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Featured researches published by Lanlan Du.


Science of The Total Environment | 2017

Temperature sensitivity of soil respiration: Synthetic effects of nitrogen and phosphorus fertilization on Chinese Loess Plateau.

Rui Wang; Qiqi Sun; Ying Wang; Qingfang Liu; Lanlan Du; Man Zhao; Xin Gao; Yaxian Hu; Shengli Guo

Nitrogen (N) and phosphorus (P) fertilization has the potential to alter soil respiration temperature sensitivity (Q10) by changing soil biochemical and crop physiological process. A four-year field experiment was conducted to determine how Q10 responded to these biochemical and physiological changes in rain-fed agro-ecosystems on the semi-arid Loess Plateau. Soil respiration, as well as biotic and abiotic factors were measured in winter wheat (Triticum aestivum L.), with three fertilization treatments: (no fertilization (CK), 160kgNhm-1 (N), and 160kgNha-1 with 39kgPha-1 (N+P). Mean annual soil respiration rate (calculated by averaging the four years) in the N treatment and N+P treatment was 18% and 48% higher than that in the CK treatment, respectively; and it was increased by 26% (14%-48%) in the N+P treatment as compared with that in the N treatment. The decrease of Q10 in the N and N+P treatments against the CK treatment was not stable for each year, ranging from 0.01 to 0.28. The maximum decrease of Q10 in the N and N+P treatments was 10% and 15% in 2014-2015, while in other years the decrease of Q10 was numerical but not significant. Soil microbial biomass carbon (SMBC) was increased by 10% and 50%, dissolved organic carbon (DOC) was increased by 6% and 21%, and photosynthesis rate was increased ranging from 6% to 33% with N and N+P fertilization. The relative abundance of Acidobacteria, Actinobacteria and Chloroflexi were significantly higher by 32.9%-54.1% in N addition soils (N and N+P) compared to CK treatment, whereas additional P application into soils increased the relative abundance of the family Micrococcaceae, Nocardioidaceae and Chitinophagaceae. Soil respiration was positively related to SMBC, DOC and photosynthesis rate (p<0.05). However, variation in Q10 may be related to the increase of soil mineral N content and variation of the relative abundance of soil microbial community in our study. Nitrogen and additional phosphorus fertilization regimes affect soil respiration and temperature sensitivity differently.


PLOS ONE | 2015

Phosphorus Accumulation and Sorption in Calcareous Soil under Long-Term Fertilization

Rui Wang; Shengli Guo; Nana Li; Rujian Li; Yanjun Zhang; Jishao Jiang; Zhiqi Wang; Qingfang Liu; Defeng Wu; Qiqi Sun; Lanlan Du; Man Zhao

Application of phosphorus (P) fertilizers to P-deficient soils can also result in P accumulation. In this study, soil P status and P uptake by apple trees were investigated in 5-, 10-, and 15-year-old orchards in the semi-arid Loess Plateau, China, and subset soils with different soil P statuses (14–90 Olsen-P mg kg−1) were selected to evaluate the characteristic P adsorption. Due to the low P-use efficiency (4–6%), total soil P increased from 540 mg kg−1 to 904 mg kg−1, Olsen-P ranged from 3.4 mg kg−1 to 30.7 mg kg−1, and CaCl2-P increased from less than 0.1 mg kg−1 to 0.66 mg kg−1 under continuous P fertilization. The P sorption isotherms for each apple orchard were found to fit the Langmuir isotherm model (R 2 = 0.91–0.98). K (binding energy) and Q m (P sorption maximum) decreased, whereas DPS (degree of phosphorus sorption) increased with increasing P concentration. CaCl2-P increased significantly with the increase of Olsen-P, especially above the change point of 46.1 mg kg−1. Application of surplus P could result in P enrichment in P-deficient soil which has high P fixation capacity, thus posing a significant environmental risk.


Ecological Engineering | 2015

Soil organic carbon sequestration potential of artificial and natural vegetation in the hilly regions of Loess Plateau

Zhiqi Wang; Shengli Guo; Qiqi Sun; Nana Li; Jishao Jiang; Rui Wang; Yanjun Zhang; Qingfang Liu; Defeng Wu; Rujian Li; Lanlan Du; Man Zhao


Soil & Tillage Research | 2017

Soil organic carbon on the fragmented Chinese Loess Plateau: Combining effects of vegetation types and topographic positions

Zhiqi Wang; Yaxian Hu; Rui Wang; Shengli Guo; Lanlan Du; Man Zhao; Zhihong Yao


Nutrient Cycling in Agroecosystems | 2015

Tree-scale spatial variation of soil respiration and its influence factors in apple orchard in Loess Plateau

Rui Wang; Shengli Guo; Jishao Jiang; Defeng Wu; Nana Li; Yanjun Zhang; Qingfang Liu; Rujian Li; Zhiqi Wang; Qiqi Sun; Lanlan Du; Man Zhao


Soil & Tillage Research | 2016

Effects of crop types and nitrogen fertilization on temperature sensitivity of soil respiration in the semi-arid Loess Plateau

Rui Wang; Zhiqi Wang; Qiqi Sun; Man Zhao; Lanlan Du; Defeng Wu; Rujian Li; Xin Gao; Shengli Guo


Ecological Engineering | 2017

Soil CO2 emissions from different slope gradients and positions in the semiarid Loess Plateau of China

Zhiqi Wang; Rui Wang; Qiqi Sun; Lanlan Du; Man Zhao; Yaxian Hu; Shengli Guo


Journal of Arid Environments | 2016

Litter production rates and soil moisture influences interannual variability in litter respiration in the semi-arid Loess Plateau, China

Yanjun Zhang; Zhuoting Gan; Rujian Li; Rui Wang; Nana Li; Man Zhao; Lanlan Du; Shengli Guo; Jishao Jiang; Zhiqi Wang


Biogeosciences | 2015

Soil moisture influence on the interannual variation in temperature sensitivity of soil organic carbon mineralization in the Loess Plateau

Yanjun Zhang; Shengli Guo; Man Zhao; Lanlan Du; Rujian Li; Jishao Jiang; Ruili Wang; Nana Li


Geoderma | 2018

Temperature sensitivity of soil respiration to nitrogen and phosphorous fertilization: Does soil initial fertility matter?

Qiqi Sun; Rui Wang; Ying Wang; Lanlan Du; Man Zhao; Xin Gao; Yaxian Hu; Shengli Guo

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Qiqi Sun

Chinese Academy of Sciences

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Jishao Jiang

Chinese Academy of Sciences

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