Guobin Liu
Biographic Data
| ID | 6475599 |
|---|---|
| NAME | Guobin Liu |
| GIVEN NAMES | Guobin |
| FAMILY NAME | Liu |
| SIGNATURE | LIU G |
| AFFILIATIONS | Chinese Academy of Sciences |
| ORCID | 0000-0002-6598-8545 |
| VERIFIED | Yes |
| TOTAL WORKS | 15 |
| TOTAL CITATIONS | 2 |
| AUTHOR COUNT | 15 |
| EDITOR COUNT | 0 |
| FIRST PUBLICATION YEAR | 2014 |
| LATEST PUBLICATION YEAR | 2026 |
| H-INDEX | 1 |
Response of Plant–Soil–Microbe System to Organic Fertilization in the Composite Soils of Pisha Sandstone and Aeolian Sand
Aeolian sands are characterized by loose structure and poor water and nutrient retention. Incorporating Pisha sandstone into weathered sandy soils improves texture, water‐holding capacity and cation exchange capacity, potentially reshaping microbial communities and crop performance. However, the role of organic fertilization in such composite soils remains underexplored. We conducted an eight‐month pot experiment in the Mao Wusu Desert with Brass…
Construction of a Comprehensive Root Parameter to Reflect the Effect of Plant Root Systems on Soil Erosion
The importance of plant root systems in reducing soil erosion is well established; however, existing evaluation approaches based on individual root traits often do not adequately represent the complexity of root–soil interactions. To develop a comprehensive parameter that reflects the effects of plant root systems on soil erosion processes, eight representative herbaceous species from different successional stages were selected from the Chinese L…
Effects of Vegetation Restoration on Rill Erosion on the Chinese Loess Plateau
Accurately describing rill erosion is important for building physical process models of soil erosion. Vegetation restoration may lead to differences in soil properties and root characteristics, and thus likely affects the rill erosion process to flowing water erosion, reflected by rill erodibility (Kr) and critical shear stress ( τ c ). However, few studies have been conducted to evaluate this effect of vegetation restoration on the Loess Plateau…
Long‐Term Nitrogen and Phosphorus Fertilization Promote Organic Carbon Sequestration in Agricultural Soils by Regulating Crop Root Exudates and Carbon Functional Gene Abundance
Root exudates significantly influence soil organic carbon (SOC) formation and persistence. However, how fertilizer application regulates microbial‐mediated processes to link root‐derived carbon dynamics with long‐term SOC sequestration remains to be elucidated. This study was carried out on loess hill farmland with 26 years of nitrogen (N) and phosphorus (P) fertilization. We examined root exudates, soil C fractions, and microbial functional gene…
Discriminatory Value and Validation of a Risk Prediction Model Based on Serum Cytokines in Pediatric Acute Appendicitis: A Single-Center Experience of 483 Cases
Objectives : Pediatric acute appendicitis (AA) is one of the most prevalent acute abdominal conditions in pediatric surgery. Children with complicated acute appendicitis (CA) may need timely surgical decisions and have a worse prognosis. In this study, we explored the risk factors and developed a predictive model for complicated AA in children. Methods : A retrospective analysis was conducted on patients data from those hospitalized for acute app…
Converting croplands into perennials may contribute to the deep soil nitrogen (N) accumulation in N‐limited region: Evidence from the arid and semi‐arid Chinese Loess Plateau
Converting degraded croplands into perennials has been proposed as an effective method of soil N sequestration, however, the dynamics of deep soil N (>100 cm) following cropland conversion are not well understood. In this study, we synthesized 3049 observations to detect the changes in deep soil N content following cropland conversion on the arid and semiarid Loess Plateau. Our results showed that converting croplands into perennials significantl…
Role of soil biotic and abiotic properties in plant community composition in response to nitrogen addition
Nutrient addition can alter plant–soil‐microbe interactions. However, knowledge remains limited about how the soil biotic and abiotic properties drive changes in plant community composition and diversity after nitrogen (N) addition. In this study, four N addition rates (N0, N3, N6, and N9: 0, 3, 6, and 9 g N m −2 yr −1 ) were applied to a grassland community on the Loess Plateau (China) to evaluate the response of plant community biomass, evennes…
Ecoenzymatic stoichiometry and nutrient limitation under a natural secondary succession of vegetation on the Loess Plateau, China
Soil ecoenzymatic stoichiometry reflects the nutrient flow of ecosystems. While knowledge exists on how the secondary succession of plants affects soil physicochemical properties and soil ecoenzymatic activity, less is known about how soil ecoenzymatics change during this process. We investigated five typical stages of the entire succession process of vegetation on the Loess Plateau, China. These stages included: (1) farmland stage (0 years), (2)…
Land‐use conversion changes deep soil organic carbon stock in the Chinese Loess Plateau
Land‐use change is a key factor driving changes in soil organic carbon (SOC) sequestration worldwide. However, the changes in deep (>100 cm depth) SOC stock following land‐use conversion have not been fully elucidated. In this study, to determine the changes in deep SOC stock (to a depth of 400 cm) resulting from conversion of cropland to woodland, shrubland and grassland on the Chinese Loess Plateau, 469 observations from peer‐reviewed publicati…
Soil organic carbon sequestration and its stability after vegetation restoration in the Loess Hilly Region, China
Vegetation restoration is widely recognized as a way to improve soil organic carbon (SOC) stock. However, whether these recovered carbons are stable is yet largely uncertain. Thus, we determined the sequestration and stability of SOC in soils with three different types ( Caragana korshinskii (CA) aged for 10, 20, 36, and 47 years, Hippophae rhamnoides (HR) aged for 5, 10, 20, and 30 years, and Robinia pseudoacacia (RP) aged for 5, 10, 20, 37, and…
Cropland abandonment altered grassland ecosystem carbon storage and allocation and soil carbon stability in the Loess Hilly Region, China
Determining changes in grassland ecosystem carbon (C) storage and soil C stability after cropland abandonment is important for estimating the regional C budget and global C cycle. However, the understanding of ecosystem C storage and allocation and soil C stability along the grassland restoration chronosequence is insufficient. Thus, grasslands with different recovery years (0, 2, 5, 8, 11, 15, 18, 26, and 30 years) were chosen to monitor the dyn…
Participants’ livelihoods compatible with conservation programs: Evidence from China’s grain-for-green program in northern Shaanxi Province
Effects of national ecological restoration projects on carbon sequestration in China from 2001 to 2010
Significance China has launched six key ecological restoration projects since the late 1970s, but the contribution of these projects to terrestrial C sequestration remains unknown. In this study we examined the ecosystem C sink in the project area (∼16% of the country’s land area) and evaluated the project-induced C sequestration. The total annual C sink in the project area between 2001 and 2010 was estimated to be 132 Tg C per y, over half of wh…
Land-Use Conversion Changes the Multifractal Features of Particle-Size Distribution on the Loess Plateau of China
Analyzing the dynamics of soil particle-size distributions (PSDs), soil nutrients, and erodibility are very important for understanding the changes of soil structure and quality after long-term land-use conversion. We applied multifractal Rényi spectra (Dq) and singularity spectra (f(α)) to characterize PSDs 35 years after conversions from cropland to shrubland with Caragana microphylla (shrubland I), shrubland with Hippophae rhamnoides (shrublan…
Land‐use conversion and changing soil carbon stocks in C hina's ‘Grain‐for‐Green’ Program: A synthesis
The establishment of either forest or grassland on degraded cropland has been proposed as an effective method for climate change mitigation because these land use types can increase soil carbon (C) stocks. This paper synthesized 135 recent publications (844 observations at 181 sites) focused on the conversion from cropland to grassland, shrubland or forest in C hina, better known as the ‘Grain‐for‐Green’ Program to determine which factors were dr…
Land‐use conversion and changing soil carbon stocks in C hina's ‘Grain‐for‐Green’ Program: A synthesis
The establishment of either forest or grassland on degraded cropland has been proposed as an effective method for climate change mitigation because these land use types can increase soil carbon (C) stocks. This paper synthesized 135 recent publications (844 observations at 181 sites) focused on the conversion from cropland to grassland, shrubland or forest in C hina, better known as the ‘Grain‐for‐Green’ Program to determine which factors were dr…
Land-Use Conversion Changes the Multifractal Features of Particle-Size Distribution on the Loess Plateau of China
Analyzing the dynamics of soil particle-size distributions (PSDs), soil nutrients, and erodibility are very important for understanding the changes of soil structure and quality after long-term land-use conversion. We applied multifractal Rényi spectra (Dq) and singularity spectra (f(α)) to characterize PSDs 35 years after conversions from cropland to shrubland with Caragana microphylla (shrubland I), shrubland with Hippophae rhamnoides (shrublan…
Effects of national ecological restoration projects on carbon sequestration in China from 2001 to 2010
Significance China has launched six key ecological restoration projects since the late 1970s, but the contribution of these projects to terrestrial C sequestration remains unknown. In this study we examined the ecosystem C sink in the project area (∼16% of the country’s land area) and evaluated the project-induced C sequestration. The total annual C sink in the project area between 2001 and 2010 was estimated to be 132 Tg C per y, over half of wh…
Soil organic carbon sequestration and its stability after vegetation restoration in the Loess Hilly Region, China
Vegetation restoration is widely recognized as a way to improve soil organic carbon (SOC) stock. However, whether these recovered carbons are stable is yet largely uncertain. Thus, we determined the sequestration and stability of SOC in soils with three different types ( Caragana korshinskii (CA) aged for 10, 20, 36, and 47 years, Hippophae rhamnoides (HR) aged for 5, 10, 20, and 30 years, and Robinia pseudoacacia (RP) aged for 5, 10, 20, 37, and…
Cropland abandonment altered grassland ecosystem carbon storage and allocation and soil carbon stability in the Loess Hilly Region, China
Determining changes in grassland ecosystem carbon (C) storage and soil C stability after cropland abandonment is important for estimating the regional C budget and global C cycle. However, the understanding of ecosystem C storage and allocation and soil C stability along the grassland restoration chronosequence is insufficient. Thus, grasslands with different recovery years (0, 2, 5, 8, 11, 15, 18, 26, and 30 years) were chosen to monitor the dyn…
Participants’ livelihoods compatible with conservation programs: Evidence from China’s grain-for-green program in northern Shaanxi Province
Ecoenzymatic stoichiometry and nutrient limitation under a natural secondary succession of vegetation on the Loess Plateau, China
Soil ecoenzymatic stoichiometry reflects the nutrient flow of ecosystems. While knowledge exists on how the secondary succession of plants affects soil physicochemical properties and soil ecoenzymatic activity, less is known about how soil ecoenzymatics change during this process. We investigated five typical stages of the entire succession process of vegetation on the Loess Plateau, China. These stages included: (1) farmland stage (0 years), (2)…
Land‐use conversion changes deep soil organic carbon stock in the Chinese Loess Plateau
Land‐use change is a key factor driving changes in soil organic carbon (SOC) sequestration worldwide. However, the changes in deep (>100 cm depth) SOC stock following land‐use conversion have not been fully elucidated. In this study, to determine the changes in deep SOC stock (to a depth of 400 cm) resulting from conversion of cropland to woodland, shrubland and grassland on the Chinese Loess Plateau, 469 observations from peer‐reviewed publicati…
Role of soil biotic and abiotic properties in plant community composition in response to nitrogen addition
Nutrient addition can alter plant–soil‐microbe interactions. However, knowledge remains limited about how the soil biotic and abiotic properties drive changes in plant community composition and diversity after nitrogen (N) addition. In this study, four N addition rates (N0, N3, N6, and N9: 0, 3, 6, and 9 g N m −2 yr −1 ) were applied to a grassland community on the Loess Plateau (China) to evaluate the response of plant community biomass, evennes…
Converting croplands into perennials may contribute to the deep soil nitrogen (N) accumulation in N‐limited region: Evidence from the arid and semi‐arid Chinese Loess Plateau
Converting degraded croplands into perennials has been proposed as an effective method of soil N sequestration, however, the dynamics of deep soil N (>100 cm) following cropland conversion are not well understood. In this study, we synthesized 3049 observations to detect the changes in deep soil N content following cropland conversion on the arid and semiarid Loess Plateau. Our results showed that converting croplands into perennials significantl…
Effects of Vegetation Restoration on Rill Erosion on the Chinese Loess Plateau
Accurately describing rill erosion is important for building physical process models of soil erosion. Vegetation restoration may lead to differences in soil properties and root characteristics, and thus likely affects the rill erosion process to flowing water erosion, reflected by rill erodibility (Kr) and critical shear stress ( τ c ). However, few studies have been conducted to evaluate this effect of vegetation restoration on the Loess Plateau…
Long‐Term Nitrogen and Phosphorus Fertilization Promote Organic Carbon Sequestration in Agricultural Soils by Regulating Crop Root Exudates and Carbon Functional Gene Abundance
Root exudates significantly influence soil organic carbon (SOC) formation and persistence. However, how fertilizer application regulates microbial‐mediated processes to link root‐derived carbon dynamics with long‐term SOC sequestration remains to be elucidated. This study was carried out on loess hill farmland with 26 years of nitrogen (N) and phosphorus (P) fertilization. We examined root exudates, soil C fractions, and microbial functional gene…
Discriminatory Value and Validation of a Risk Prediction Model Based on Serum Cytokines in Pediatric Acute Appendicitis: A Single-Center Experience of 483 Cases
Objectives : Pediatric acute appendicitis (AA) is one of the most prevalent acute abdominal conditions in pediatric surgery. Children with complicated acute appendicitis (CA) may need timely surgical decisions and have a worse prognosis. In this study, we explored the risk factors and developed a predictive model for complicated AA in children. Methods : A retrospective analysis was conducted on patients data from those hospitalized for acute app…
Response of Plant–Soil–Microbe System to Organic Fertilization in the Composite Soils of Pisha Sandstone and Aeolian Sand
Aeolian sands are characterized by loose structure and poor water and nutrient retention. Incorporating Pisha sandstone into weathered sandy soils improves texture, water‐holding capacity and cation exchange capacity, potentially reshaping microbial communities and crop performance. However, the role of organic fertilization in such composite soils remains underexplored. We conducted an eight‐month pot experiment in the Mao Wusu Desert with Brass…
Construction of a Comprehensive Root Parameter to Reflect the Effect of Plant Root Systems on Soil Erosion
The importance of plant root systems in reducing soil erosion is well established; however, existing evaluation approaches based on individual root traits often do not adequately represent the complexity of root–soil interactions. To develop a comprehensive parameter that reflects the effects of plant root systems on soil erosion processes, eight representative herbaceous species from different successional stages were selected from the Chinese L…
Environmental Science (10 works) · Soil Carbon and Nitrogen Dynamics (10 works) · Agronomy (9 works) · Soil Science (8 works) · Soil water (8 works) · Biology (7 works) · Ecology (7 works) · Carbon sequestration (6 works) · Ecosystem (6 works) · Geography (5 works)