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Artykuły w czasopismach na temat "Livestock effluent production during transport"

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Mouri, Goro, Seirou Shinoda, and Taikan Oki. "Estimation of total nitrogen transport and retention during flow in a catchment using a mass balance model incorporating the effects of land cover distribution and human activity information." Water Science and Technology 62, no. 8 (August 1, 2010): 1837–47. http://dx.doi.org/10.2166/wst.2010.208.

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The load of total nitrogen (TN) in stream water was surveyed in the Nagara River Basin (2,000 km2), central Japan. Multivariate analysis placed the TN data in an environmental and social context, relating TN to land use conditions such as geologic features, population density, and percentage of the population using the sewer system. Multivariate analysis was used to examine relationships among the land use distribution with and without human activity and the amount of pollution effluent from waste water treatment plants (WWTP). The pollution load in stream water is related to characteristics o
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Cumby, T. R., and V. R. Phillips. "Environmental impacts of livestock production." BSAP Occasional Publication 28 (2001): 13–22. http://dx.doi.org/10.1017/s1463981500040930.

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AbstractLivestock production under Northern European conditions can affect water, air and soil. Examples of the possible environmental effects on water are fish kills or microbial contamination, if solid manure, slurry, “dirty water” or silage effluent are collected, stored, handled or spread inappropriately. Examples of the possible environmental effects on air are emissions of ammonia (which can lead to acidification and, after subsequent deposition, to eutrophication), the greenhouse gases methane and nitrous oxide, odours and particulates.In the case of water pollution, good management pra
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Krediet, Raymond, and Alena Parikova. "Non-invasive assessment of peritoneal membrane alterations." Bulletin de la Dialyse à Domicile 3, no. 3 (August 20, 2020): 119–26. http://dx.doi.org/10.25796/bdd.v3i4.55893.

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The peritoneal dialysis membrane is subject to remodelling in the course of peritoneal dialysis. In the absence of longitudinal morphological studies, this process is mainly studied indirectly by the investigation of changes in peritoneal transport. Non-invasive assessment of the peritoneum is also possible by assessment of substances that originate from peritoneal tissues and can be determined either as their gene expression in peritoneal effluent cells and/or as proteins in peritoneal effluent. Three of these biomarkers will be discussed, because longitudinal data are available.
 Cancer
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Randall, J. M. "Environmental parameters necessary to define comfort for pigs, cattle and sheep in livestock transporters." Animal Science 57, no. 2 (October 1993): 299–307. http://dx.doi.org/10.1017/s0003356100006929.

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AbstractMost livestock are transported at least once during their lifetime. Environmental conditions inside the transporter are critically dependent on many factors which can be controlled by well designed and carefully operated ventilation systems. Heat, moisture and carbon dioxide production of cattle, pigs and sheep are fitted to simple models as bases for ventilation design criteria. These assume that the animals are not well fed immediately before or during transport and that maintenance metabolic heat production applies. Interactions between temperature and humidity during transport are
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Erian, Ihab, Michelle Sinclair, and Clive J. C. Phillips. "Knowledge of Stakeholders in the Livestock Industries of East and Southeast Asia about Welfare during Transport and Slaughter and Its Relation to Their Attitudes to Improving Animal Welfare." Animals 9, no. 3 (March 19, 2019): 99. http://dx.doi.org/10.3390/ani9030099.

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The World Organisation for Animal Health (OIE) sets standards and guidelines for international animal welfare for the international livestock trade. The growing economic advancement in the East and Southeast Asian region suggested the potential benefit of a research study to examine stakeholders’ understanding of animal welfare during the transport and slaughter of livestock. A survey of stakeholders’ knowledge of livestock welfare in the transport and slaughter industries was conducted in four Southeast Asian countries, Malaysia, China, Vietnam and Thailand, in association with trainer and st
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Hoskins, Tyler C., James S. Owen, Jeb S. Fields, James E. Altland, Zachary M. Easton, and Alex X. Niemiera. "Solute Transport through a Pine Bark-based Substrate under Saturated and Unsaturated Conditions." Journal of the American Society for Horticultural Science 139, no. 6 (November 2014): 634–41. http://dx.doi.org/10.21273/jashs.139.6.634.

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An understanding of how dissolved mineral nutrient ions (solutes) move through pine bark substrates during the application of irrigation water is vital to better understand nutrient transport and leaching from containerized crops during an irrigation event. However, current theories on solute transport processes in soilless systems are largely based on research in mineral soils and thus do not necessarily explain solute transport in soilless substrates. A study was conducted to characterize solute transport through a 9 pine bark:1 sand (by volume) substrate by developing and analyzing breakthr
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Shulyak, Mikhail, Oksana Pankova, Ivan Kolesnik, Kirill Sirovitskiy, and Evgen Gaek. "Usage of information technologies for increasing quality of transport operations." SHS Web of Conferences 67 (2019): 05002. http://dx.doi.org/10.1051/shsconf/20196705002.

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Among the whole cycle of interconnected technological operations for crop and livestock production, transport operations play a significant part: transportation of seed grain, forage, fertilizers, product transportation to storage and selling places. Transport operations account for 15-25% of the production cost. According to the analysis of recent research, the development and introduction of new methods for ensuring the quality and safety of production. For a tractor on transport works the task of increasing the functional precision at which it is solved its deviation from the roadway config
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Kharchenko, Serhii, Oksana Pankova, Mikhail Shulyak, Alexander Anikeev, and Kirill Sirovitskiy. "Optimization of agroecological efficiency of transport processes in agriculture." SHS Web of Conferences 67 (2019): 03004. http://dx.doi.org/10.1051/shsconf/20196703004.

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Agricultural production is dispersed in huge areas and requires the transfer of a large number of technological and operational materials, intermediate and final products. Therefore, in the agricultural sector, transport occupies an important place: it begins and completes the processes of crops production and livestock products and carries out technological connections between individual states of work. With the development of agricultural production, the role of transport is steadily increasing: if at present, at the average 45...50 tons of different cargoes is the share of each hectare of p
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Vidic, B., S. Savic, and N. Prica. "Identification of risk factors for Salmonella spp. in pigs and control measures during management and transport of animals." Biotehnologija u stocarstvu 31, no. 4 (2015): 457–66. http://dx.doi.org/10.2298/bah1504457v.

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Pigs and pork meat products are common source of human salmonellosis. Salmonella can enter the food chain at any point such as the livestock feed, via the on-farm production site, at the slaughterhouse or packing plant, as well as during manufacturing, processing and retailing of food, or through catering and food preparation at home. The understanding of epidemiology of Salmonella sp. at all stages of production chain is of crucial importance. The production of ?Salmonella free pigs? would reduce the risk for the occurrence of human infections Also, production of ?Salmonella free pigs? is dif
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Olugbemi, T. S., and E. A. Salihu. "COVID-19 pandemic and its effect on livestock production: A review." Nigerian Journal of Animal Production 48, no. 4 (March 8, 2021): 70–78. http://dx.doi.org/10.51791/njap.v48i4.3017.

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The novel COVID-19 pandemic came with its swindling effect on all sectors of the economy and the livestock sector is not spared. Its impact on livestock production and value chain in Nigeria as in many other countries of the world cannot be overemphasized and can be best understood from the decline in agricultural and other related economic activities, which were brought to almost a total halt during the pandemic. The lockdown policy instituted by various governments affected local and national food production as farmers could not go to their farmlands. Livestock and related products productio
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Rozprawy doktorskie na temat "Livestock effluent production during transport"

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Thull, Jean-Paul. "Management of stock effluent spillage from trucks in New Zealand." Lincoln University, 1999. http://hdl.handle.net/10182/778.

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The key objective of this multi-disciplinary research was to seek for feasible solutions to avoid effluent from livestock trucks spilling onto roads. Stock effluent spillage mainly poses road safety hazards and environmental damage, and also causes offence to road users and tourists. This task required reviewing previous institutional actions, assessing the power of the existing legislation, and evaluating the interests and attitudes of the stakeholder groups involved in the overall livestock supply chain. It was also necessary to consider politics, administration, public policy and economics,
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Części książek na temat "Livestock effluent production during transport"

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Chidi, Nosiri, Anyanwu Chukwuma, and Nwaogwugwu Joel. "Impact of Emerging Agricultural Contaminants on Global Warming." In Emerging Contaminants. IntechOpen, 2021. http://dx.doi.org/10.5772/intechopen.94170.

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There are many definitions of emerging contaminants (ECs). They are not usually new chemicals and could be substances that have stayed long in the environment with their presence and importance being recognized now. They may be chemicals or microorganisms which are not usually monitored in the environment but with known or suspected potential to cause ecological damage or adverse human effects. Some natural products and those transformed through biochemical processes from synthetic chemicals may be formed in the environment as ECs. Emerging Agricultural Contaminants are released to the environment or enter indirectly to the soil during the application of manure, fertilizers, biosolids or other solid waste materials. Once they enter the soil, they may be transported by leaching, runoff and drainage processes to water bodies. The extent of the transport is dependent on the persistence of the EC and on how it interacts with soil and air. These ECs contribute to global warming through the emissions of Greenhouse gases. The largest source of GHG emission from Agriculture is Nitrous oxide (N2O) and it accounts for 38% of the total global emission through the process of nitrification and denitrification, anthropogenic activities (use of nitrogen fertilizer, production of nitrogen-fixing crops and forages, retention of crop residues, application of managed livestock manure) which are either through direct additions and/or through indirect additions (atmospheric deposition of applied nitrogen). The natural digestive processes in ruminants otherwise known as enteric fermentation account for the key source of methane production under livestock production hence the second largest source of total agricultural emission with 34% global share and rice cultivation being the third with 11%. The three important greenhouse gases (Methane, Carbon dioxide and Nitrous oxide) are not harmful in naturally occurring quantities for their atmospheric presence helps in sustaining life on the planet when they trap heat energy near the surface of the earth. Concentration of greenhouse gases from both the natural and human factors have been increasing and contributing to Global Warming and Climate Change. Increase in greenhouse gases may cause tremendous changes to our civilization positively or negatively but the total impact is uncertain. Climate change comes as a result of a warming planet which can affect the weather adversely in many ways. So, as climate changes, extreme weather activities release severe threats on human society. Indicators of global warming include sea surface temperature, temperature over land, snow cover on hills, temperature over land and humidity. It is expected that climate change may cause more floods, storms, droughts, heatwaves and other extreme weathers activities. IPCC estimated that temp may rise from 2 to 6°C within 2021. Mitigation of greenhouse effect could be achieved through Biochemical methods on enteric fermentation, development of good environmental policies even Methanotrophs also aid in recycling the atmospheric Methane.
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