Microwave Processing of Animal Feed: A Brief Review

2019 ◽  
Vol 62 (3) ◽  
pp. 705-717
Author(s):  
Graham Brodie ◽  
Natalie Bootes ◽  
Frank Dunshea ◽  
Brian Leury

Abstract. Microwave frequencies occupy the portion of the electromagnetic spectrum from 300 MHz to 300 GHz. Microwave heating involves the simultaneous and rapid diffusion of heat and moisture through a material as a result of interactions between electromagnetic fields and polar molecules in the material. Microwave treatment of animal fodder and grains achieves many beneficial outcomes. It can be used for efficient drying and moisture leveling prior to long-term fodder storage. Localized steam explosions within the cell structures during microwave treatment also significantly increase the moisture permeability of biomass, decrease its mechanical strength, and increase its digestibility. Microwave treatment also modifies protein complexes, making some grain starches more accessible to digestion and creating “bypass proteins” that are digested in the intestines rather than in the rumen. The creation of these proteins significantly improves animal production efficiency. As a secondary benefit, microwave treatment of grain and fodder can reduce milling energy, kill weed seeds, and provide some level of bio-security for farmers. Keywords: Digestibility, Fodder, Microwave, Ruminant.

2018 ◽  
Vol 940 (10) ◽  
pp. 54-64 ◽  
Author(s):  
I.A. Belozertseva ◽  
A.A. Sorokovoj

On the basis of long-term researches of soils in the territory of Russia and Mongolia soil and ecological division into districts of the Baikal region is carried out. At division into districts the whole set of an environment of soil formation was considered. On the map of soil and ecological division into districts 13 mountain, mid-mountain, low-mountain taiga, foothill, hollow-valley, forest-steppe and steppe provinces reflecting surface device originality as the ratio of balance of heat and moisture forming a basis to zoning is shown against the background of difficult orography are allocated. In total 42 districts on lithologic-geomorphological features are allocated. In formation of distinctions of a soil cover of these provinces the leading role is played by bioclimatic factors and inside them the lithologic-geomorphological ones. In the view of structural approach of the district they are considered as territories with a certain natural change of several types of the soil cover structure caused by features of a relief and the parent rock. The map is made in the MapInfo program. It is revealed that on ill-defined width zoning of soils the vertical one which has a greater influence on soils of this region is imposed. Soils of the Baikal region are not similar to the soils located at the same latitude of the flat European territory of Russia. Zone soils of this territory are specific and original.


2021 ◽  
pp. 65-67
Author(s):  
Tatyana Nikolaevna Asalkhanova ◽  
◽  
Andrey Alexandrovich Oskolkov ◽  

The JSC «RZD» Long-term program up to 2025 envisages a digital transformation of railway transport. It dedicates a special attention to information and digital technologies of modeling advanced development of infrastructure for provision of growing traffic, increase of production efficiency, provision of expected result of traffic safety and industry economics in whole. The paper presents a design of the information model for infrastructure control within the framework of introduction of the BIM RZD Automated Control System on the example of organization of transport production of permanent way work.


CHEST Journal ◽  
1992 ◽  
Vol 102 (3) ◽  
pp. 979-980
Author(s):  
Benoît Misset ◽  
Bernard Escudier ◽  
Daniel Rivara ◽  
Bernard Leclercq ◽  
Gérard Nitenberg

2010 ◽  
Vol 16 (4) ◽  
pp. 399-403 ◽  
Author(s):  
Zvonko Njezic ◽  
Jasmina Zivkovic ◽  
Biljana Cvetkovic

Food production is a top priority issue, as the lack of food for the continuously growing population is becoming an increasing problem in the world and in Serbia as well. Increase of food production for humans and animals can be achieved by use of new technologies in biotechnology, i.e. in bio-industry. Nowadays, there are many different ways for thermal processing of cereals: toasting, extrusion, hydrothermal processing, micronization, microwave treatment, while in Serbia, most frequently used processes are extrusion and hydrothermal processing. Baking industry is highly developed in Serbia. Bread consumption per capita in Serbia is far above average consumption in EU. According to the survey conducted, there is a significant amount of leftover bread in Serbia. Leftover bread represents an environmental problem, but also potentially valuable raw material for human food and animal feed.


2018 ◽  
Vol 92 (16) ◽  
Author(s):  
Roland Remenyi ◽  
Yanni Gao ◽  
Ruth E. Hughes ◽  
Alistair Curd ◽  
Carsten Zothner ◽  
...  

ABSTRACTChikungunya virus (CHIKV), a mosquito-borne human pathogen, causes a disabling disease characterized by severe joint pain that can persist for weeks, months, or even years in patients. The nonstructural protein 3 (nsP3) plays essential roles during acute infection, but little is known about the function of nsP3 during chronic disease. Here, we used subdiffraction multicolor microscopy for spatial and temporal analysis of CHIKV nsP3 within human cells that persistently replicate replicon RNA. Round cytoplasmic granules of various sizes (i) contained nsP3 and stress granule assembly factors 1 and 2 (G3BP1/2), (ii) were next to double-stranded RNA foci and nsP1-positive structures, and (iii) were close to the nuclear membrane and the nuclear pore complex protein Nup98. Analysis of protein turnover and mobility by live-cell microscopy revealed that the granules could persist for hours to days, accumulated newly synthesized protein, and moved through the cytoplasm at various speeds. The granules also had a static internal architecture and were stable in cell lysates. Refractory cells that had cleared the noncytotoxic replicon regained the ability to respond to arsenite-induced stress. In summary, nsP3 can form uniquely stable granular structures that persist long-term within the host cell. This continued presence of viral and cellular protein complexes has implications for the study of the pathogenic consequences of lingering CHIKV infection and the development of strategies to mitigate the burden of chronic musculoskeletal disease brought about by a medically important arthropod-borne virus (arbovirus).IMPORTANCEChikungunya virus (CHIKV) is a reemerging alphavirus transmitted by mosquitos and causes transient sickness but also chronic disease affecting muscles and joints. No approved vaccines or antivirals are available. Thus, a better understanding of the viral life cycle and the role of viral proteins can aid in identifying new therapeutic targets. Advances in microscopy and development of noncytotoxic replicons (A. Utt, P. K. Das, M. Varjak, V. Lulla, A. Lulla, A. Merits, J Virol 89:3145–3162, 2015,https://doi.org/10.1128/JVI.03213-14) have allowed researchers to study viral proteins within controlled laboratory environments over extended durations. Here we established human cells that stably replicate replicon RNA and express tagged nonstructural protein 3 (nsP3). The ability to track nsP3 within the host cell and during persistent replication can benefit fundamental research efforts to better understand long-term consequences of the persistence of viral protein complexes and thereby provide the foundation for new therapeutic targets to control CHIKV infection and treat chronic disease symptoms.


Agronomy ◽  
2019 ◽  
Vol 9 (11) ◽  
pp. 699 ◽  
Author(s):  
Steiner ◽  
Starks ◽  
Neel ◽  
Northup ◽  
Turner ◽  
...  

The Great Plains of the USA is one of largest expanses of prairie ecosystems in the world. Prairies have been extensively converted to other land uses. The remaining prairie ecosystems are important for livestock grazing and provide benefits including habitat for avian, terrestrial, and aquatic species, carbon regulation, and hydrologic function. While producers, land management agencies, and some researchers have promoted livestock management using rotational stocking for increased production efficiency and enhanced ecosystem function, scientific literature has not provided a consensus on whether rotational stocking results in increased plant biomass or animal productivity. To address this research need, we established long-term grazing research using an adaptive management framework to encompass a wide range of production and ecological interactions on native grassland pastures. This paper describes objectives, design, and implementation of the long-term study to evaluate productivity and ecological effects of beef cow–calf management and production under continuous system (CS) or rotational system (RS) on native tallgrass prairie. Findings from 2009 to 2015 indicate that plant biomass and animal productivity were similar in the two grazing management systems. There were some indicators that forage nutritive value of standing biomass and soil nutrient content were enhanced in the RS system compared with the CS, yet individual calf body weight (BW) at weaning was greater in the CS. This prepares us to engage with producers to help determine the focus for the next phase of the research.


1991 ◽  
Vol 74 (5) ◽  
pp. 857-861
Author(s):  
Philip P Sapienza ◽  
George J Ikeda ◽  
Patricia I Warr ◽  
Richard H Albert

Abstract The homogeneity of test substances in a carrier (animal feed) is a critical factor In conducting long-term feeding studies in laboratory animals. A method for determining the adequate amount of mixing to achieve homogeneity by a mixer of the type described has been determined when 2 distinctly different compounds are added to ground dog feed. Nicotinic acid and butylated hydroxyanlsole at a concentration of 1% were separately mixed with the dog feed for 15,30,45,60, and 120 min to determine optimum mixing time. Test portions were taken from 4 different sampling sites at each time period and analyzed in duplicate for the added substance. Four batches were prepared and the results were aggregated. Very little interbatch variability was observed. The variance of the average values from the 4 sampling sites at each time period was calculated and used as a simple, crude, but effective numerical quantity to monitor the approach to homogeneity of the mixture.


2007 ◽  
Vol 2007 ◽  
pp. 197-197
Author(s):  
Hassan Fazaeli ◽  
Seyed Ahmad Mirhadi

Biological de-lignification of straw by white-rot fungi seems a promising way of improving its nutritive value. The bio-conversion of lignocellulosic materials is circumscribed to the group of white-rot fungi, of which some species of Pleurotus are capable of producing upgraded spent-straws as ruminant feed (Fazaeli et al., 2004). Treating of cereal straw with white-rot fungi as animal feed was studied by several workers (Gupta et al., 1993; Zadrazil, 1997). However, most of the trials were conducted at in vitro stage and used cell wall degradation and in vitro digestibility as an index to evaluate the biological treatments. This experiment was conducted to study the effect of fungal treatment on the voluntary intake, in vivo digestibility and nutritive value index of wheat straw obtained from short-term and long-term solid state fermentation (SSF).


2014 ◽  
Vol 96 ◽  
pp. 39-44
Author(s):  
Brais Vazquez ◽  
Alessia Nicosia ◽  
Franco Belosi ◽  
Gianni Santachiara ◽  
Paolo Monticelli ◽  
...  

In recent decades, Heat and Moisture Exchange (HME) devices have been employed increasingly for short-term use in anaesthesia and long-term use in intensive care units. These devices work as heat exchangers, accumulating the patient’s expired heat and moisture and returning them to the patient during the inhalation phase. Porous matrices obtained from freeze-drying of blends of natural polymers exhibit high open and interconnected porosity and water vapour intake characteristics which make them possible candidates for HME devices. Preliminary tests were conducted on specimens made of gelatine blended with chitosan and treated with a non-toxic cross-linking agent. The tests were carried out in cyclic flow conditions with saturated and dried air. Results show water vapour retention comparable with accepted standards for HME devices.


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