SCIENTIFIC ABSTRACT VONDRAKOVA, I. - VONDRASEK, J.
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CIA-RDP86-00513R001860810007-0
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S
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100
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November 2, 2016
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December 31, 1967
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SCIENTIFIC ABSTRACT
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01-ganization of vards for navborn; care of premature, Fediat.
11'sty 6 n0-3:182-164. YAW-JurA 1951, (CIM 20: 11)
IN Of the Institute of Care for Mother and Child in Prague-
Podole (Director - Prof. J. Trapl). Read of the Pediatric
Division Docent K. lubat, MeD,
M 77 '-it
L 947846 DD
ACC NRs Ap6019953 SOURCE CODF,, oz/oo7g/65/007/003/0236/0238
AUTHORt Vohdrakovap.Me
OR6 DepaAm"sn't1of Reneral Hygiene and Communal Hygien6# Medical Fa6iiltr of HyRien
,-;'Charles Universityg Prague (Katedra, bygieny'obacne a kom~~lni ~Iek# ~fak, hygienicke
KU)
TITLE.- Changes in the serum level offree fatty acids in rate repeatedly exposed
to noise
SOURCEt Activitas nervosa superior, v. 7p no* 30 1965p 236-238,
'TOPIC TAGS: 'ratp'acoustic biologic effect# nerump,biochemistry
...IBSTRACTs Changes in the content of free fatty abide in the serum of the rate Indl-
cate that repeated noise influences their levelo The level of the acids increases..
substantially after extende.d exposure to toisee. No differsices in th'einfluence of
noise were due.to the age of the rats when firet'exposed to the noise* Orig. art.
1 2 tables& ri P i ~_7
simm DATEt WeW
6rd:
BABUREK, Jiri; VONDRAKOVA., Milena, inz.
Comparison of properties of paper clays. Papir a celulosa 19
no. 7:195-197 Jl 164.
1. Institute of Plain Pottery Technology and Ceramic Material
Dressing, Karlovy Vary (for Baburek). 2. Research Institute of
Paper ard Cellulose, Prague.
BABUREK, Jiri; VONDRAKOVA, Milena
Examimition of monodisperse fractions of Sedlec kaolin vith the
electron microscope, Silikaty 7 no.4s284-293 163,
I., Ustav technologie hrube keramiky a upravnictvi keramickych
surovin, Karlovy Vary; Vyzkumrq ustav papiru a colulosy, Praha,
Z/009/61/000/012/001/005
E112/E953
AUTHORS:
TITLE;
PERIODICAL:
Zahradnfk"Lubom:(r, Form4nek Zdendk, gfovfk
Miroslav, Tyroler Jii4f and_Vondrdkovd Zden'a
Recovery of germanium dioxide from f1w -dusts
Chemick~ pr&Wsl, no.12, 1961, 625-629
TEXT: The only domestic sources of germanium in Czecho-
slovakia are the flue dusts from certain coals (germanium contents
range from 0.2 to 0.8%) and the present paper discusses three
possible methods of recovery via germanium dioxide: 1) Extraction
with water or inorganic solvents, such as H S04 -HC1 HNOA, NaOH
and ONH02SX,oBest results are achieved witi 0.65 N-A2S04_1
yielding up ()7% of the available germanium. Extraction
efficiency is closely connected with.the physical characteristics
of the flue dusts, good recoveries being obtainable only with flue
dusts of very fine particle size. Furthermore, only..germanium
available in soluble form will respond to the method. 2) Chlorin-
ation of flue &usts. This process can be operated either at lower
temperatures, in presence of steam, or at high temperatures, in
presence of air. Compared to the distillation method with HC1,
Card I
Recovery of germanium ?,/009/61/000/012/001/005
B112/E953
yields of germanium are inferior and the recovered proaucts less
pure. A further :?ectification'is therefore necessary. The
chlorination method, on the other hand, offers the advantage that
even very low-content flue dusts can be processed. 3) Direct
distillation with HG1. This method is considered the simplest from.
.the technological point of view. It is only suitable for raw
materials', containing germanium in a volatilisable form and is not
economical for flue-dusts with low germanium content, The ME:thod
consists of treating the flue dust with HC1, and procedures for 1,-he
separation of the formed GeC14 are described in detail. So far,
this has been effected in two ways: a) Absorption of the gaseous
mixture in water, containing 20% HC1. A recovery of 2-13 9
germanium per I litre is feasible but this is considered unsatis-
factory, b) Foparation of germanium tetrachloride by condensation.
However considerable amounts of GeCli, are entrained by HC1, and
the metAod is, therefore, rejected as uneconomical. The authors
now offer a new pro!-.edure for GeC14 absorption, based on the use
of non-polar solvents, of which carbon tetrachloride has proved
the most suitable. The efficiency of a 0.2% GOC14 solution in CCII,,
Card 2/~
Recovery of germanium ... Z/009/61/000/012/001/005
E112/E953
is given as 97-99-5% at 20*C. As practical processing would
require large volumes of CC1 (1500 kg/kg Ge) a two-step absorp-
tion process is suggested. diagram of a laboratory arrangement
for the continuous recovery of germanium tetrachloride by the
carbon tetrachloride method is shown (Fig.6). The apparatus
operates under slight vacuum and has a capacity of 30 kg flue
,dust per day. The solution of GeCl in CCl is preliminarily
refined by extraction with concentrated hydrochloric acid,
ontaining 10% nitric acid. 1~ydrolysis of GeCl is carried out
in the usual way. The experience gained in laboratory trials
led to the construction of a semi-technical batch-wise unit,
which in two months produced 10 kg germanium dioxide from 1000 kg
flue dust. There are 5 tables, 5 figures and 5 references:
12 Soviet-bloc and 3 non-Soviet bloc. The English-language
references read as follows: Ref.l: Journal of Metals, 979(1953);
Ref.2: Johnson O.H., Chemical Reviews, V01,51, 432 (1952);
Ref-5: Aubrey K.V., Nature, vol.176, 2 (19 5).
I If
ASSOCIATION: Ustav nerostnych surovin, Praha
(Institute for Mineral Ravi Materials, Prague)
Card 3
Recovery of germanium ... Z/009/61/000/012/001/005
E112/E953
SUBMITTED: January 16, 1961
Fig.6. Legend.
1- mixing vessel, with stirrer, for absorption of flue dust in
hydrochloric acid,
314 - steam-heated boiling tubes,
5 - separator,
6 - condenser,
7 - absorption vessel,
8 - absorption column with Raschig rings,
10- separating funnel with CC14,
9 - condenser, cooled to OOC,
11- reservoir, to which a slight vacuum is applied.
Card 4/~
VONDRAKOVAq Zdenas inz.j ZAHRADNIK, Lubomirp dr-, inz-o Uhreat statn-4
-."'l"=mWfvj3TOVIK, Hiroslav, inz., laureat atatni cany
GaMum and ita rav materials in Czaaboolovakia. Geol pruzkum
5 no. 5142-143 Vq 163.
1. Ustav nerostnych suroving Kutna Horap pracoviste v Fraze.
23566
jj ~,o 11097 z/oog/61/000/007/001/004
E112/EI35
AUTHORSs Zahradnik, Lubom~rj Forma'nek, Zden4k, 9?ovfk, Miroslav,
Tyroler, Jii-i, and VondrAkovd, Zdans.
TITLEs Properties of furnace flue dusts and their use for the
recovery of germanium
PERIODICALs Chemlck~ pruemysli 1961, No-7, PP. 337-341
~TEXTs Coal which is rich in germanium was &shed in a reducing
atmosphere and Coarser fractions were separated by means of
cyclones. Flue dust of finer particle size was recovered by
electrostatic separation and this contained up to 1% germanium.
Industrial recovery of germanium was considered feasible and
therefore laboratory methods for its extraction and the nature of
the bond between germanium and the flue dust particles were studied.
The flue dust was separated into different fractions according to
particle size and the relationship between germanium concentration
nd particle size was investigated. Germanium contents decreased
s the particle size increased and, consequently, main attention
:
was paid to flue dust smaller than 60 u (0.12% Ge). During the
ashIng of coal a number of elements are volatilized and absorbed
Card 1/4
23568
Z/oo9/61/000/007/001/004
E112/E133
Properties of furnace flue dusts and their use for the'recovery of
germanium
from the gaseouis phase by the flue dust particlec. The sorption
process was studied by determining the concentrations of the
various elements in the original coal and the flue dust.
Spectroscopic methods of analysis were used and results are
tabulated. On -the average, the flue dusts contained between 27
and 33% combustible materials. Their concentration decreased on
extraction with 0,2 N-H2SO4, indicating that they did not consist
entirely of carbon. Results for three types of flue dust are
tabulated, showing the following; 1) lose of weight of flue dust
on calcination; 2) loss of weight of flue dust on calcination,
after extraction with H2SO4; and 3) loss of weight of flue dust
on extraction with H2SO4- Results of spectrographic analyses of
flue dusts, H2SO4-extracts and extraction residues are submitted,
listing all elements occurring in the three different fractions in
the following'concentrationst 1) higher than 1%; 2) 1.0-0.1%;
3) 0.1-0.01%; and 4) lower than 0.01%. The following values are
tabulated for germanium: original sample of flue dust, I - 0.1%;
Card 2/ 4
23568
z/oog/61/000/007/001/004
E3,12/E135
properties of furnace flue dusts and their use for the recovery of
germanium
112SO4-extract, I - 0.1%1 ashing residue of H004-extracto 0.1 -
0.01%. Extraction methods for germanium from flue dusts, using
water, acids, sind.alkaliss, are described. Water extraction
recovered about 50%,of the available germanium. Extractability
with HZS04 was inversely proportional to the concentration of the
latter, (20 N-112SO4 extracted 64.5% Ge, while 0.05 N-H2SO4 gave
96.7% recovery). on the other hand, extractability with HC1
inereaseB with increased concentration. Recovery of Ge by means
of HNO was not feasible. The separation of Ge by means of HC1
from t9e coarser fly ashes is also described. An addition of HF
(in the form of CaF2) is recommended to convert the SiO2 to SiF4,
which in driven off by heating. Extraction with weakly alkaline
solutions was somewhat inferior to processing with dilute acids.
In order to obtain additional information about the isolation of
germanium from flue dusts, the volatility of germanium dioxide at X
different temperatures was studied and results are tabulated. It
was found that up to 400 OC germanium was not volatile and was
Card 3/4
23568
z/oog/61/000/007/001/004
Properties of furnace flue dusts E112/2135
assumed to be present as de02, easily soluble in alkalies. On the
other hand, samples of flue dust, heated under identical conditions,
showed poor extractability of Ge by means of dilute sulfuric acid.
This is explained by the poor solubility of Ge02 in H2SO4- It is
concluded from laboratory experiments that flue dusts containing
0.3-1.0% Ge present a suitable raw-material for a Czechoslovak
germanium recovery industry. Extraction with dilute sulfuric acid
or treatment with HCI and distillation as GeC14, optionally in a
tream of HC1, are suggested. The described laboratory methods
ere utilized for industrial scale production, details of which are
:
to be published later,
There are 7 figures, 12 tables and 12 referencess 3 Czech,
7 English and 2 German,
ASSOCIATION: Ustav nerostny"ch surovin, Praha
(Institute for Mineral Raw-Materials, Prague)
SUBMITTED:' January 16, 1961
Card 4/4
SIOO11621000101910191053
B144/B160
AUTHORS Stovik,, Miroslax, 't"ahradnik, Lubomir, Tyroler, JiM, Vondra-
kov&t Z a~a FqrmaAe1,.,'Zdenck
-TITLE: 'Proaac ti
~n.of ~6ncentratea of germanium hnd other trace el6_'
men-ts by )bUrninj; coaLl in furnaco eintee
PERIODICAL: Reforativnyy 2hurnal.~ Khimiyaj no. 19, 1962, 340, abstract.;
1,)K82 (Czechozlo-ia'r'.ian patent ','99414$ April 15, 1961)
TEATi When coal is burn~,d in furnaces, -almost all the Go is carried a-way
with the finer fractions in the form of volatile compounde. For more com-
lete removal it is suSppoted that the coal should be burnt in a reducing
atmozphere.To this end the entry of primary.air'from below is restricted to
a minimum and that of secondary air above the f;rate is increased. The, ammt,
of Ge compounds adsorbed In the thin fractions then rises to 80i"', the Go con-
tent of the coal. The combustion Cases are led through a cyclone, where
ihe lareest particles are separated, and then through an electrostatic fil-
ter and a second cyclone. Alternatively, after sep3rating the laree par-
ticlest the gas is passed through a scrubber, (with either mineral or sili-
Card .1 /2
3/081/62/000/019/019/053
Production of concentratou B144/B18O
cone oil), and then conducted through a Iydrocyclone and a centrifuge, -.,;hero'
them thin fraction is separated. The wash liquid is continuously recycled.
Additions of by, Y.-O.Cht sulfur (pyvite) to the coal promote, the fori~,.a-
tion of vglatile Ge compotin-Js (Gaj, Ge&'2). DiaCrams of the process are
shovM. [Abs tracter's notet Uompleto translation
Card,2/2
ZAHRADNIK, Lulvair; FOFMANUP Zdenek; STOVIX, Miroslav; TYROLER, Jirij-
VOIWWCYA,,-, Zdana.,
Refinemont of germaniwn dioxide. Cherm prum 12 no.2:60-63 F 162.
1,'Ustair nerostnych surovin, Praha.
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fit OC11" 't.
A Ji ". - I- . -- ,
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00 .4 suppitment to the directious (of Cdff)`~Qg Out C11CMIC41 analyses Is sugar Mills
00 steardinS to standirdire4 methods. JA L- % &Ltj_Z lutktrisvi ('((bs1-nvk
aT Ho"p. 57'.'M 4141-MLI); DJOY Chir.4dr 51. # C&. .1, 26'M I Forlhig ill., "JAIM mlt .6
s
o It'. hi, last -tn.. 215 cc. ill a hot unfJtt" jukv !- treatt'l with ") dfup% Id a () lll~jr
0 V11Y."Jol"41 thg1rill g1jil CjjCl, %4n. (14 X p~v Im cc I stut athr %hAlLing will thr v4m i~
1);., 05 inin. At 4 cswrmt SILY. thr C(Aor Alluld lw a difty pink;
00 high Al pr-Imcs ii dArk (fit colow. $I kow Alw havvs 1111. .411. v4.wj-* J.Arp-r
addit, Yclachall't.4 fly 11,10; at
amly%"Lw all, di4tv'" 11 FRANK MAIlf-611
00 -3
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fill
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-top
The inecui&1100 of loathed alicee wft Plactsddle."
144. 11111donsk. Atq. 37..77X_M)(jjW) Z' latk",
C. A 17.
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Vila
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,
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-
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4011 ) wrtr Illacyt! in difftt--itm cent
*Wkniharak, Rep 57,
to 4dald-unittanit"Y The 43k~ wrrt tizoed with di%ld, 111.0. cliffuearif with t-tAd 111,0ecratt
'
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1
00 11 herin%tlftOctmtaitk-dilo;
. I
il"&Uydi0u%cd with 11t0at 101
7gof the-quirar,the"Ad
diffioion 21157C. thchod diffushm &.it% and the m6lual slkvc*~ 114%. On a laasisof
.00
Of a &r the rinee 11.0 contaitied 0 aul x. Intal N. It. 19:1 albuntin N. 0 IM m.
1191 g. of sr. a
0
00 1
7 monia N, It VW Andde N, It. I Ill fielitino N. 11 3V P,(%, 2 7 sulfate &-Ji, 77 org, non-luslars. .
0
* ~
1
The rs)IJ difittalmit soln. showed 0 OL14 It. taild N. 0 19111 alburnin
ee
II ff A 00
otal N,
u4ionwaln. roulainctl 11472 C. I
1I.Prisuciareanda(lucitiento1913. The warm cli
101kiI &IbutuinN.011I3N&iNfi,.0 I:r?amkkN.1) 113betoine.'s.tl:l.%Mi*,(h.23sulfatt 400
00 wis. 11 7txg non%ugars and a quotient of 017. The first soln.rontained the visual aeb.
O 0
90 3 total N, Nit$ and Nil.. About 4 (Im" &,a much albumin was found In the cold ai in the
' Z
o
If
d Ilson the profile of a slkv bawd an chem.
Ivitiliffuskmiaoln, Thericacalopened in
c"
r
a
~
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of I
,to
al, a value higher than that obtained by
aualyws was In the range o(.14 -41
.
e sic. the, cells onthe cut surface from the cellular dimensions. During cliff usion at-out
:13% of the lertt juice is (thisined toy rinsing The contents of Injured MIG anal Ml'- ya goo
h
triatlysis through the "llular menctinne. The purifying influmv of diffusion I
evil walls halt lxvn lottrid cumpatfailv4dir camall; the chatices In the (juntient arm my
0 0
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00
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A vrport as the molts of a det&U*d analrk of dloc-hale sugaraLM wd*m .00
a
from 0
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37-1
64 213
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idet .1:
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kqu In the livesent - of %wrow k-*& to re-
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00 8 WM~:W, M14111VA (VUS ii WIMMA44111Y
00 a for u$%"% tlw_
of b"t J%kv*o;RxptL studics carti"t out it% the
Uspil. Institute andle sum vAo &bv*ird thst with alrad .00
IWATS of Various dwics AW AVS~PA IUS up to 4.5% kil
00.) "ClInal Comm. it
"W
i= to an WIVION! In '00
*so
I v
the sitto of the mmat%m
plawal has tam"
up to the
ntailtratontallp,opgpelblio. Tbere"amlatlovarntmOo
s*
sea i'~ ul dialmion lastelles 14 ilmo 1-blel fatior vb!kZvvvt"4 '00
*0.0 he noml isith whkA Juk-" Saw Iti diltu-ton. a Jtva~
'lot senall dlm=Axn ut the armattur 4L# " allow flit an
see
lmvrm in the speed of Juk-e Row. Ctlis with latxv
ib
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d
hkb
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d
00 Ir wr
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on
amatint are
e
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runs In the out mama. Frank Slatesh t
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11*4 WWWS. 1.111 %'vfttjtk. 1-410 (116110-WI, ;01
)-00
00 o4o., 610
Pf""Auers Ive deft. f1w sugar rnt,-"t ..I
00 Ism of sugar sane., anAly,i~ of situ. ~jjmmt.. a,
0 valtorms and invrm lugar as adppted by the InfemalkwW
C
n
fi
S
o
grrom
w
43gar Analy,". Ainxtry,fArip. IR11 are civi-tv
0 in drtail aq well PA the rr*~im fw intmilitking any chmixr, 00
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I r 9 oil,. n 114 ?1 "1
1
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U Oss of nutritional alroseats during dw farnscatstion of swort slicits.
00 Lijly Ciskromp. S1. CO-i(1033).-Mvis %tA*ed in pits showed a Ina III
susm anmatntlos to O'LM 0.01970 pri day. Wben the same limis wtr* mad" isoly
00 Ic of All sugais Tcumincd after 3 days. %U4k, beets only Istiould I* stored. and'
t1ki
00 as carried out May Just Won UW b"U a" used to pecle t losses In nutcluanal
IcIllrotf. Dects low its supt Content aft MA offft-W as NvTrtly as gund M bert4l. -4 0
00
to 0
so I
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40*:A J-A~J
00
06 1
a ;
t
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Ckard" of Cho metkod, of chowk4l
My "MIr'OU"als.
Z' S4. WO(IW41 -
comusiviam adopted the Ofner &M unmadided'
-trk tkr*16m method lot det#. Inmt mm j,
Fmnk
7
It a It x
Wri
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2 4K0
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11 IT IS TO Is IT
L-1- LLIA a L A M-1_11, , LIJI
PAP-P"Ivs -
All
Lisly Calromr. S ri-Ml9f ) M-Fla;re low
1
spac"
which Aj! --pW by juirt aild do twe conjen gict,
art considered " being detrimental to a normal ezin.
Prmel'N V. Preftn't material balances. math. rampula.
lions and factory detas. to show that These n,se" vf~ej
Met All Unfavorable Influence and theoretirely may
i- the Coam. of The Juice and may remit in an #2ln, -
at the slim more complete than namely. V. do"
not d
hMthat large specell f2ert An 110deth'ShIf InflUrfIrt
larthe ate vol. o1julce and thtfaittr now atThe liquij
we undesirable. but since these factors are corrit"sated
by a h4her conc - And more complete estn. V. shows
that for nmxfcrate spaces the last 2 factors nmy move
Than counpensatt (or the Urge val. and rapid Bow and
that in vxb cam the dreaded folurfous gram betornt
an aid in diffmion, Factory Triple. Trorifirmed the pri,
ceding Complitatkad. Howwwr, #I* injurious ow"
do not Include t" "Aims (doe to tautly design) Wh"t
Afasnallue exista. arm spot" at The, wells of the tells,
obwurtiou between alkes dw to an uneven packing.
Am) Covers not occupied normally by the sliret.
Frank Mareals
l L A #11ALLUNCKAL WIN&TI-41 Ct"S"Al"
.,I Claw t3vt
sA I 1 11 Od 0 0 9 11 do 0 3 4 Ir
it ~11~
U W so it -1 a a It 419 Is 0 0 0 0 0 6 0 0 0 0 0 0 0
TV IV to we at a At
: 1 0 * 00 40 0 So 0
0 0 0 is ; 0 a 0 0 0 0 0 4 0 0 4 0 0 0 0 0 *
100 000 * :1j0 0 *, a 0 0 0 0 ST 0 0
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The Istanudmall co"derstion at thr que'stion concom -
.A I tPurid"two. LM VinufrAk. 1. Zschriaj.
(Mikl= Rep. 59. JKI 4TM% 7r-*Ilruak m1ursh
00
Ow
00
t
5 hi-i- I's fw 0 1'o IN 06-9,-Ai a I I v
sc u n
0 1 a 0 0
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000cf9lis 060
0 a 0 1., U "
11 MIN $1 9 a a v
A -a lvo.U-fA-.A A-AL-8 -1 -6
Xse
00
400
See
see
= so
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fit 6.0
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Tho WI vurovowal to the fourth odifloo of tho dittc-*1 0
114** for foxilwd" tbeackal a4idy"s Ja supt eaAbIlah.
mau atcloordlaid to "Wli 04664. Jill Vilmliak.
slowk Nit. 60, 44; A, The ihvi-"% of the f4wt 41mil.
00 0 ~i' 1111"m oft 1wholvd ift Ow t4orrilklakfus Im liallitilts
IKTIS In the t*kl fur 141vaidyind 4146,jr liffill fruill 4041iff
04 a fircia; lot dag.fGmh I the Oct.. nmd"
0
0 l1w Ponspung nam4amm. I Miser Im-m4ding
'3
luIhr Wreca still uIllium
00 hfim file aftlit. thr
i dottlitirtiml ansino N arti-rdinm it) the 14aulk-Pavia-
cukairlictric uwibod and I-* nil, the funin III uxAss".
Frank hfairsh
is
00 see
;04, ce 0
ze
4g 200
'00
09TALtAAFfICAL LIVIIIAT6119 CLASUPICATWO
bills) *19 *11.jl C1.4 &I,
U 91 At 0; to (still 016C ow" 'toKif Is It of Kw A1 .10
0 o 0 0 0 o 0 0 * 0 0 a * 0 At 0 0 0 0 0g 0 0 0 0 0 0 0 0 0 0 0
0 00,0000 so* 0 0 0:0 0 00 0 0 0 0 0 0
fig II S 6 1 1 f It It it is "
I L A JL JL P
t is to if 4 " 0 tin a-3121,011111
a I 1 91
j I I A a
k
-
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copt$*
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Al
00
at A \VLq&deoc*a with W umadiftird Wrier method for
a
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rt
d
l
th
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h 0
ve
r
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a
ir
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studies learlift to the Istro-
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I ; C. A. ?S' P
Cxkrow 33
=
n
su"ty W 27A analyses of 484 samples of raw sugar lf-M
IW3-34 is preesentid, The invert sugar content bf the -0*
.0
same group of on samples was according to the met hods:
it"
k UA?7(
' (34A M
47
C
Pi
2
4i*
so
3 V
: .
mg.
c
g.
u).
lfmfcld OXWr
.o
(
C
M
h
t x
4 . ort
e s
eof 0.0581% (30.7 Mg.
U),
cu). Vanddigtl =06
00 met bod O.OW'70, and Offtr tam method QUO 171. In
tribution curves the (Nutt [me i;~t;J gave
di
nc
f
00 '3 y-
s
reque
the best distsibutiols. When the anslytic-al results were s
COO
e 0 plotted against the actual concn. Of Inve" = added to
v
lt
n
lt
wh b f
h
d
too
of a
e resu
s
e
a
o
ga
=the Ofner long Met
I line; the remaining methods showed ductualknu j
o
00 above and bjusr this Line over the range 0.03-0.00% ::
invert sucar. Frank hfaresb
00 tj
0 0
*0 &Sn.lt* %fVALLbP;K#L LOYESAIL41 CLASSASKATWU :Zoo
003
1.01 ktl -i' T
'g
U 0 43
000 0A O'o
11
0 d'o 0 a O~q 1001:61 -it
i i, i - -w -I" r
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0 0 000 goo 0 0 6 o
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W I - -1 .11 too
a OW o .4 a I w be I A) 4 1 9
MW A I ~ "
* 0 0*0 so 0 - o 0 4 * a 0 0 o o f 0 6 06.
0 4 0 0 0 0 0 0 0 0 0 0 0 0 0 # 0 0 6 0 0 OL
ik
00
0
00
0
:0
00 j'!
10 ]1 4 It 14 is it u ii It
P_ a a 1-1-U.
is
testem id the 14mimb odMos of D(w.
S="CUMAMalroof Is SOW UMS GCGWdLM 00 00
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lectkas W I"I oveds, two isrulat IV husn& thc **I A) ggis, rate that Ilse staltm ncW* ate mA the only ItoctiVit tomb".
a storm ant Cho JK-W' in 0
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Peordiff 114111 rall9rd I$.-Vtf 0-M1 9. of N per Itiv ansine, mid mittsims Into Amino arkis accutding to its tv-
S W WIN Wl Into llw rants, 10-21W 0.4osop g. duluis he jjujjrqxvt%, The rejections whist preslocuitusic are StutA- .00
Site ic iod.
!00 1',;, T914 d"'Adr. In 114V A-h1th Je"J the lailAtkati N 111ine, t,r glistarnic acill &W awarafitsw o I a rt 1. 004
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firlsolvex! III eot". Need 4kitWIMMI am which li'Mily tflt$-f% JjUanjily of solnits4l tsildfig JOUS 1111611of %AIM FASUCIS 44 OW .00
000 The asukovi; lhc it'lunims N w" drid. (tow thr "^I N dwitic N Is ck-&%,r4 sad the fribabstirt Of the 111111. is kft 6-1 coo
9,p "'muft Ow alliumid Al. the N as Nita. and a half of the N an alk. (prickiliallY Cd) As11I 011 SHADO JKi&; the afola.
in theforn; 44 81nines ji. r'. that N in An ansias, whsch wbc" acws pgr"ujnatg oyrr the arvian In said. julers. The COO
Alto rrmuvvd Items Nit.). FrIM11 the cWtent of tjW injuritm. rapid cvlorimetric Stankit-P.&YU, Aswthed ( C. A. ". IW) Z* 0
00 N It was "114C to IWrjk-4 11W total clussaill of ftu"33" dirtAlratit UPW the IJK1 that glulamiar. slulamic ism.
it Itxvin a blise at**
"ass 4hr parikulat le'll.. qrhe later As :ry:t Showed 11'[Wairt- and antarlic acid in CAN acritt
that a iota0 , I
00 larse, fifirt (AlAwt 2 lbir%Jj of the i"ItifiIJUS N CUITITs -A&UMAnCe 101HU-CCOW It Aft IMICI 910he-0 goo
from betaiair, an kor" chrul. msintanvc which paslws un. N; I ht N which coin lie rtmayrd as N I to 4C. :T
dm-vd th-Ath all of the pfmv*" of intgar manstf.. t - pate in tbe.rcurtitm. TheNlrAkstledbYtIolsteslaDdex-
Andrilk view tircarm tau riski and althatigh the injuriowi Weved ** "Ohm w".- has been called The in*kM# N by 6
N charwtgtbvd the vuw ittim beticy than Ilse total N S(assa; (he caermtsitm cif tW view W been c%e&Ak--d
Cb~tfiACd ill the ig3jUriLAft X ilki psW nicasurs: the it. by field ars] tab. tirsts during the post 2 wasucts. zoo
Thesymesuatic Frank Mareslo. IRA**
SSMM "MIYICS Of 11W PM ;W YF1, hOW Shawn & coca.
listitin between the arnim om-W cantent of ink" and the
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liccim. And in 9 palls ul ciplo. file lucl,etl lietts
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will Imse Awwinued but already lisdii-vir that lvittlenisti-so
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Wittim with a Walm od todecis gives the strak an
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too
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im pndktro twircify In 10 4;~t at 12 am* i~1111 t1w MkIr N criuct-at of the twvt
Iv.cOm"-" Ibrand* Nan 10*8 a# ww Ibr alky. L4 t1wj"it"Will brfnvw the maw
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:: i j, pxts froto
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to ktp bKu with an av. ap ~mmcu. of 17.12% (Some" 11, -00
00 0 14M- Whmd IS.97%). Catapared to tba annual atce- Mud=* ykM md bftt balsam. K. g4mkla. Lilly
0 7~pitm~dkmg 13 rs. the Prm t We. WIS tbll Ckbow. Sk 273-M. 296(lon); Z. zue"44. 14C40110- 600
tet; - t W %Wr conco. wall the 10"It. 16 and
bt f 'k i kh ohm wit" de- 12 ButRuMirs A. feveds that A a tallies. 4 dfaVaret ze*
er t
90.3 5 v~hies ptriod, e a,. raw umirendenient
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elidg, of poe, 4pj_ahjy, yor The dgausion *ke The (adn. ozs, max. IM), the Suva In the "got t was a**
emu 4
av. gpiaticut was 9o.61. the mccharizatiots 16-81. Ebe 11.14) (m*a* Om. Max. the scratutabie Sams W v
potarizatiou L5.23. For A* licht )ukes the aw- OK- I)A3
04 0-49%
dwisalic" was ISAJ, the pAan"tion 14,922. For the (max. 1,W). and the total Suft wemlj=%(ftRx'2.lR). as
00 beavy bqmm. the 64.17. The atmoical The cb-. duSnthies and atswrassfities encountered der. f
Inf Wration, sate. and tvapa. are reported individually 2 gee
0
lowth"' with "Medi" a" 10142- GeVraPhically m ooe lcoo
00 priveedf bam the western tip of cWtha*mju to the see
wb- -t'-to' XOG
gee
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too
5"m
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Voll Mr, K J
BALEJ I
St Irly Ol
Chen prur-l 14 164-
Institilto of lnorgallLC Chairintry,
Sciences) p7ague.
VOIIDRAK,-JUL.
TEC121OLOGY
VONDRAK, JUL. Novodobe prepinace regulacnich transfontiatoru. 7 p.
Monthly List of last European Accessions (kOtl) LC, Vol. 8. no. 3, March, 1959. Uncl.
-V()ND?Mv,Oldrlt.*i ftz,' I
. . I . I -Pollgh e3drf#k*fti&*f-WAilroad cars an.Pomen Fair. Zel dap tech
10 no.9:586 f62,
VONDRAK, V.
Production of chemically hardened cores for Iran castings in the Stalingrad
Plant of the CKD Works. p. 299.
SLEVARENSTIII. (Ministerstvo tezkeho strojirenstvi a Ceskoslovenska vedecka
technicka. spolecnost pro hunietvi a slevarenstvi) Praha, Czechoslovakia.
Vol. 7p no. 7. June 1959
Monthly list of East European Accessions (ZUI) LC Vol. 8, No. 12,
Dec., 1959 Uncl.
KOUTSKY, JaroBlav; VONDRAK, Zdonek; GHIOUPKOVAp Karla; HATIVIONK, Valdimir
Autonomic nrofile of schizophrenia* Gns. lek. ce* . 97 no.30:
938-943 18 July 58.
1. Stant lecebna psychiatricka, Jihlava, red, prim. Dr, Vilem Kotina.
J. K., Jinlava, blouha stezka 1.
(SCHIZOPHR3NIL' physiol.
autonomic NS (Cz))
(AUTONOMIC IMVOUS SYSTA4, in var. die.
schizophrenia (Cz))
Vondrak, 2.
Further devolopment and improvement of the "Daye for New Technology"
in the building industry. p. 468. INZENYRSKE STAVBY. (Minis-
terstvo stavebnictvi) Praha. V01. 4, no. 20, Nov. 1954-
Source: EM LC Vol. 5, No. 10 Oct. 1956
MUTSKT, Jaroslav; VONDRAX- Zdq4*b'9-v9.C**kW:-
Autonomic system In neurotic and normal persons* Cas, lek.
cesic. 46 no.10:303-307 8 Mar 57.
1, Statal psychlatricka lecabna Jiblava, Prim. Dr.
Vilam Kotina. J. K., Jiblava, Plouha stezka 1*
(AUMNOMIC MVOUS SYSTEM, In var, die.
. neurosis, comparison with normal persons (Cs))
OWWSRS, -pbralo-1.
AuConomi6 ES, comparison with normal persons (Cs))
VONDRAK,, Z.
Modem Techology Days. p. 253.
(INZENrRSKE STAVBY,, vol. 3,, no.B., Aug. 1954,, Praha)
SOs Monthly List of East Earopean Accession,, (EUL),, W,, Vol. 4,, No. 32.,
Nov. 3.955, unol.
Inpregration of paper ug4inzt t-L-rring. P . -I
'00: East European -Acceuslorls List, Vol. 3, I'llo. 9, 19541 Lib. of Corgreaz
I VONDRAKOVA'I.J~Uenat Inz.; BABMIEK, JIri, Inz,
Effect of mineralogical CoMpoa4tAon on the technological
. L
properties of paper coating kaolins. Papir a celulosa 19
no.2r45-48 F164.
1. Vyzkurmy ustav papiru a celulosy, pracrviste Praha (for
Vondre-kova). 2. Ustav keramiky a keramickych surovin, Karlovy
Vary (for Baburek).
VONDRAKOVAS Kilena) inz.
,se MAr repllca for electron =tcroscopes.
Pmparation of a cpj-juj.,-
S'c.(--r eel pan 803-69 163.
VONDRAKOVA, M.Ij
OTechnJ4ues for electron microseopyw by D.Ka7. Reviewed by
M.Vondrakova. Papir a calulosa 18 no.ls24 Ja 163.
SIOO11631000100110481061
B144/B186
LUTHORS: Tyroler, Jirvi, Formanek, Zdengk Vondra'kov~,-Zdena,
Zahradnfk, Lubomfr, btovfk, MiroaYa-v
TITLE: Production of pure germanium dioxide from germanium
concentrates
PERIODICAL: Referativnyy zhurnal. Xhimiya, no. 1, 1963, 347, abstract
U38 (Czechool. patent 1011481 October 15p 1961)
TEXT: Ge concentrates are distilled continuously with concentrated H01
(ratio I : I - 2) with simultaneous bubbling of Cl. (gas) through the
solution or addition of oxidants (K2Cr20 7 + H250 4)' The GeCl 4 vapors
tog ether with 11G1, vapors-Cl2and impurities are washed out of the gas
mixture by organic sol.vents (C01 4)1 then, the GeCl4 dissolved in the
grganic solvent is washed with Ul (acid) and hydrolized. Example. The
apparatus comprises 2 containers with agitators of 70 1 capacity (the
mixture is tapped from one container, while at the same time the other
Card.1/2
S/001/63/000/001/048/061--
Production of pure germanium BIWM6~
tank is filled), a metering pump, a cooking boiler, a foam separator and
an absorber. In the containers, the mixture of 25-30 kg concentrate and
50 kg HCl (acid) Is prepared. The absorber is filled with M The
4`
operation of the metering pump and the heating of the boiler in controlled
in such a w%y that the foam entering the separator has a temperature of
1000C. From the separator the suspension is drained-off to waste, but
the vapors are led~ into the absorber, from which GcCl 4 dissolved in M 4
in drawn off intermittently or continuously and hydrolized thrice with
distilled water. The product contains 0-005 - 2% As and is a suitable
raw material for semiconductors. [Abstracter's note: Complete transla-
tion.
CELT& aAl
tJ D 0, A Ur-,, T3
SURWIEt Given 11=43
Country' Czcchosloya'da
Aca&,mic Dogreest
-ChoiIr Df__Nutrition and Veterinary DLjetqtJ4xj Veterinary College (Katedre
AffiIiations
Vyzivy a aiete-t-1ky veterinarny fakulty VSZ) Brno /Chief isroslav KABRT/
S.ource: Preguet Sbornik CSAZV Veterinarni M-dicina, Vol 604) No 8, Aug 61; pp 631-638
Data$ "Study of Volatile Mitrogenouc Basam 4n Wheat fteds"
VE=
I , Zdenek; DVT4
VJ9LINMVA,:Vera; gradoite veterinarian
graduate veterinarian
$to loll%)
4) FrF-
0i
oof
901
roe
*0,3
rb
001 00#
60 4f
oes coo
400
go*
Ali of
AdTkLLVK9&L LITtRAIVIRt CLAWtOKATOU 14
0. 4044h 11"Idr. - I law aowiftv
is I it, I,, cIr1 9 MI I a ad a a If 1 9 IN 6 to 4 3 4 1
11" 10 0 ; blowba Keg tt K W13 R
0400 *00 0 0 0 0 *a** *6 *as *'so *04 00 of 0660004 a *I*
VOIWIM. J.
Anchoring of *ubsequently strained prestressed-concrete elements in
Czechoslovakia. p. 47�.
POZEI4NI STAVIrt. (Ministerstvo stavebnietvi) Praha, Czechomlovakia, Vol. (1)
no. 99 (september) 1959.
Month,ly list ~of East European Accessions (EEXI) LC, Vol. 8, No. Up
November 1939.
uncle
VONDRASEK, Z.
The handling of lw4bor from the point or view of the lumber technology. p. 201.
(SBORNIK MDA IMICTVI. Praha) (Vol. 30.. no. 3P Var. 1957)
501 Monthly Ust of Eas t European Accession (EFIAL) LCO Vol. 6, no. 7, July 1957. Uhcl,
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a
00 g
Ow c), it jjo~x jy- - f 4 ImIlitte, was
arm p" .1 1
&
. I i : 1
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0 0, -C 1:,-! univ 'rmgm cuckwovskis Is. - 107- da-V renew -'Okmr. 'Tl~ sr"~. was left stamfing 3 bra. at
comable"bm a4butic " with a kfta- 6*0 thew *4 ad. coM I
,.13 ' I I icma~. and the man from
1 Ae
mWe cmpd. orism studied. TrUarturkbolk acki was am'. dae N, #4iPA"jm;
:c*V; k
"rtW through Its cblo" bY the Romammmod medod -am ( , -W 1.
ta) 1%0113 r In to Mi. Ix it 4 was slowly go*
,l,?
0 a Into the eldchyda V) ; dw Ist Inwdon to - 95 1 2ud, dropped Into a Wo. U the themilcia.,%rot - of Vh(OAc),
lemartift M. 1100. U g.) was hated 7 b", and (do deep red cow ebang"), golil
00 brought to a boll on * water both with 0.0 g. I'UNIf Nil the
homr, 1- ml, sic. &Mcd# and the letal
M441. by ICI. Slit 0
'000 HCJ, 0.5 S. N&OAcJM&0. mW 10 ad. cth&W. After t e1i After 0". 91 the Clielf aml sic. solus. an of ibe
I ctbAnc4 was distd. all. the residue was shaken with N 11C1. sk., the oily
w&ahed w" 11.0. and twim Mstd- from ethanol to give cholylteblumalluto Chloride tV, R - trommyIncreflalyl, C9 0
the maccohydnLaone (U), tn. ISS". 11 (0.M a.) was dig- was obtained.
OAT pilded Nj- a.*
'04 in 10 ad. &k., 2 a., N&Ohc.311 s0 muct Ph' RC-N
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of the A&
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A11711OR Ign (I r a s c, k
ORTO. PUB. Cealcos I f armac 1958, 7.1 NO 4.19-490
AWERACT kni ariiele dcalinpr with nbarmaceiitical nroject
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H.blioarn-nhy covers 1*1 fitles, T. Zvoro-va
Card:
VONDRASM, V.
"Practical Problems of Electrolytic PolishJng In Laboratories and Factoriert," P. 196
(Rutnlkp Vol. 3, no. 9p Sept. 1953, Praha)
SO: Monthly List of East EuroR~qn Accessions, Vol. 3, no. 2, Library of Congress,
Feb. 1954) Uncl.
VOUDIUASEK9 Vl-,.clmv, doe. inz.; STAND, Karel,, inz,
Problems of therrial treattent of a thir, steel strip from
carbon steel with 1.2 per ac-rit carbon. Sbor VSB Ostrava
9 no.3:335-345 163.
VOMPASEK, J.
"Ihe production of concretd pressure pipes prestressed lengthwise and crosswise."
p. 422 (Meehaniaaco) Vol, It, no, 12, Dec, 1957
Prague, Czechoslovakia
SO: Yznthly Inlex of Ea- st European Accessions (ERAI) IC. Vol. 7. no. 4,
April 1958