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61.
Russian Journal of Ecology - Trewia nudiflora Linn. (Euphorbiaceae) is a soft wooded, fast growing multipurpose dioecious tree which grows within the moist semi-evergreen tropical forests of... 相似文献
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Gopal Shukla Ashok Kumar Nazir A. Pala Sumit Chakravarty 《Environment, Development and Sustainability》2016,18(4):1167-1176
This study was an attempt to document the indigenous Lepcha people’s perception on climate change-related issues in five villages of Dzongu Valley located in Kanchandzonga Biosphere Reserve, India. Personal structured questionnaire was used for interview of 300 households selected randomly. Results showed that 85 % of the households have perceived climate change, mainly in the form of increasing temperature and unpredictable pattern of rainfall. In terms of climate change-related events, 75 % of the households believed that wind is becoming warmer and stronger over the past years. Majority of the households have observed changes in crop phenology, while about 90 % agreed that the incidences of insect pest and diseases have increased over the years, especially in their large cardamom crop. A comparison of community perceptions, climatic observations and scientific literature shows that the community have correctly perceived temperature change, unpredictable occurrence of rainfall and increased incidence of insect pest and diseases, which have largely influenced the experiences and perceptions regarding climate-related events. Results reveal that households have adopted the use of locally available material as mulches against soil erosion, to conserve the soil moisture and manage soil temperature. Majority of the households have diversified their cropping system through traditional agroforestry systems and intercropping. Unfortunately, most of the households were unaware about the scientific sustainable approaches to combating impact of climate change. This documentation will aid in assessing the needs in terms of actions and information for facilitating climate change-related adaptation locally in Sikkim state of India. 相似文献
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Metallic nanoparticles are finding new applications in medical, pharmaceutical, food and agriculture sectors. Applications include drug delivery, targeted cancer remedies, biomarker mapping, gene delivery and molecular imaging. This article reviews green strategies for the preparation of metallic nanoparticles, using enzymes, vitamins, monosaccharides, polysaccharides and biodegradable polymers. Microwave-assisted synthesis is detailed. Then, we review nanoparticle characterization using UV–visible spectroscopy and Fourier transform infrared spectroscopy. We also present applications for water purification. 相似文献
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The effects of water and fertilizer best management practices (BMPs) have not been quantified for groundwater nitrogen (N) beneath seepage irrigated vegetable fields with shallow water table environments. This effect was evaluated by a 3-yr study conducted in the Flatwoods of south Florida for watermelon ( cv. Mardi Gras and Tri-X 313) and tomato ( cv. BHN 586) using three treatments of water and inorganic fertilizer N (N) rates: (i) high fertilizer and water rates with seepage irrigation (HR), (ii) recommended fertilizer and water rates (BMP) with seepage irrigation (RR); and (iii) RR with subsurface drip irrigation (RR-SD). These treatments were implemented on six hydraulically isolated plots. The N rate treatments for high (HR) and recommended (RR and RR-SD) were based on a grower survey and BMP recommendations, respectively. Water applied, water table depth, and soil moisture content were regularly monitored for each treatment. Plant, soil, and groundwater N sampling and analyses were conducted for each season of the 3-yr study. The average water applied in HR (187 cm) was greater than RR (172 cm) and RR-SD (94 cm). Soil N maintained in crop beds for HR was significantly higher than RR and RR-SD. Soil solution analyses showed that N leached beneath HR (112 mg L) was greater ( = 0.053) than RR (76 mg L) and RR-SD (88 mg L). Shallow groundwater concentrations of dissolved inorganic nitrogen (NH-N + NO-N) were higher ( = 0.02) in HR (37 mg L) compared with RR (15 mg L) and RR-SD (19 mg L). Decreased N and water table levels can improve groundwater quality by reducing N leachate in shallow water table environments with seepage irrigated vegetable production systems. 相似文献
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Solanki Yogendra Singh Agarwal Madhu Maheshwari Karishma Gupta Sanjeev Shukla Pushkar Gupta A. B. 《Environmental science and pollution research international》2021,28(4):3897-3905
Environmental Science and Pollution Research - Excess fluoride (F) ion of drinking water is a major problem in many areas of India and causes harmful effects such as dental and skeletal fluorosis.... 相似文献
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The present study was designed with an aim to observe the effect of increasing urbanization and traffic activity on the physiology of a foliose lichen, Phaeophyscia hispidula (Ach.) Essl., collected from 13 different localities, growing in their natural habitat, in Pauri and Srinagar, two cities in the Himalayas. Six parameters i.e., Chl. a, Chl. b, total pigment, chlorophyll degradation, carotenoid and total protein content, proved the most useful to assess air pollution, were measured. Chlorophyll content and protein content are an efficient parameter to measure the air quality of a region. The study indicates that P. hispidula is pollution tolerant (adaptation) and able to withstand local emissions from vehicle exhausts. 相似文献
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Burger J Greenberg M Gochfeld M Shukla S Lowrie K Keren R 《Environmental monitoring and assessment》2008,137(1-3):413-425
Considerable research indicates that a wide range of socio-economic factors influence attitudes and perceptions about environmental
hazards and risks, and that social trust in those who manage a hazard is strongly correlated to judgements about risks and
benefits. We suggest that there are three steps that lead to environmental risk perceptions: acquisition of information, interpretation
and synthesis of different pieces of information, and understanding of that information in light of previous knowledge, perceptions,
or attitudes. In this study we presented 211 college students in the sciences and non-sciences with ecological and exposure
information using text, tables and maps to examine the factors that affect information acquisition and interpretation concerning
ecological issues at a fictitious hazardous waste site. Students were allowed about an hour to read the materials and answer
questions. The percent of students answering each question correctly varied from 4 to 82%, indicating that some questions
were extremely difficult to answer. We attributed these differences to variations in the number of places information was
presented (in text, tables, maps, or a combination) and the complexity of the information (how many pieces of information
were required to answer the question correctly). The correlation between the number of students answering each question correctly
and these combined measures (frequency, complexity) was −0.72. Thus, although there were differences in accuracy concerning
ecological information as presented in this study, the major differences were accounted for by how the information was presented,
and how much information was required. This suggests that risk communicators should carefully determine which ecological information
is critical for the target audience, and ensure that it is presented several times (in different forms). That a lower percentage
of people correctly answered questions that required synthesizing several pieces of information suggests that this complexity
should be reduced where possible, or that the pieces of information should be tied clearly to the conclusion. Self-declaration
of effort and perceptions of safety of the site did not markedly influence the relationship between accuracy, difficulty of
finding information, and complexity of information. Other possible confounding variables (i.e., science vs non-science major)
only accounted for about 27% of the variation in student’s overall score on ecological questions; age, ethnicity, and gender
did not enter as significant variables. We cannot manage environmental hazards with appropriate stakeholder input unless we
understand how to present environmental information to achieve a full understanding. Protection of human health and the environment
requires that people understand ecological and exposure information, particularly on buffer lands. 相似文献