 替代型号 # |
G2101-i | 二氧化碳同位素分析仪 | …
Picarro to Exhibit at ASA and CSSA Meeting 2018
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Picarro Exhibits at ASA and CSSA Meeting with Impressive Gas Concentration Product Offering on Display Santa Clara, CA — October 29, 2018 — Picarro Inc., a leading provider of gas concentration and stable isotope analyzers and systems for science and industrial applications, will once again be attending and exhibiting at the American… Picarro to Exhibit at Semicon Japan 2018
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Picarro Exhibits at Semicon Japan with NEW real-time Sample Sequencing Systems for continuous process monitoring of AMC Santa Clara, CA — December 5, 2018 — Picarro Inc., a leading provider of trace gas analyzers for a variety of air monitoring applications, will be exhibiting at Semicon Japan at the Tokyo… Picarro Celebrating Scientific Community at AGU 2018
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Picarro returns to the AGU Fall Meeting with an Impressive Product Offering for the Application Needs of the Research Community Santa Clara, CA — December 4, 2018 — Picarro Inc., a leading provider of gas concentration and stable isotope systems for for research and industrial applications, will… A high accuracy analyzer for airborne measurements of greenhouse gases (CO2 and CH4)
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Stable Isotope Ratios in Carbon and Water Pools and Fluxes in Old-Growth Forest
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董事会
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Alex BalkanskiPicarro 总裁兼首席执行官Alex Balkanski 是一位卓越的长期行业领导者,在提高收入和利润方面有着丰富的经验,同时也获得了客户满意度的认可。在 2013 年 11 月加入 Picarro 担任总裁兼首席执行官之前,Alex 是 Benchmark 的管理合伙人,并担任 Picarro 董事会成员。Alex 曾经领导 C-Cube 和 DiviCom,这两家公司推动了 MPEG 标准在消费电子和广播领域占据主导地位。Alex 于 1988 年创立了 C-Cube。1994 年,他将公司成功上市,并于 1998 年策划了 C-Cube 对 DiviCom 的收购。此前,他是 Ambarella(AMBA),Decru(被 Network Appliance 收购),Entrisphere(… China Science
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![]() 热气体,酷技术:测量火山的碳同位素
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火山具有令人惊叹的景象,也是大气中二氧化碳的主要来源。测量火山烟柱的碳同位素特征是一个技术难题,但其可以说明火山内部深层过程,可能有助于预测火山爆发。 我们录制了在 2018 年 7 月 26 日一个小时的网络研讨会,其中包括 John Stix(麦吉尔大学教授),Fiona D'Arcy(麦吉尔大学博士生)和 Gregor Lucic(Picarro 应用科学家)等专家,通过在野外现场部署 Picarro 仪器,他们展示了测量火山烟柱的可能性。如果您有兴趣测量火山灰和土壤气体的同位素组成,本网络研讨会适合您! 先进的飞行测量技术,用于定量甲烷排放
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甲烷是人类活动排放的第二大温室气体。自工业化时代以来,大气中甲烷浓度增加了三倍,由于这些长寿命温室气体的排放,造成了全球辐射强度增加 20% 左右。因此,必须量化甲烷来源,以便为未来减缓气候变化的政策提供信息。 我们录制了在 2016 年 11 月 3 日的一个小时的网络研讨会,由 Jeff Peischl(NOAA 研究员)和 David Kim-Hak(Picarro 产品经理)讨论了飞行中的甲烷浓度测量。Jeff 分享了他在量化水稻农业、垃圾填埋场、石油和天然气工业以及加利福尼亚州家畜以及美国几个主要页岩气生产区域甲烷排放方面的丰富经验。David 介绍了 Picarro 技术如何实现温室气体(GHG)的连续和飞行测量,包括… |