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| 1 | Assessment of Diversity, Distribution, Conservation Status and Preparation of Management Plan for Medicinal Plants in the Catchment Area of Parbati Hydroelectric Project Stage-Ⅲ in Northwestern Himalaya显示文摘The developmental activities, particularly the construction of hydroelectric projects are causing a great loss of biodiversity in the Indian Himalayan Region. The Himachal Pradesh, a part of IHR is well known for the development of hydroelectric projects. The Parbati H.E. Project is amongst the major projects of the State. The different stages of the project are all causing loss of biodiversity of the area. Stage Ⅲ of the Parbati H.E. Project is a run of the river scheme on the Sainj River downstream of Power House of Parbati H.E. Project Stage Ⅱ. The project shall utilize regulated discharge of Parbati H.E. Project Stage Ⅱ and inflow of River Sainj for power generation, and has been contemplated as a peaking station operating in tandem with Stage Ⅱ. The present study has been undertaken to see the impact of hydroelectric project on the biodiversity, particularly on medicinal plants. A total of 104 species of medicinal plants, belonging to different life forms, i.e., trees (23 spp.), shrubs (22 spp.), herbs (57 spp.) and ferns (2 spp.) were recorded. The species have been analyzed and studied for their distribution, classification, altitudinal zones, part (s) used, indigenous uses, nativity, endemism and rarity.Different parts of these species, such as whole plants, roots (including rhizomes and tubers), leaves, flowers, fruits, seeds, stems, barks, spikes, nuts and insect galls are used by the inhabitants for curing various diseases and ailments. 30 species are native to the Himalayan region, 9 species native to the Himalayan region and adjacent countries also and 65 species are non-natives. 9 species are near endemics. Considering the whole Himalaya as a biogeographic unit (sensu lato), the near endemics are endemic to the Himalaya. Among these species, Zanthoxylum armatum is categorized as Endangered and Valeriana wallichii as Vulnerable. Hedychium spicatum, Rhus javanica, Berberis lycium, Thalictrum foliolossum, Salvia lanata, Rubia cordifolia and Bergenia ligulata may be considered as threatened species due to their over exploitation for trade. 90 species are propagated by seeds, 8 species by seeds and rhizomes/roots/tubers, 4 species by seeds and cuttings, and 2 species by sori. A management plan for the cultivation and conservation of the medicinal plants in the dam submergence area, and the commercially viable medicinal plants with high value in the catchment area is suggested. | S.S. Samant Jitendra S. Butola Aman Sharma | 2007 | Journal of Mountain Science2007,4,1: | 4 |
| 2 | Studies on uonisothermal crystallization of HDPE/POSS nanocomposites显示文摘 | Joshi M Butola B S | 2004 | Polymer2004,45,: | 1 |
| 3 | Improving the Impact Resistance of Textile Structures by using Shear Thickening Fluids: A Review显示文摘 | A. Srivastava A. Majumdar B.S. Butola | 2012 | Critical Reviews in Solid State and Materials Sciences2012,,2: | 1 |
| 4 | Studies on uonisothermal crystallization of HDPE/POSS nanocomposites显示文摘 | Joshi M Butola B S | 2004 | Polymer2004,45,14: | 1 |
| 5 | Development of soft composite materials with im- proved impact resistance using Kevlar fabric and nano-silica based shear thickening fluid显示文摘 | Abhijit Majumdar Bhupendra Singh Butola Ankita Srivas- tara | 2014 | Mater Des2014,54,: | 1 |
| 6 | Biodiversity conservation and sustainable rural development in the Garhwal Himalaya显示文摘 | Gairola S Sharma C M Ghildiyal S K Suyal S Rana C S Butola D S | | 0,,04: | 1 |
| 7 | Hybrid organic-inor- ganic POSS ( polyhedral oligo-meric silsesquioxane)/polypro- pylene nano-composite filaments 显示文摘 | BUTOLA B S JOSHI M KUMAR S | 2010 | Fibers Polym2010,11,8: | 1 |
| 8 | Studies on nonisothermal crystallization of HDPE/POSS nanoeomposites显示文摘 | JOSHI M BUTOLA B S | 2004 | Polymer2004,45,: | 1 |
| 9 | An investigation into fiber dispersion behavior in water with reference to wet-lay nonwoven technology 显示文摘 | DAS D BUTOLA B S RENUKA S | 2012 | Journal of Dispersion Science and Technology2012,33,8: | 1 |
| 10 | Rheological and Viscoelastic Behavior of HDPE/Octamethyl-POSS Nano- composites 显示文摘 | Joshi M Butola B S Simon G | 2006 | Macromolecules2006,39,5: | 1 |
| 11 | Improving the impact resistance of textile structures by using shear thick- eniN fluids: a review显示文摘 | Srivastava A Majumdar A Butola B S | 2012 | Critical Reviews in Solid State and Materials Sciences2012,37,2: | 1 |
| 12 | Rheological and Viscoelas- tic Behavior of HDPE/Octamethyl-POSS Nanocomposites 显示文摘 | Joshi M Butola B S Simon G | 2006 | Macromolecules2006,,39: | 1 |
| 13 | Effect of Ploughing Depth on the Growth and Yield of Heracleum candicans:a Threatened Medicinal Herb and a Less-explored Potential Crop of the Himalayan Region显示文摘This paper examines the effect of ploughing depths (A — 60 cm,B — 45 cm and C — 30 cm) on the growth and yield of Heracleum candicans Wall (Apiaceae),a threatened medicinal herb of the Himalayan region. This less-explored plant is being suggested as a potential crop for the mountain agriculture. The study was carried out in an orchard in Himachal Pradesh,India at 2500 m altitude,for two successive growth years. During the first year,all plants remained in juvenile state;in the second year,nearly 65 % plants produced flowers only under 60 cm ploughing depth. Among its morphological traits,plant height,collar diameter and aboveground fresh weight were found to be strongly correlated (P < 0.01) with the belowground biomass during the first year (r =0.968,0.925 and 0.973,respectively) and during the second year (r=0.945,0.928 and 0.775,respectively). Increase in the ploughing depth was significantly correlated (P<0.01) with all growth parameters,including the belowground dry weight,marketable portion of the produce. The belowground biomass (commercial yield;16.28 Qt/hec) at depth A was about 2.6 and 4.7 times higher than those recorded at depths B and C,respectively. The results clearly justify the importance of deep ploughing and this paper strongly recommends it for economically sustainable cropping. | Hemant K. Badola Jitendra S. Butola | 2005 | Journal of Mountain Science2005,2,2: | 1 |
| 14 | Synthesis and character- ization of ehlorhexidine acetate drug-mantmorillonite intercalates for antibacterial applications 显示文摘 | KASTURI S BUTOLA B S MANGALA J | 2014 | Appl Clay Sci2014,101,: | 1 |
| 15 | Photostability of HDPE Filaments Stabilized with UV Absorbers(UVA) and Light Stabilizers (HALS) 显示文摘 | Butola B S Joshi M | 2013 | Journal of Engineered Fibers and Fabrics2013,8,1: | 1 |
| 16 | Rheological and viscoelastic behavior of HDPE/octamethyl-POSS nano- composites显示文摘 | Joshi M Butola B S Simon G | 2006 | Maeromolecules2006,39,5: | 1 |
| 17 | Studies on nonisothermal crystalli- zation of HDPE/POSS nanocomposites显示文摘 | Joshi M Butola B S | 2004 | Polymer2004,45,14: | 1 |
| 18 | Comparison of biofilm formation in clinical isolates of Candida species in a tertiary care center, North In- dia显示文摘 | Agwan V Butola R Madan M | 2015 | Indian J Pathol Microbiol2015,58,4: | 1 |
| 19 | Improv- ing the impact resistance performance of Kevlar fabrics using silica nano-particle based shear thickening fluid 显示文摘 | SRIVASTAVA A MAJUMDAR A BUTOLA B S | 2011 | Materials Science and Engineering A2011,529,: | 1 |
| 20 | Rheological and Viscoelastic Behavior of HDPE/Octamethyl-POSS Nanocomposites 显示文摘 | Joshi M Butola B S George Simon | 2006 | Macromolecules2006,39,: | 1 |