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921.
Skulrat Pichaiyut Charoen Nakason Suwaluk Wisunthorn 《Journal of Polymers and the Environment》2018,26(7):2855-2866
This work aimed to prepare biodegradable thermoplastic elastomers based on NR/LLDPE/TPS ternary simple blends to achieve some exclusive properties, i.e., good biodegradability in terms of water absorption and weight loss after burial, together with reasonable mechanical and thermal properties. A comparative study on biodegradability and other related properties of NR/LLDPE binary and NR/LLDPE/TPS ternary blends was performed. It was found that increasing the TPS proportion decreased storage modulus and complex viscosity. In addition, the size of dispersed TPS domains in the NR/LLDPE co-continuous matrix increased with TPS proportion, while the mechanical properties in terms of 100% moduli, tensile strength, elongation at break, and hardness decreased. This might be attributed to decreased interfacial adhesion with increasing size of TPS domains. Furthermore, increasing the TPS loading in the blend reduced the temperatures for 5 or 50% mass loss (T5 or T50) and the degradation temperature (T d ). However, the biodegradability improved, in terms of increased water absorption and weight loss after burial in soil, with the loading level of TPS. 相似文献
922.
A. Vignesh Arun. S. Siddarth B. Ramesh Babu 《Journal of Material Cycles and Waste Management》2017,19(1):155-162
This contribution reports a novel and cost efficient strategy for nickel ion removal from metal finishing effluents by electro-dissolution of scrap aluminium and iron sacrificial anodes. Electro-coagulation of effluent was carried out at 30 mA/cm2 current density for 60 min. The nickel ion concentration of electroplating effluent was analysed by Atomic Absorption Spectroscopy. SEM images of iron and aluminium scrap anodes were critically analysed. Parameters such as heavy metal removal, anode dissolution rate with respect to heavy metal removal, reaction kinetics and cost estimation have been elaborately studied. Electro-coagulation at 30 mA/cm2 for 60 min using iron and aluminium scrap anodes resulted in 95.9 and 94.1 % nickel ion reduction, respectively, with 0.0094 and 0.0053 g/ppm dissolution rates. The energy consumption for scrap aluminium and iron anodes was 0.0547 kWh/L. Loose internal bonding and spongy surface morphology of used metal scrap render high porosity and active surface area, enhancing reaction rate. Low cost and ready availability of waste scrap makes the process of electro-coagulation economically viable. Thus, the findings from this contribution point decisively at the superiority of waste metal scrap-based anodes for economic and environmentally sustainable heavy metal ion removal from metal finishing effluent. 相似文献
923.
Jesús Cambrollé Juan Manuel Mancilla-Leytón Sara Muñoz-Vallés Beatriz Morenza-Barrera Manuel Enrique Figueroa 《Journal of Coastal Conservation》2018,22(6):1201-1207
Human pressure has been exponentially growing during recent decades in coastal areas, which have led to drastic losses of biodiversity in coastal ecosystems. The current conservation status of many coastal plant species is directly related to a lack of environmental criteria in the urban planning of coastal areas over recent decades. This study aimed to evaluate the evolution, over the last 9 years, of the conservation status of various populations of the endangered plant Glaucium flavum, exploring the extent to which human pressure and different management strategies practiced in the coastal areas where the populations are established have affected the conservation status of the species. The populations analysed have evolved in a different manner over the last 9 years, as have their threat factors, and a relationship was evident between their conservation status and the evolution of these different threat factors. Our results indicate that an appropriate planning of local management actions, such as the installation of walkways or the successful eradication of invasive species, may be determinant factors for successful conservation of the coastal vegetation. The presence of species that are sensitive to slight changes in the ecosystem, and the main factors that govern the plant performance of these species, must be given full consideration in decision-making processes of coastal planning and management. 相似文献
924.
We performed male attraction experiments and staged courtship sequences to test for non-random mating with respect to social
behavioral phenotype in the comb-footed spider, Anelosimus studiosus. While asocial behavior is the dominant phenotype in all A. studiosus populations examined to date, a social phenotype approaches a frequency of 15% in colder environments. We collected test
subjects from higher latitude polymorphic populations and scored all individuals as to their behavioral phenotype prior to
their use in these trials. Males of both phenotypes differentially approached and courted social females over asocial females
and no-spider controls. By offering males different numbers of females of one type vs. the other in subsequent trials, we
determined that the difference in attractiveness between the two phenotypes social/asocial is 1.5/1. Both the web produced
by a female and a female that has been removed from its web attract males. We suggest that the male attracting pheromone is
present on females and is also attached to silk threads. Staged encounters completed between males and females of the respective
phenotypes demonstrated that courting males suffer significantly less pre-copulatory sexual cannibalism with social females
than with asocial ones, and thus, female social tendency is phenotypically linked to sexual aggression. We propose that the
male preference for social females is adaptive because of the observed asymmetry in courtship success. 相似文献
925.
Matjaž Hriberšek Niko Samec Jure Ravnik Matej Zadravec 《Environmental Modeling and Assessment》2011,16(5):479-489
The contribution presents numerical simulation of gypsum particles, lifting from a gypsum landfill. First, particle characteristics
are presented, resulting from different technologies of gypsum depositing. Next, a laboratory experiment parameter validation
tests are described, which served as a means of determination of mass flow of particles from the landfill. The background
of the numerical simulations, used in the assessment of landfill impact on the environment, is also described. Simulations
consist of two parts: simulation of a long term impact of the particles on the surrounding area, performed by implementation
of the Gaussian dispersion model based computer code ISC3, and second, a CFD based simulation for assessing the flow and mass
concentration fields in the vicinity of the landfill for several pre-selected flow cases. The results of both computational
approaches are presented and compared. In the conclusions, a relation of the simulation results with existing environmental
pollution levels is made, and recommendations for landfill management are drawn. 相似文献
926.
Gopal R. Patil 《Environmental Modeling and Assessment》2016,21(5):629-642
Tailpipe emissions in the road transportation system are a major source of air pollution and greenhouse gases. One of the possible approaches is to influence drivers’ routing decisions such that the emissions and fuel consumption is minimized. In order to evaluate such condition, we develop environmental traffic assignment (E-TA) models based on user equilibrium (UE) and system optimal (SO) behavioral principles. Extending the traditional travel time-based UE and SO principles to E-TA is not straightforward because, unlike travel time, the rate of emissions increases with the increase in vehicle speed beyond a certain point. The results of various TA models show a network-wide traffic control strategy in which vehicles are routed according to SO-based E-TA, can reduce system-wide emissions. However, a system in which drivers make routing decisions to minimize their own emissions (E-UE system) results in a paradoxical situation of increased individual as well as system-wide emissions. 相似文献
927.
Rajkumar Dhakar M. A. Sarath Chandran Shivani Nagar V. Visha Kumari 《Environmental monitoring and assessment》2017,189(12):645
A new methodology for crop-growth stage-specific assessment of agricultural drought risk under a variable sowing window is proposed for the soybean crop. It encompasses three drought indices, which include Crop-Specific Drought Index (CSDI), Vegetation Condition Index (VCI), and Standardized Precipitation Evapotranspiration Index (SPEI). The unique features of crop-growth stage-specific nature and spatial and multi-scalar coverage provide a comprehensive assessment of agricultural drought risk. This study was conducted in 10 major soybean-growing districts of Madhya Pradesh state of India. These areas contribute about 60% of the total soybean production for the country. The phenophase most vulnerable to agricultural drought was identified (germination and flowering in our case) for each district across four sowing windows. The agricultural drought risk was quantified at various severity levels (moderate, severe, and very severe) for each growth stage and sowing window. Validation of the proposed new methodology also yielded results with a high correlation coefficient between percent probability of agricultural drought risk and yield risk (r?=?0.92). Assessment by proximity matrix yielded a similar statistic. Expectations for the proposed methodology are better mitigation-oriented management and improved crop contingency plans for planners and decision makers. 相似文献
928.
Julius H. Kotir 《Environment, Development and Sustainability》2011,13(3):587-605
Sub-Saharan Africa has been portrayed as the most vulnerable region to the impacts of global climate change because of its
reliance on agriculture which is highly sensitive to weather and climate variables such as temperature, precipitation, and
light and extreme events and low capacity for adaptation. This article reviews evidence on the scope and nature of the climate
change challenge; and assesses the impact of climate change on agriculture and food security in Sub-Saharan Africa. From the
review, it is apparent that the climate in Africa is already exhibiting significant changes, evident by changes in average
temperature, change in amount of rainfall and patterns and the prevalence of frequency and intensity of weather extremes.
The review also revealed that although uncertainties exist with regards to the magnitude of impacts, climate will negatively
affect agricultural production in Sub-Saharan Africa. Specifically, as result of current and expected climate change, the
area suitable for agriculture, the length of growing seasons and yield potential, particularly along the margins of semi-arid
and arid areas, are expected to decrease. These impacts will affect all components of food security: food availability, food accessibility, food utilisation and food stability and hence increase the risk of hunger in the region. The review thus confirms the general consensus that Sub-Saharan Africa
is the most vulnerable region to climate change. It suggests that, policymakers and development agencies should focus on formulating
and implementing policies and programmes that promote farm level adaptation strategies currently being practiced by farmers
across the region. 相似文献
929.
Christos Giannakopoulos Effie Kostopoulou Konstantinos V. Varotsos Kostas Tziotziou Achilleas Plitharas 《Regional Environmental Change》2011,11(4):829-843
Climate changes in the Mediterranean region, related to a significant increase in temperature and changes in precipitation
patterns, can potentially affect local economies. Agriculture and tourism are undoubtedly the most important economic sources
for Greece and these may be more strongly affected by changing future climate conditions. Climate change and their various
negative impacts on human life are also detected in their environment; hence this study deals with implications, caused by
changing climate, in urban and forest areas. Potential changes for the mid-twenty-first century (2021–2050) are analysed using
a high-resolution regional climate model. This paper presents relevant climatic indices, indicative for potential implications
which may jeopardise vital economic/environmental sectors of the country. The results provide insights into particular regions
of the Greek territory that may undergo substantial impacts due to climate change. It is concluded that the duration of dry
days is expected to increase in most of the studied agricultural regions. Winter precipitation generally decreases, whereas
an increase in autumn precipitation is projected in most areas. Changing climate conditions associated with increased minimum
temperatures (approximately 1.3°C) and decreased winter precipitation by 15% on average suggest that the risk for forest fires
is intensified in the future. In urban areas, unpleasantly high temperatures during day and night will increase the feeling
of discomfort in the citizens, while flash floods events are expected to occur more frequently. Another impact of climate
change in urban regions is the increasing energy demand for cooling in summer. Finally, it was found that continental tourist
areas of the Greek mainland will more often face heatwave episodes. In coastal regions, increased temperatures especially
at night in combination with high levels of relative humidity can lead to conditions that are nothing less than uncomfortable
for foreigners and the local population. In general, projected changes associated with temperature have a higher degree of
confidence than those associated with precipitation. 相似文献
930.
Milad Ferdowsi Antonio Avalos Ramirez Joseph Peter Jones Michèle Heitz 《Environmental science and pollution research international》2017,24(26):20883-20896
Methane (CH4) removal in the presence of ethanol vapors was performed by a stone-based bed and a hybrid packing biofilter in parallel. In the absence of ethanol, a methane removal efficiency of 55 ± 1% was obtained for both biofilters under similar CH4 inlet load (IL) of 13 ± 0.5 gCH4 m?3 h?1 and an empty bed residence time (EBRT) of 6 min. The results proved the key role of the bottom section in both biofilters for simultaneous removal of CH4 and ethanol. Ethanol vapor was completely eliminated in the bottom sections for an ethanol IL variation between 1 and 11 gethanol m?3 h?1. Ethanol absorption and accumulation in the biofilm phase as well as ethanol conversion to CO2 contributed to ethanol removal efficiency of 100%. In the presence of ethanol vapor, CO2 productions in the bottom section increased almost fourfold in both biofilters. The ethanol concentration in the leachate of the biofilter exceeding 2200 gethanol m?3 leachate in both biofilters demonstrated the excess accumulation of ethanol in the biofilm phase. The biofilters responded quickly to an ethanol shock load followed by a starvation with 20% decrease of their performance. The return to normal operations in both biofilters after the transient conditions took less than 5 days. Unlike the hybrid packing biofilter, excess pressure drop (up to 1.9 cmH2O m?1) was an important concern for the stone bed biofilter. The biomass accumulation in the bottom section of the stone bed biofilter contributed to 80% of the total pressure drop. However, the 14-day starvation reduced the pressure drop to 0.25 cmH2O m?1. 相似文献