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- W2016347959 abstract "Abstract Organic compounds found in living plants and modern soils in different bioclimatic areas are important in understanding the paleoenvironmental implications of the organic matter signals from geological records. Using GC–MS techniques, a series of biomarkers, mainly including n -alkanes and n -alkan-2-ones, were identified from the typical plants (e.g. broadleaf-deciduous trees and conifers), and the soils collected from Xinglong Mountain, a transitional area between Tibetan and Loess Plateaus. The C 15 –C 33 n -alkane homologues were present in all samples. Typically, C 27 or C 29 n -alkanes were most abundant in tree samples and C 31 was most abundant in grasses samples. Meanwhile, the soil samples were mainly dominated by C 29 and C 31 homologues. The n -alkan-2-ones showed a strong odd-over-even predominance of carbon numbers. C 23 , C 25 or C 29 n -alkan-2-one homologues were most abundant in plant samples, while C 27 or C 29 was abundant in soils samples. The lipid biomarker distribution patterns of all the plants and soil samples suggest that the vegetation is a primary source of organic matter for the soils, and that reprocessing of microbes and physicochemical reactions in the soil played an important role in the degradation of organic matter. Research has advanced knowledge about transformation of biomarkers in the plants (organic matter)–microbes–forest system. It also can help reconstruct the process of plant successions recorded by the lipids." @default.
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- W2016347959 date "2010-05-01" @default.
- W2016347959 modified "2023-10-11" @default.
- W2016347959 title "Biomarkers of modern plants and soils from Xinglong Mountain in the transitional area between the Tibetan and Loess Plateaus" @default.
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- W2016347959 doi "https://doi.org/10.1016/j.quaint.2009.12.009" @default.
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