数字农科院2.0

Variations In The Profile Distribution And Protection Mechanisms Of Organic Carbon Under Long-Term Fertilization In A Chinese Mollisol

文献类型: 外文期刊

作者: Abrar, MM; Xu, MG; Shah, SAA; Aslam, MW; Aziz, T; Mustafa, A; Ashraf, MN; Zhou, BK; Ma, XZ

作者机构:

关键词: Long-Term Fertilization; Organic Carbon Distribution; Soc Fractionation; Stabilization Mechanisms; Subsoil; Soil Profile

期刊名称: SCIENCE OF THE TOTAL ENVIRONMENT

ISSN: 0048-9697

年卷期: 2020 年 723 卷

页码:

收录情况: JCR(2021版) ; EI(2021版)

摘要: Long term fertilization may have a significant effect on soil organic carbon (SOC) fractions and profile distribution. However, previous research mostly explored the SOC in the topsoil and provided little or no information about its distribution in deeper layers and various protection mechanisms particularly under long-term fertilization. The present study investigated the contents and profile distribution (0-100 cm) of distinct SOC protection mechanisms in the Mollisol (black soil) of Northeast China after 35 years of mineral and manure application. The initial Organic Matter content of the topsoil (0-20 cm) ranged from 26.4 to 27.0 g kg(-1) soil, and ploughing depth was up to 20 cm. A combination of physical-chemical fractionation methods was employed to study various SOC fractions. There were significant variations throughout the profile among the various fractions and protection mechanisms. In topsoil (to 40 cm), mineral plus manure fertilization (MNPK) increased the total SOC content and accounted for 16.15% in the 0-20 cm and 12.34% in the 20-40 cm layer, while the manure alone (M) increased the total SOC by 56.14%, 48.73% and 27.73% in the subsoil (40-60, 60-80 and 80-100 cm, respectively). Moreover, MNPK and M in the topsoil and subsoil, respectively increased the unprotected coarse particulate organic carbon (cPOC) (48% and 26%, respectively), physically protected micro-aggregate (mu agg) (20% and 18%, respectively) and occluded particulate organic carbon (iPOC) contents (279% and 93%, respectively) compared with the control (CK). A positive linear correlation was observed between total SOC and the cPOC, iPOC, physico-biochemically protected NH-mu Silt and physico-chemically protected H-mu Silt (p < 0.01) across the whole profile. Overall, physical, physico-biochemical and physico-chemical protection were the predominant mechanisms to sequester carbon in the whole profile, whereas the biochemical protection mechanisms were only relevant in the topsoil, thus demonstrating the differential mechanistic sensitivity of fractions for organic carbon cycling across the profile. (C) 2020 Elsevier B.V. All rights reserved.

分类号:

  • 相关文献

[1]Long-term fertilization affects functional soil organic carbon protection mechanisms in a profile of Chinese loess plateau soil. Syed Atizaz Ali Shah,Minggang Xu,Muhammad Mohsin Abrar,Adnan Mustafa,Shah Fahad,Tufail Shah,Syed Aizaz Ali Shah,Xueyun Yang,Wei Zhou,Shulan Zhang,Sun Nan,Weiqi Shi. 2021

[2]Carbon, nitrogen, and phosphorus stoichiometry mediate sensitivity of carbon stabilization mechanisms along with surface layers of a Mollisol after long-term fertilization in Northeast China. Muhammad Mohsin Abrar,Hu Xu,Tariq Aziz,Nan Sun,Adnan Mustafa,Muhammad Wajahat Aslam,Syed Atizaz Ali Shah,Khalid Mehmood,Baoku Zhou,Xingzhu Ma,Xianni Chen,Minggang Xu. 2021

[3]Optimizing The Positioning Of Soil M.oisture Monitoring Sensors In W inter Wheat Fields. Duan, Aiwang,Gao, Yang,Liang, Jing,Liang, Yueping,Mi, Zhaorong,Ning, Huifeng,Zeleke, Ketema Tilahun,Shen, Xiaojun,Wang, Guangshuai,Shen, Xiaojun,Zeleke, Ketema Tilahun,Zhang, Jiyang. 2018

[4]Effects Of Shallow Groundwater Table Fluctuations On Nitrogen In The Groundwater And Soil Profile In The Nearshore Vegetable Fields Of Erhai Lake, Southwest China. Zhang, D, Fan, MP, Liu, HB, Wang, R, Zhao, JX, Yang, YX, Cui, RY, Chen, AQ. 2020

[5]Source Identification of Heavy Metals in Surface Paddy Soils Using Accumulated Elemental Ratios Coupled with MLR. Jie Ma, Yali Chen, Liping Weng, Hao Peng, Zhongbin Liao, Yongtao Li. 2021

[6]Soil Survey Techniques Determine Nutrient S.tatus In Soil Profile A nd Metal Retention By Calcium Carbonate. Bashir, MA, Rehim, A, Liu, J, Imran, M, Liu, HB, Suleman, M, Naveed, S. 2019

[7]Quantitative source apportionment, risk assessment and distribution of heavy metals in agricultural soils from southern Shandong Peninsula of China. Haiwei Liu,Yan Zhang,Jiashuo Yang,Haiyun Wang,Yile Li,Yi Shi,Decheng Li,Peter E. Holm,Quan Ou,Wenyou Hu. 2021

[8]Vertical distribution and regulation of Olsen-phosphorus in 6-m soil profiles after farmland-to-apple orchard conversion on the Chinese Loess Plateau. Zhanjun Liu,Liyao Hou,Yuanjun Zhu,Xinpeng Xu. 2021

[9]Temporal and spatial variability of antibiotics in agricultural soils from Huang-Huai-Hai Plain, northern China. Zheng Pan,Side Yang,Lixia Zhao,Xiaojing Li,Liping Weng,Yang Sun,Yongtao Li. 2021

[10]Impact of tillage on the spatial distribution of CH4 and N2O in the soil profile of late rice fields. Feng J.,Yang T.,Li F.,Zhou X.,Xu C.,Fang F.. 2021

[11]Temporal and spatial variability of antibiotics in agricultural soils from Huang-Huai-Hai Plain, northern China. Zheng Pan,Side Yang,Lixia Zhao,Xiaojing Li,Liping Weng,Yang Sun,Yongtao Li. 2021

[12]Response of Soil Organic Carbon and Its Aggregate Fractions to Long-Term Fertilization in Irrigated Desert Soil of China. Chai Yan-jun,Zeng Xi-bai,Su Shi-ming,Bai Ling-yu,E Sheng-zhe,Huang Tao,Che Zong-xian. 2014

[13]Basic Soil Productivity of Spring Maize in Black Soil Under Long-Term Fertilization Based on DSSAT Model. Zha Yan,Wu Xue-ping,He Xin-hua,Zhang Hui-min,Gong Fu-fei,Cai Dian-xiong,He Xin-hua,Zhu Ping,Gao Hong-jun. 2014

[14]Soil Organic Carbon Accumulation Increases Percentage of Soil Olsen-P to Total P at Two 15-Year Mono-Cropping Systems in Northern China. Shen Pu,He Xin-hua,Xu Ming-gang,Zhang Hui-min,He Xin-hua,Peng Chang,Gao Hong-jun,Liu Hua,Xu Yong-mei,Qin Song,Xiao Hou-jun. 2014

[15]Nitrogen use efficiency in a wheat-corn cropping system from 15 years of manure and fertilizer applications. Duan, Yinghua,Xu, Minggang,Liu, Hongbin,Wang, Bairen,Gao, Suduan,Yang, Xueyun,Huang, Shaomin. 2014

[16]Changes in Organic Carbon Index of Grey Desert Soil in Northwest China After Long-Term Fertilization. Xu Yong-mei,Xu Ming-gang,Zhang Wen-ju,Jiang Gui-ying,Xu Yong-mei,Liu Hua,Wang Xi-he,Xu Yong-mei,Liu Hua,Wang Xi-he. 2014

[17]Organic amendments increase corn yield by enhancing soil resilience to climate change. Song, Zhenwei,Deng, Aixing,Zheng, Chengyan,Zhang, Weijian,Gao, Hongjun,Zhu, Ping,Peng, Chang,Mannaf, Md Abdul,Islam, Md Nurul. 2015

[18]Long-term organic and inorganic fertilizations enhanced basic soil productivity in a fluvo-aquic soil. Zha Yan,Wu Xue-ping,Gong Fu-fei,Xu Ming-gang,Zhang Hui-min,Cai Dian-xiong,Chen Li-ming,Huang Shao-min. 2015

[19]Effects of organic amendments on soil carbon sequestration in paddy fields of subtropical China. Xu, Minggang,Wang, Xiujun,Wang, Xiujun,Huang, Qinhai,Nie, Jun,Li, Zuzhang,Li, Shuanglai,Hwang, Seon Woong,Lee, Kyeong Bo. 2012

[20]Soil pH Dynamics and Nitrogen Transformations Under Long-Term Chemical Fertilization in Four Typical Chinese Croplands. Meng Hong-qi,Lu Jia-long,Meng Hong-qi,Xu Ming-gang,Wang Bo-ren,Zhang Hui-min,Meng Hong-qi,He Xin-hua,Li Jian-wei,Shi Xiao-jun,Peng Chang. 2013

作者其他论文 更多>>