Pankaj Srivastava
Biographic Data
| ID | 7460179 |
|---|---|
| NAME | Pankaj Srivastava |
| GIVEN NAMES | Pankaj |
| FAMILY NAME | Srivastava |
| SIGNATURE | SRIVASTAVA P |
| AFFILIATIONS | Department of Environmental Studies GITAM Institute of Science, GITAM (Deemed to be University) Visakhapatnam India |
| ORCID | 0000-0003-1288-5742 |
| VERIFIED | Yes |
| TOTAL WORKS | 5 |
| TOTAL CITATIONS | 1 |
| AUTHOR COUNT | 5 |
| EDITOR COUNT | 0 |
| FIRST PUBLICATION YEAR | 1998 |
| LATEST PUBLICATION YEAR | 2023 |
| H-INDEX | 1 |
Restoration of agroecosystems with conservation agriculture for food security to achieve sustainable development goals
Currently, agroecosystems sustainability is mainly challenged by unsustainable agricultural practices that lead to land degradation and amplified climate change. About 25% of the World's total land area has deteriorated due to improper agricultural land management, resulting in ~24 billion tonnes of annual soil loss. Globally, soil erosion, mainly caused by high‐frequency tilling, crop residue removal or burning, poor pasture management, and inef…
Effects of microbial inoculants on soil carbon stock, enzymatic activity, and above ground and belowground biomass in marginal lands of Northern India
Restoration practices in marginal lands for food production are the most important sustainability challenge for humans at the global level. Nature‐based solutions (NBS) are among the best interventions to improve soil health, which directly enhances the soil productivity and biodiversity for improved sustainability of ecosystems. Our field experiment was conducted to evaluate the effects of three inoculants, two of which were bacterial: Azotobact…
Research Trends: Evidence-based policy for bamboo development in India: From “supply push” to “demand pull”
Late Holocene aridification recorded in the stable carbon and nitrogen isotope composition of soils from Nainital, Lesser Himalaya
Clay Minerals in Soils as Evidence of Holocene Climatic Change, Central Indo-Gangetic Plains, North-Central India
Clay mineral assemblages of a soil chrono-association comprising five fluvial surface members (QGH1 to QGH5) of the Indo-Gangetic Plains between the Ramganga and Rapti rivers, north-central India, demonstrate that pedogenic interstratified smectite–kaolin (Sm/K) can be considered as a potential indicator for paleoclimatic changes during the Holocene from arid to humid climates. On the basis of available radiocarbon dates, thermoluminescence dates…
Clay Minerals in Soils as Evidence of Holocene Climatic Change, Central Indo-Gangetic Plains, North-Central India
Clay mineral assemblages of a soil chrono-association comprising five fluvial surface members (QGH1 to QGH5) of the Indo-Gangetic Plains between the Ramganga and Rapti rivers, north-central India, demonstrate that pedogenic interstratified smectite–kaolin (Sm/K) can be considered as a potential indicator for paleoclimatic changes during the Holocene from arid to humid climates. On the basis of available radiocarbon dates, thermoluminescence dates…
Late Holocene aridification recorded in the stable carbon and nitrogen isotope composition of soils from Nainital, Lesser Himalaya
Research Trends: Evidence-based policy for bamboo development in India: From “supply push” to “demand pull”
Effects of microbial inoculants on soil carbon stock, enzymatic activity, and above ground and belowground biomass in marginal lands of Northern India
Restoration practices in marginal lands for food production are the most important sustainability challenge for humans at the global level. Nature‐based solutions (NBS) are among the best interventions to improve soil health, which directly enhances the soil productivity and biodiversity for improved sustainability of ecosystems. Our field experiment was conducted to evaluate the effects of three inoculants, two of which were bacterial: Azotobact…
Restoration of agroecosystems with conservation agriculture for food security to achieve sustainable development goals
Currently, agroecosystems sustainability is mainly challenged by unsustainable agricultural practices that lead to land degradation and amplified climate change. About 25% of the World's total land area has deteriorated due to improper agricultural land management, resulting in ~24 billion tonnes of annual soil loss. Globally, soil erosion, mainly caused by high‐frequency tilling, crop residue removal or burning, poor pasture management, and inef…
Geography (3 works) · Soil water (3 works) · Agriculture (2 works) · Agriculture, Land Use, Rural Development (2 works) · Arid (2 works) · Biology (2 works) · Environmental Science (2 works) · Geology and Paleoclimatology Research (2 works) · Holocene (2 works) · Physical geography (2 works)