validation and application of a cryogenic vacuum extraction system for soil and plant water extraction for isotope analysis
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2013
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Abstract
Stable isotopic analysis of water in plant, soil, and hydrological studies
often requires the extraction of water from plant or soil samples. Cryogenic
vacuum extraction is one of the most widely used and accurate extraction
methods to obtain such water samples. Here, we present a new design of a
cryogenic vacuum extraction system with 18 extraction slots and an
innovative mechanism to aerate the vacuum system after extraction. This
mobile and extendable multi-port extraction system overcomes the bottleneck
of time required for capturing unfractionated extracted water samples by
providing the possibility to extract a larger number of samples per day
simultaneously. The aeration system prevents the loss or mixture of water
vapor during defrosting by purging every sample with high-purity nitrogen
gas. A set of system functionality tests revealed that the extraction
device guarantees stable extraction conditions with no changes in the
isotopic composition of the extracted water samples. Surprisingly,
extractions of dried and rehydrated soils showed significant differences of
the isotopic composition of the added water and the extracts. This
observation challenges the assumption that cryogenic extraction systems to
fully extract soil water. Furthermore, in a plant water uptake study
different results for hydrogen and oxygen isotope data were obtained,
raising problems in the definition from which depths plants really take up
water. Results query whether the well-established and widely used cryogenic
vacuum distillation method can be used in a standard unified method of fixed
extraction times as it is often done.
| Reference Key |
orlowski2013journalvalidation
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|---|---|
| Authors | ;N. Orlowski;H.-G. Frede;N. Brüggemann;L. Breuer |
| Journal | arabic literature in the post-classical period |
| Year | 2013 |
| DOI |
10.5194/jsss-2-179-2013
|
| URL | |
| Keywords |
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