Soil organic carbon stocks and fractions in different orchards of eastern plateau and hill region of India

被引:1
作者
Sushanta Kumar Naik
Sudarshan Maurya
B. P. Bhatt
机构
[1] ICAR Research Complex for Eastern Region,ICAR Research Complex for Eastern Region, ICAR Parisar
[2] Research Centre,undefined
[3] B. V. College,undefined
来源
Agroforestry Systems | 2017年 / 91卷
关键词
Carbon fractions; Carbon pool; Carbon management index; Eastern India; Fruit orchard; Soil microbial biomass carbon;
D O I
暂无
中图分类号
学科分类号
摘要
Soil organic carbon (SOC) plays an important role in soil fertility and productivity. It occurs in soil in labile and non-labile forms that help in maintaining the soil health. An investigation was undertaken to evaluate the dynamics of total soil organic carbon (Ctot), oxidisable organic carbon (Coc), very labile carbon (C frac1), labile carbon (C frac2), less labile carbon (C frac3), non-labile carbon (C frac4), microbial biomass carbon (Cmic) and SOC sequestration in a 6-year-old fruit orchards. The mango, guava and litchi orchards caused an enrichment of Ctot by 17.2, 12.6 and 11 %, respectively, over the control. The mango orchard registered highest significant increase of 20.7, 13.5 and 17.4 % in C frac1, C frac2 and C frac4, respectively, over control. There is greater accumulation of all the C fractions in the surface soil (0–0.30 m). The maximum total active carbon pool was 36.2 Mg C ha−1 in mango orchard and resulted in 1.2 times higher than control. The passive pool of carbon constituted about 42.4 % of Ctot and registered maximum in the mango orchard. The maximum Cmic was 370 mg C kg−1 in guava orchard and constituted 4.2 % of Ctot. The carbon management index registered 1.2 (mango orchard)- and 1.13 (guava and litchi orchard)-fold increase over control. The mango orchard registered highest carbon build rate of 1.53 Mg C ha−1 year−1 and resulted in 17.3 % carbon build-up over control. Among the carbon fractions, C frac1 was highly correlated (r = 0.567**) with Cmic.
引用
收藏
页码:541 / 552
页数:11
相关论文
共 50 条
[21]   Influence of Crops and Different Production Systems on Soil Carbon Fractions and Carbon Sequestration in Rainfed Areas of Semiarid Tropics in India [J].
Gopinath, Kodigal A. ;
Rajanna, Gandhamanagenahalli A. ;
Venkatesh, Govindarajan ;
Jayalakshmi, Mitnala ;
Kumari, Venugopalan Visha ;
Prabhakar, Mathyam ;
Rajkumar, Bollam ;
Chary, Gajjala Ravindra ;
Singh, Vinod Kumar .
SUSTAINABILITY, 2022, 14 (07)
[22]   The Effect of Anaerobic Digestate on the Soil Organic Carbon and Humified Carbon Fractions in Different Land-Use Systems in Lithuania [J].
Slepetiene, Alvyra ;
Kochiieru, Mykola ;
Jurgutis, Linas ;
Mankeviciene, Audrone ;
Skersiene, Aida ;
Belova, Olgirda .
LAND, 2022, 11 (01)
[23]   Effect of different vegetation restoration on soil organic carbon dynamics and fractions in the Rainy Zone of Western China [J].
Yang, Fan ;
Zhong, Yujian ;
Han, Guangzhong ;
Li, Xiuzhi ;
Luo, Li ;
Cai, Xiaomin ;
Long, Xinyu ;
Li, Tangli ;
Huang, Laiming .
JOURNAL OF ENVIRONMENTAL MANAGEMENT, 2023, 331
[24]   Changes in Soil Organic Carbon Fractions Across a Loess Toposequence [J].
Azam, Arsalan ;
Akhtar, Mohammad Saleem ;
Rukh, Shah ;
Mehmood, Ayaz ;
Imran, Muhammad ;
Khan, Ahmad ;
Qayyum, Abdul ;
Ahmad, Waseem ;
Gurmani, Ali Raza .
JOURNAL OF SOIL SCIENCE AND PLANT NUTRITION, 2020, 20 (03) :1193-1202
[25]   Quantifying soil organic carbon fractions by infrared-spectroscopy [J].
Zimmermann, M. ;
Leifeld, J. ;
Fuhrer, J. .
SOIL BIOLOGY & BIOCHEMISTRY, 2007, 39 (01) :224-231
[26]   Catchment scale mapping of measureable soil organic carbon fractions [J].
Karunaratne, S. B. ;
Bishop, T. F. A. ;
Baldock, J. A. ;
Odeh, I. O. A. .
GEODERMA, 2014, 219 :14-23
[27]   Changes in Soil Organic Carbon Fractions Across a Loess Toposequence [J].
Arsalan Azam ;
Mohammad Saleem Akhtar ;
Shah Rukh ;
Ayaz Mehmood ;
Muhammad Imran ;
Ahmad Khan ;
Abdul Qayyum ;
Waseem Ahmad ;
Ali Raza Gurmani .
Journal of Soil Science and Plant Nutrition, 2020, 20 :1193-1202
[28]   Soil carbon dynamics in diverse organic land use systems in North Eastern Himalayan ecosystem of India [J].
Babu, Subhash ;
Mohapatra, K. P. ;
Yadav, Gulab Singh ;
Lal, Rattan ;
Singh, Raghavendra ;
Avasthe, R. K. ;
Das, Anup ;
Chandra, Puran ;
Gudade, B. A. ;
Kumar, Amit .
CATENA, 2020, 194
[29]   Long-term winter wheat cropping influenced soil organic carbon pools in different aggregate fractions of Chernozem soil [J].
Seremesic, Srdjan ;
Ciric, Vladimir ;
Djalovic, Ivica ;
Vasin, Jovica ;
Zeremski, Tijana ;
Siddique, Kadambot H. M. ;
Farooq, Muhammad .
ARCHIVES OF AGRONOMY AND SOIL SCIENCE, 2020, 66 (14) :2055-2066
[30]   Soil organic carbon and its stability after vegetation restoration in Zoige grassland, eastern Qinghai-Tibet Plateau [J].
Ye, Chenyu ;
Li, Lin ;
Zhao, Runying ;
Luo, Xinrui ;
Wang, Xiaodong ;
Wang, Jipeng ;
Chen, Guo ;
Lei, Ningfei ;
Pei, Xiangjun ;
Tang, Xiaolu .
RESTORATION ECOLOGY, 2023, 31 (07)