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741.
742.
How to Consider the Value of Farm Animals in Breeding Goals. A Review of Current Status and Future Challenges 总被引:1,自引:0,他引:1
H. M. Nielsen I. Olesen S. Navrud K. Kolstad P. Amer 《Journal of Agricultural and Environmental Ethics》2011,24(4):309-330
The objective of this paper is to outline challenges associated with the inclusion of welfare issues in breeding goals for
farm animals and to review the currently available methodologies and discuss their potential advantages and limitations to
address these challenges. The methodology for weighing production traits with respect to cost efficiency and market prices
are well developed and implemented in animal breeding goals. However, these methods are inadequate in terms of assessing proper
values of traits with social and ethical values such as animal welfare, because such values are unlikely to be readily available
from the product prices and costs in the market. Defining breeding goals that take animal welfare and ethical concerns into
account, therefore, requires new approaches. In this paper we suggest a framework and an approach for defining breeding goals,
including animal welfare. The definition of breeding goals including values related to animal welfare requires a multidisciplinary
approach with a combination of different methods such as profit equations, stated preference techniques, and selection index
theory. In addition, a participatory approach involving different stakeholders such as breeding organizations, food authorities,
farmers, and animal welfare organizations should be applied. We conclude that even though these methods provide the necessary
tools for considering welfare issues in the breeding goal, the practical application of these methods is yet to be achieved. 相似文献
743.
A. Erto A. Lancia I. Bortone A. Di Nardo M. Di Natale D. Musmarra 《Journal of environmental management》2011
A procedure to optimize the design of a Permeable Adsorptive Barrier (PAB) for the remediation of a contaminated aquifer is presented in this paper. A computer code, including different routines that describe the groundwater contaminant transport and the pollutant capture by adsorption in unsteady conditions over the barrier solid surface, has been developed. The complete characterization of the chemical–physical interactions between adsorbing solids and the contaminated water, required by the computer code, has been obtained by experimental measurements. A case study in which the procedure developed has been applied to a tetrachloroethylene (PCE)-contaminated aquifer near a solid waste landfill, in the district of Napoli (Italy), is also presented and the main dimensions of the barrier (length and width) have been evaluated. Model results show that PAB is effective for the remediation of a PCE-contaminated aquifer, since the concentration of PCE flowing out of the barrier is everywhere always lower than the concentration limit provided for in the Italian regulations on groundwater quality. 相似文献
744.
A. Bischi Ø. Langørgen I. Saanum J. Bakken M. Seljeskog M. Bysveen J.-X. Morin O. Bolland 《International Journal of Greenhouse Gas Control》2011,5(3):467-474
Nowadays the lab scale feasibility of the chemical looping combustion technology has been proved. This article deals with many of the design requirements that need to be fulfilled to make this technology applicable at industrial scale. A design for a 150 kWth chemical looping combustion reactor system is proposed. In the base case it is supposed to work with gaseous fuels and inexpensive oxygen carriers derived from industrial by-products or natural minerals. More specifically the fuel will be methane and a manganese ore will be the basis for the oxygen carrier. It is a double loop circulating fluidized bed where both the air reactor and the fuel reactor are capable to work in the fast fluidization regime in order to increase the gas solids contact along the reactor body. High operational flexibility is aimed, in this way it will be possible to run with different fuels and oxygen carriers as well as different operating conditions such as variation in air excess. Compactness is a major goal in order to reduce the required solid material and possibly to enclose the reactor body into a pressurized vessel to investigate the chemical looping combustion under pressurized conditions. The mass and heat balance are described, as well as the hydrodynamic investigations performed. Most design solutions presented are taken from industrial standards as one main objective is to meet commercial requirements. 相似文献
745.
Environmental Management System (EMS) has been one of the important tools for sustainable construction for around two decades. However, many issues concerning sustainable development have not been properly addressed, and there is a need for the introduction of green specifications to advance green performance in construction through contract management. This paper defines green specifications, identifies the reasons for adopting green specifications and highlights the environmental issues that may not be addressed by solely adopting EMS. It also presents the results of a recent survey of practitioners concerning their opinions towards green specifications and possible impacts arising from their adoption. From the results of the survey, a framework for developing green specifications is deemed valuable for the cities striving for sustainability. Interestingly, the level of acceptable changes brought about by green specifications as perceived by different industry stakeholders is found to be unrelated to whether they were from organizations implementing EMS or not. 相似文献
746.
Cement-based materials, such as concrete and mortars, are used in extremely large amounts. For instance, in 2009 concrete
production was superior to 10 billion tons. Cement plays an important role in terms of economic and social relevance since
it is fundamental to build and improve infrastructure. On the other hand, this industry is also a heavy polluter. Cement production
releases 5–6% of all carbon dioxide generated by human activities, accounting for about 4% of global warming. It can release
huge amounts of persistent organic pollutants, such as dioxins and heavy metals and particles. Energy consumption is also
considerable. Cement production use approximately 0.6% of all energy produced in the United States. On the other hand, the
chemistry underlying cement production and its applications can be very helpful to overcome these environmental issues. In
terms of manufacture, there are many alternative materials that can be used to minimize carbon dioxide production and reduce
energy consumption, such as calcium sulfoaluminates and β-Ca2SiO4—rich cements. Using residues from other industrial sectors can also improve the sustainability of cement industry. Under
adequate conditions, waste materials such as tyres, oils, municipal solid waste and solvents can be used as supplementary
fuel in cement plants. Concrete can be used for encapsulation of waste materials such as tyres, plastics and glasses. In this
review, we discuss some aspects of the cement industry associated with environmental science. Other issues such as economic
aspects, the chemistry of cement manufacture and its properties are also presented. Special attention is given to the role
that cement chemistry can play in terms of sustainability. The most relevant aspects are outlined, such as the use of alternative
materials, new possibilities and also the recycling of materials. It is also argued that an important aspect is the role of
research and development necessary to improve cement sustainability. 相似文献
747.
María I. Cabrera F 《Ecological modelling》2011,222(3):598-605
Our understanding of predator-prey systems has progressed in recent decades mainly due to the ability to test models in chemostats. This study aimed to develop a deterministic model using differential equations to reproduce the dynamics of the interaction of a predator and a prey in a two stage chemostat focusing in the proposed previous prey dependent model of Fussmann et al. (2000) [Fussmann, G.F., Ellner, S.P., Shertzer, K.W., Hairston Jr., N.G., 2000. Crossing the Hopf bifurcation in a live predator-prey system. Science 290, 1358-1360]. The main problem with that model, but parameterized with the values obtained in this study (particularly the concentration of nutrient), was that the temporal trajectory of both the prey and the predator showed very high peaks that eventually led to the extinction of predator in all cases. In the same way the experimental time series obtained in this study does not exhibit the behavior predicted by the model of Fussman et al. On the contrary, as prey density increases, the system actually becomes more stable. Finally, the model that best explained the behavior of the predator and prey in the chemostat, at medium to high dilution rates, was the ratio dependent (algae-nitrogen) model with mutual interference measured in the chemostat (rotifer-alga) and that incorporated the age structure of the predator. Qualitative analysis of the dynamic behavior enabled evaluation of coexistence at equilibrium, coexistence on limit cycles, extinction of the predator or extinction of both populations. 相似文献
748.
In his classic study in the Siskiyou Mountains (Oregon, USA), one of the most botanically rich forested regions in North America, R. H. Whittaker (1960) foreshadowed many modern ideas on the multivariate control of local species richness along environmental gradients related to productivity. Using a structural equation model to analyze his data, which were never previously statistically analyzed, we demonstrate that Whittaker was remarkably accurate in concluding that local herb richness in these late-seral forests is explained to a large extent by three major abiotic gradients (soils, topography, and elevation), and in turn, by the effects of these gradients on tree densities and the numbers of individual herbs. However, while Whittaker also clearly appreciated the significance of large-scale evolutionary and biogeographic influences on community composition, he did not fully articulate the more recent concept that variation in the species richness of local communities could be explained in part by variation in the sizes of regional species pools. Our model of his data is among the first to use estimates of regional species pool size to explain variation in local community richness along productivity-related gradients. We find that regional pool size, combined with a modest number of other interacting abiotic and biotic factors, explains most of the variation in local herb richness in the Siskiyou biodiversity hotspot. 相似文献
749.
Pitois A Ivanov PI Abrahamsen LG Bryan ND Taylor RJ Sims HE 《Journal of environmental monitoring : JEM》2008,10(3):315-324
The distribution of 152Eu between magnesium hydroxide bulk, colloids and solution has been assessed under alkaline conditions, such as those in nuclear fuel storage ponds. The colloidal phase has been characterised by two complementary methods: coupled ultrafiltration-ICP-AES and scanning electron microscopy. The quantity and the size distribution of the colloidal phase is strongly ionic strength-dependent. A decrease of the quantity of colloids, in particular the larger size ranges, has been observed with increasing ionic strength. Small colloids (1 kDa-10 kDa fraction) are predominant at all ionic strengths. The morphology of colloids, observed by field-emission gun scanning electron microscopy, appears to change from hexagonal prismatic (characteristic to the mineral) to spherical (energetically more favourable) as size decreases. The distribution of 152Eu between the solid and liquid/colloidal phases has been investigated at carbonate concentrations ranging from 0 to 10(-2) M by coupled ultrafiltration and gamma-spectrometry. Mg(OH)2 bulk appears to be a very strong sorbent for 152Eu, since complete sorption onto the bulk happens for carbonate concentrations as high as 10(-3) M. Scavenging of 152Eu by Mg(OH)2 colloids is negligible in the presence of Mg(OH)2 bulk. The distribution of 152Eu between liquid and colloidal phases has been investigated in the absence of bulk at various carbonate concentrations. A significant uptake of 152Eu by the colloids in solution has been observed, which decreases with increasing carbonate concentration. 152Eu appears to be mainly associated to the smallest colloids (1 kDa-10 kDa fraction). There is a strong correlation between the sorption properties and the surface area of the colloids. 相似文献
750.
Escher BI Bramaz N Quayle P Rutishauser S Vermeirssen EL 《Journal of environmental monitoring : JEM》2008,10(5):622-631
We propose and evaluate a mode-of-action based test battery of low-complexity and in-vitro bioassays that can be used as a routine monitoring tool for sewage treatment efficiency and water quality assessment. The test battery comprises five bioassays covering five different modes of toxic action. The bioluminescence inhibition test with Vibrio fischeri and a growth rate inhibition test with the green algae Pseudokirchneriella subcapitata are measures of non-specific integrative effects. A second endpoint in the algae test, the specific inhibition of the efficiency of photosynthesis, gives an account of the presence of herbicides. An enzymatic assay covers an important aspect of insecticidal activity, the inhibition of the acetylcholine esterase activity. Estrogenic effects are assessed with the yeast estrogen screen (YES) and genotoxicity with the umuC test. Three field studies, each lasting six to seven consecutive days, were undertaken at a sewage treatment plant (STP) in Switzerland. Samples were collected in summer and late autumn, under dry and rainy conditions. None of the bioassays gave positive results with raw water in whole effluent toxicity testing. Therefore, water samples from various sites during wastewater treatment and from surface water were enriched with solid-phase extraction. The focus was on non-volatile compounds of average to moderate hydrophobicity, a range that includes most pesticides, biocides and pharmaceuticals. Various polar solid phases were evaluated for their extraction efficiency, disturbance by matrix components and overall performance. We finally selected a mixture of a polymeric sorbent and a C18-sorbent, Lichrolut EN and RP-18 or, alternatively, Empore SDB-RPS disks. All bioassays gave clear and robust responses with the SPE extracts. With the bioassay data the treatment efficiency of the STP can be assessed with respect to different modes of toxic action and accordingly different groups of micropollutants. Furthermore, the data allowed for a comparison between the effluent and the receiving river. In all bioassays the primary effluent had a strong effect and this effect was reduced after passing the STP. Treatment efficiency was high (typically over 90%) but varied from bioassay to bioassay, which is expected because each bioassay detects different types of micropollutants and therefore we cannot expect a common answer. 相似文献