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Jednostkowe energie rozdrabniania mięsa mrożonego

75%
В стати представлено результаты експерымеита дробления мороженого мяса в форме блокнота на спецяльной машине и пробок мороженого мяса на ударном млоте тыпа Харпы. Определено значения удельных энерги приходящих на единицу мацы и поверхности. Выказано зависимости этых параметров от ступня дробления и температуры морожения мясa.
Acidification has become recently an important environmental problem in many countries. Despite huge amount of papers published in this topic, there exist many knowledge gaps, particularly in the area of surface properties of soils and minerals and their alteration after acidic degradation of soils. Alkalization of soils, being a problem of arid zone countries, has been studied mainly from the point of view of soil amelioration and no results of the detailed studies on surface reaction with alkali are available as well. The aim of the studies performed in the present paper was to observe the changes of the surface properties of soils and clay minerals under acid and alkaline conditions in more details. Particular attention was directed upon surface inhomogeneity. Samples of most abundant clay minerals and soiJs of various mineralógica) composition were acidified and alkalized with extreme concentrations of HCL and NaOH, and studied via water vapor adsorption-desorption, mercury intrusion porosimetry and back-titration experiments. Adsorption, porous and variable surface charge properties were studied by estimations of surface areas, average adsorption energies, adsorption energy distribution functions, micro and mesopores radii and volumes, pore size distributions, fractal dimensions, amount of variable charge and apparent surface dissociation constants distributions. The general changes of the selected materials were registered also, using XRD patterns, solubility, CEC, Mossbauer spectra, magnetic susceptibility, clay and organic matter content measurements. Marked changes of the studied surface characteristics were observed in most of the materials investigated. The general tendencies of these changes for all of the samples were difficult to establish due to the great variability of natural materials, however, a few of the surface characteristics (e.g. surface areas, fractal dimension of micropores, amount of variable charge, average value of apparent surface dissociation constant) changed in a given direction with pH of acidification and/or alkalization. These characteristics may possibly be used for monitoring of environmental processes accompanied with changes of soil reaction.
In the present work problems related to surface free energy of different agricultural materials such as clay minerals, mineral soils, organic soils and forest litter were considered. Methodical investigations of surface free energy determination as well as fundamental investigations connected with the influence of the surface cations and organic substance on the wettability, free energy and interaction forces between clay minerals and soil particles were undertaken. The interaction forces between clay minerals and soil particles perform a fundamental role in aggregation, flocculation and forming of solids structure. In case of solids the surface free energy can be determined indirectly for example from the measured contact angles or from the adsorption values (by determination of film pressure jt) with appropriate theoretical assumptions. Such methods were applied in this paper to determine surface free energy components for clay minerals and soils. Because of difficulties in contact angle measurements by sessile drop method (especially for organic soils and humus) thin layer wicking or thin column wicking technique were applied. The investigations of penetration rates of water and organic liquids carried out for clay minerals and their mono ionic forms showed the close dependence between the kind of mineral and surface cation. The linear dependence of penetration rates was obtained at the lowest penetration times for bentonite and the highest for kaolin. The kind and properties (e.g. radius of hydrated ions) play in this case an important role. The empiric series of wettability, depending on clay mineral and surface cation were determined experimentally. Similar measurements were performed for clay minerals with increasing additions of humic acid and for different soils. On the basis of the measurements the surface free energy components apolar and polar (electron-acceptor and electron-donor) were calculated and correlated with the kind of clay mineral, surface cation and humic acid content. The investigations for soils show that the penetration times depend on the soil samples. Contact angle values for investigated samples were also calculated. From the water vapour adsorption measurements on the surfaces of modified clay minerals and soils the water film pressure values were calculated for one or three monolayers and compared with the work of adhesion and immersion. For soil materials surface free energy had real influence on structure formation or its changes. The organic matter and surface cations had an important role in creation of soil structure.
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