The main results of research work of the Anapa Zonal Experimental Station of Viticulture and Winemaking –branch of FSBSI NCFSCHVW in 2018

Author(s):  
A.A. Lukyanov ◽  
Author(s):  
M.P. Kolosovych ◽  
L.A. Hlushchenko ◽  
T.L. Shevchenko

Aim. To study accessions of new medicinal plants, to form and augment collections, to use valuable accessions of the gene pool in breeding and collections for educational and outreach activities. Results and Discussion. We present results of multi-year research work on creating collections of medicinal and essential-oil-bearing plants, their using in breeding, training and educational activities. The collection of the Botanical Nursery of the Experimental Station totals 990 samples belonging to 436 species of 254 genera of 69 families. The following genera are most fully represented: Mentha – 13 species (263 samples), Thymus L. – 11 species, Salvia L. – 6, Echinacea Moench – 6 (29 samples), etc. The collection consists of accessions from 22 countries: 605 from Ukraine, 29 from Russia, 22 from Germany, 12 from Bulgaria, 11 from the USA, 5 from France, etc. Training collections of mint and medicinal plants, trait collections of calendula, thyme, and echinacea and the basic collection of mint were formed and registered with the NCPGRU. Collections are dynamically being formed, and accessions of tree/shrub medicinal species belonging to the genera Sambucus L., Berberis L. and Crataegus L. are being studied. Selected accessions and sources of economically valuable traits are constantly involved in breeding. Ten new varieties of medicinal plants were originated from the gene pool accessions variety Yuvileina (2018) – from Dalmatian chamomile , variety Poltavka (2018) – from blessed milk thistle, variety Berezotitska Soniachna (2020) – from pot marigold, variety Struminka (2020) – from dyer's-madder. Acquisition companies in 14 regions of Ukraine resulted in gathering the gene pool accessions of valuable medicinal species for breeding and investigating: 720 seed samples, 62 planting material samples, 42 raw material samples and 691 herbarium specimens. Conclusions. The exploratory research at the Experimental Station of Medicinal Plants of IAEM NAAS allowed building up unique collections of medicinal and aromatic plants, accessions of which are used in breeding, training and educational activities, as well as to preserve the biodiversity of domestic and wild plants.


Author(s):  
O. Mudroch ◽  
J. R. Kramer

Approximately 60,000 tons per day of waste from taconite mining, tailing, are added to the west arm of Lake Superior at Silver Bay. Tailings contain nearly the same amount of quartz and amphibole asbestos, cummingtonite and actinolite in fibrous form. Cummingtonite fibres from 0.01μm in length have been found in the water supply for Minnesota municipalities.The purpose of the research work was to develop a method for asbestos fibre counts and identification in water and apply it for the enumeration of fibres in water samples collected(a) at various stations in Lake Superior at two depth: lm and at the bottom.(b) from various rivers in Lake Superior Drainage Basin.


Author(s):  
G.D. Danilatos

The advent of the environmental SEM (ESEM) has made possible the examination of uncoated and untreated specimen surfaces in the presence of a gaseous or liquid environment. However, the question arises as to what degree the examined surface remains unaffected by the action of the electron beam. It is reasonable to assume that the beam invariably affects all specimens but the type and degree of effect may be totally unimportant for one class of applications and totally unacceptable for another; yet, for a third class, it is imperative to know how our observations are modified by the presence of the beam. The aim of this report is to create an awareness of the need to initiate research work in various fields in order to determine the guiding rules of the limitations (or even advantages) due to irradiation.


2020 ◽  
Vol 91 (3) ◽  
pp. 31301
Author(s):  
Nabil Chakhchaoui ◽  
Rida Farhan ◽  
Meriem Boutaldat ◽  
Marwane Rouway ◽  
Adil Eddiai ◽  
...  

Novel textiles have received a lot of attention from researchers in the last decade due to some of their unique features. The introduction of intelligent materials into textile structures offers an opportunity to develop multifunctional textiles, such as sensing, reacting, conducting electricity and performing energy conversion operations. In this research work nanocomposite-based highly piezoelectric and electroactive β-phase new textile has been developed using the pad-dry-cure method. The deposition of poly (vinylidene fluoride) (PVDF) − carbon nanofillers (CNF) − tetraethyl orthosilicate (TEOS), Si(OCH2CH3)4 was acquired on a treated textile substrate using coating technique followed by evaporation to transform the passive (non-functional) textile into a dynamic textile with an enhanced piezoelectric β-phase. The aim of the study is the investigation of the impact the coating of textile via piezoelectric nanocomposites based PVDF-CNF (by optimizing piezoelectric crystalline phase). The chemical composition of CT/PVDF-CNC-TEOS textile was detected by qualitative elemental analysis (SEM/EDX). The added of 0.5% of CNF during the process provides material textiles with a piezoelectric β-phase of up to 50% has been measured by FTIR experiments. These results indicated that CNF has high efficiency in transforming the phase α introduced in the unloaded PVDF, to the β-phase in the case of nanocomposites. Consequently, this fabricated new textile exhibits glorious piezoelectric β-phase even with relatively low coating content of PVDF-CNF-TEOS. The study demonstrates that the pad-dry-cure method can potentially be used for the development of piezoelectric nanocomposite-coated wearable new textiles for sensors and energy harvesting applications. We believe that our study may inspire the research area for future advanced applications.


1987 ◽  
Vol 26 (04) ◽  
pp. 189-194
Author(s):  
S. S. El-Gamal

SummaryModern information technology offers new opportunities for the storage and manipulation of hospital information. A computer-based hospital information system, dedicated to urology and nephrology, was designed and developed in our center. It involves in principle the employment of a program that allows the analysis of non-restricted, non-codified texts for the retrieval and processing of clinical data and its operation by non-computer-specialized hospital staff.This Hospital Information System now plays a vital role in the efficient provision of a good quality service and is used in daily routine and research work in this hospital. This paper describes this specialized Hospital Information System.


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