Arid
DOI10.1016/j.geoderma.2017.12.028
Lignin dynamics in secondary pasture soils of the South African Highveld
Koesters, Raimund1; Du Preez, Chris C.2; Amelung, Wulf1
通讯作者Koesters, Raimund
来源期刊GEODERMA
ISSN0016-7061
EISSN1872-6259
出版年2018
卷号319页码:113-121
英文摘要

Reseeding grasses into degraded cropland and using it as permanent secondary pasture may combat desertification and promote sequestration of soil organic carbon (SOC). Our objective was to assess the contribution of lignin and grass-derived carbon to the rates of SOC accrual upon such land-use change. We sampled secondary pastures of different age (1 to 31 years old), established on former degraded cropland at three agro-ecosystems in the semi-arid Highveld of South Africa; old degraded croplands and primary grassland used for cattle grazing served as controls. Topsoil samples (0-5 and 5-10 cm) were characterized by their natural C-13 and N-15 abundances and by their contents of lignin-derived phenols (VSC) after alkaline CuO oxidation. The results showed that the delta C-13 signature in secondary pasture soil was variable and not a sensitive indicator of land restoration in these sites. Soil delta N-15 values declined from 8 to 6 parts per thousand with increased duration of secondary pasture use and approached the values of the primary grassland, suggesting that N-use efficiency improved. The VSC contents increased in the surface soils and reached a new steady-state equilibrium after 38 years. Lignin sequestration was accelerated relative to total SOC in the 0-5 cm soil depth but delayed in the 5-10 cm soil depth, reflecting different amounts of depth-dependent inputs of plant debris into the pastures. Even if absolute VSC contents did not reach the respective concentrations in the primary grassland, the contribution of VSC to total SOC (g VSC kg(-1) C) was similar to that of the primary grassland. Decreasing ratios of syringyl to vanillyl structural units reflected that after 8-19 years all remaining lignin derived primarily from the new grassland vegetation. Lignin enhances SOC accumulation only in the very surface soil (0-5 cm) but not below this depth, rendering the restoration of subsoil C stocks difficult in these ecosystems.


英文关键词Lignin Stable isotopes Secondary pastures Soil regeneration Land use change Carbon sequestration
类型Article
语种英语
国家Germany ; South Africa
收录类别SCI-E
WOS记录号WOS:000426224800012
WOS关键词PARTICLE-SIZE FRACTIONS ; ORGANIC-CARBON DYNAMICS ; NATURAL-ABUNDANCE ; MATTER ; PLANT ; N-15 ; DECOMPOSITION ; GRASSLAND ; NITROGEN ; FOREST
WOS类目Soil Science
WOS研究方向Agriculture
资源类型期刊论文
条目标识符http://119.78.100.177/qdio/handle/2XILL650/209584
作者单位1.Rheinische Friedrich Wilhelms Univ Bonn, Inst Crop Sci & Resource Conservat Soil Sci & Soi, Nussallee 13, Bonn, Germany;
2.Univ Free State, Dept Soil Crop & Climate Sci, Bloemfontein, South Africa
推荐引用方式
GB/T 7714
Koesters, Raimund,Du Preez, Chris C.,Amelung, Wulf. Lignin dynamics in secondary pasture soils of the South African Highveld[J],2018,319:113-121.
APA Koesters, Raimund,Du Preez, Chris C.,&Amelung, Wulf.(2018).Lignin dynamics in secondary pasture soils of the South African Highveld.GEODERMA,319,113-121.
MLA Koesters, Raimund,et al."Lignin dynamics in secondary pasture soils of the South African Highveld".GEODERMA 319(2018):113-121.
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