久久精品91久久香蕉加勒比 I av网站在线观看免费 I a欧美爰片久久毛片a片 I 亚洲男人网站 I 中文字幕天天躁日日躁狠狠躁 I 日本丰满护士bbwbbw I 日韩欧美黄色动漫 I a毛片视频 I 亚洲午夜国产成人av电影 I 伊人久久综合无码成人网 I 欧洲精品免费一区二区三区 I 爱爱视频日韩 I 欧美精品在线观看一区 I 国产成人专区 I 91干干干 I 大战丰满无码人妻50p I 久久精品久久精品久久 I 亚洲精品久久久久久国 I 亚洲三级理论 I 91福利一区二区 I 日韩色av色资源 I 秘书tk一视频vk I 亚洲欧美自偷自拍视频图片 I 丝袜色综合 I 国产真实younv在线 I 少妇被躁爽到高潮 I av成人老司机 I 一级片手机免费看

您好,歡迎進入河南榮程聯合科技有限公司網站!
產品列表

—— PROUCTS LIST

技術文章Article 當前位置:首頁 > 技術文章 > 水土平衡:半干旱環境中原位不飽和地區水穩定同位素的測量

水土平衡:半干旱環境中原位不飽和地區水穩定同位素的測量

點擊次數:2894 更新時間:2016-04-06

液態水同位素分析儀.jpg

摘要:
      在納米比亞Cuvelai–Etosha半干盆地采用液體水同位素分析儀(LGR可調節離軸積分腔輸出光譜技術)及商用土壤氣體探頭測量土壤水分的穩定同位素(氘,2H, oxygen-18, 18O)。結果證實了原位測量土氣水分穩定同位素的可行性。在研究區域獲得了合理而準確的高時空分辨率數據。測量結果與低溫真空萃取及后腔衰蕩激光光譜學同位素分析的實驗室數據一致。
      在2014年6月-10月連續兩次野外活動經過140次測量,原位同位素數據的漂移和跨度修正后的精度分別為:δ2H:1.8,δ18O:0.48 ‰ 。使用質量檢查標準得到平均測量準確結果分別為δ2H :5 ,δ18O :0.3 ‰。定量同位素剖面深度來計算土壤水分平衡。水蒸發量占總地表水蒸發量72-92%。降雨后蒸發量立即降低至35-50%范圍。激光光譜儀的原位系統存在與環境條件相關的潛在局限性,可通過使用溫度調節室zui小化。而且使用烘箱預先干燥的土壤原料,土壤的理化性質(即粘土礦物)可能會使系統適用性受到限制。通過改良校準程序以及進一步研究影響土壤水分同位素比值的數據,可減少原位系統的不確定性,尤其在低含水量條件下。此外,無法從數據推斷出土壤呼吸二氧化碳對根區同位素值的影響。

引用文獻:

Gaj, M., Beyer, M., Koeniger, P., Wanke, H., Hamutoko, J., and Himmelsbach, T.: In situ unsaturated zone water stable isotope (2H and 18O) measurements in semi-arid environments: a soil water balance, Hydrol. Earth Syst. Sci., 20, 715-731, doi:10.5194/hess-20-715-2016, 2016.

 

【英文】

In situ unsaturated zone water stable isotope (2H and 18O) measurements in semi-arid environments: a soil water balance

Marcel Gaj1,2, Matthias Beyer1, Paul Koeniger1, Heike Wanke3, Josefina Hamutoko3, and Thomas Himmelsbach1 1Federal Institue for Geosciences and Natural Resources (BGR), Stilleweg 2, Hanover, Germany
2Chair of Hydrology, Faculty of Environment and Natural Resources, University of Freiburg, Fahnenbergplatz, 79098 Freiburg, Germany
3Department of Geology, University of Namibia (UNAM), Windhoek, Namibia

Received: 01 Apr 2015 – Published in Hydrol. Earth Syst. Sci. Discuss.: 23 Jun 2015
Revised: 22 Dec 2015 – Accepted: 25 Jan 2016 – Published: 17 Feb 2016

 

Abstract.

Stable isotopes (deuterium, 2H, and oxygen-18, 18O) of soil water were measured in the field using a liquid water isotope analyzer (tunable off-axis integrated cavity output spectroscope, OA-ICOS, LGR) and commercially available soil gas probes (BGL-30, UMS, Munich) in the semi-arid Cuvelai–Etosha Basin (CEB), Namibia. Results support the applicability of an in situ measurement system for the determination of stable isotopes in soil pore water. High spatial and temporal resolution was achieved in the study area with reasonable accuracy and measurements were in agreement with laboratory-based cryogenic vacuum extraction and subsequent cavity ring-down laser spectroscopic isotope analysis (CRDS, L2120-i, Picarro Inc.). After drift and span correction of the in situ isotope data, precision for over 140 measurements taken during two consecutive field campaigns (June and November 2014) was 1.8 and 0.48 ‰ for δ2H and δ18O, respectively. Mean measurement trueness is determined using quality check standards and was 5 and 0.3 ‰ for δ2H and δ18O, respectively. The isotope depth profiles are used quantitatively to calculate a soil water balance. The contribution of transpiration to total evapotranspiration ranged between 72 and 92 %. Shortly after a rain event, the contribution of transpiration was much lower, at 35 to 50 %. Potential limitations of such an in situ system are related to environmental conditions which could be minimized by using a temperature-controlled chamber for the laser spectrometer. Further, the applicability of the system using previously oven-dried soil material might be limited by physicochemical soil properties (i.e., clay minerals). Uncertainty in the in situ system is suggested to be reduced by improving the calibration procedure and further studying fractionation effects influencing the isotope ratios in the soil water, especially at low water contents. Furthermore, the influence of soil-respired CO2 on isotope values within the root zone could not be deduced from the data.

Citation: Gaj, M., Beyer, M., Koeniger, P., Wanke, H., Hamutoko, J., and Himmelsbach, T.: In situ unsaturated zone water stable isotope (2H and 18O) measurements in semi-arid environments: a soil water balance, Hydrol. Earth Syst. Sci., 20, 715-731, doi:10.5194/hess-20-715-2016, 2016.

版權所有 © 2025 河南榮程聯合科技有限公司  ICP備案號:豫ICP備15032798號-1
主站蜘蛛池模板: 日本真人做爰免费视频120秒 | 国产精品爽爽va在线观看无码 | 40岁成熟女人牲交片20分钟 | 97天堂国产在线观看 | 欧美午夜理伦三级在线观看 | 97资源共享在线视频 | 成人无码av片在线观看蜜桃 | 国产无遮挡又黄又爽又色 | 亚洲伊人久久综合网站 | 产精品无码久久_亚洲国产精 | 亚洲一区二区三区四区五区六区 | 国产午夜男女爽爽爽爽爽 | 国产婷婷色一区二区三区在线 | 国产无套中出学生姝 | 色天天躁夜夜躁天干天干 | 日本精品少妇一区二区三区 | 国产丝袜美女一区二区三区 | 国产成人无码午夜视频在线观看 | 欧美日韩中文国产一区发布 | 国产人妻大战黑人第1集 | 亚洲欧美日韩一区二区 | 亚洲日本一区二区三区在线不卡 | 国产精品视频免费一区二区 | 亚洲日韩在线观看免费视频 | 午夜一区欧美二区高 | 超清精品丝袜国产自在线拍 | 亚洲人成网站在线在线观看 | 中文日产幕无线码6区收藏 六月丁香亚洲综合在线视频 | 日本高清动作片www网站免费 | 少妇人妻大乳在线视频不卡 | 少妇爆乳无码av无码波霸 | 熟女丰满老熟女熟妇 | 女人大荫蒂毛茸茸视频 | 成人亚洲精品久久久久软件 | 国产日韩欧美不卡在线二区 | 欧美 亚洲 另类 丝袜 自拍 动漫 | 国产成人精品亚洲一区 | 嫩草伊人久久精品少妇av | 久久99精品久久只有精品 | 人人妻人人澡人人爽国产 | 欧美丰满熟妇bbbbbb |