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Southern Bug

Main characteristics of the mouth area of the Dniester River are described in [10-12]. Natural and human-induced changes in regime of the combined Dnieper and Southern Bug rivers mouth area are studied in [13,14]. Very rapid and drastic changes of the Rioni delta due to engineering works are considered in [15]. [Pg.92]

There are only four rivers, which belong to the third category (F from 2000 to 50 000 km2) the Caucasian rivers Kodori, Inguri, Rioni and Chorokhi. Six rivers (the Danube, Dniester, Southern Bug, Dnieper, Don and Kuban) can be classified as large rivers (F > 50 000 km2). [Pg.97]

Mouth areas of the Danube, Dniester, Dnieper and Southern Bug, Don, Kuban and Rioni rivers are the most important in the region of the Black Sea and the Sea of Azov. Mouth areas of these rivers differ from other mouths not because of only their large size and a great diversity of landscape. These river... [Pg.97]

Dnieper and Southern Bug Ukraine r Semiendosed deltaic, complex Filling (bayhead), multi-branch Liman Deep... [Pg.98]

The mouth of the Dnieper and Southern Bug rivers has a complex structure and as a whole belongs to the semi-enclosed deltaic type. It consists of the following parts (Fig. 8) ... [Pg.121]

Mouth reaches of three rivers - the Dnieper, including its delta, Southern Bug and Ingul ... [Pg.121]

Fig.8 Scheme of the Dnieper and Southern Bug rivers mouth. Parts of the mouth area 1 - Dnieper delta, 2 - Dneprovsko-Bugskiy Liman, 3 - Dneprovskiy Liman, 4 - Bugskiy Liman, 5 - Kihburnskiy outlet. Settlements 6 - Novaya Kakhovka, 7 - Kherson, 8 - Novaya Odessa, 9 - Nikolaev, 10 - Ochakov. 11 - Kakhovskaya dam, 12 - North-Crimean canal... [Pg.121]

The considered river mouth area plays a very important role in economy and environmental management of this part of Ukraine. The Dnieper and Southern Bug rivers are important water ways. Many large industrial centers and ports such as Kherson, Nikolaev, and Ochakov are situated here. River waters are widely used for irrigation and water supply. In this region, agriculture and fishery are also developed. [Pg.122]

Present-day average values of the water runoff of the Dnieper, Southern Bug and Ingul rivers are amounted as 43.4, 2.2 and 0.58 km3 year 1 correspondingly (Table 8). [Pg.123]

Mixed with the waters of the Dnieper and Southern Bug rivers, a large amount of human-made nutrients, including nitrogen and phosphorus compounds, contaminants including heavy metals and hydrocarbons, as well as organic matter flows into the northwestern part of the Black Sea. The impact on the sea has become a very serious ecological problem. [Pg.123]

It is possible that eutrophication processes and such adverse events as algal blooms and hypoxia will be more frequent in some sea areas in the future. Conditions like that can take place in the northwestern part of the Black Sea in the vicinity of the mouths of the Danube, Dnieper and Southern Bug rivers and in the Taganrogskiy Bay of the Sea of Azov. [Pg.132]

Kostianitsin MN (1964) Hydrology of the Dnieper and Southern Bug mouth area. Gidrometeoizdat, Moscow (In Russian)... [Pg.134]

Symptoms next include dementia, tremor, and ataxia progressing most often to coma and death survivors show severe chronic meningoencephalitis. The American form of trypanosomiasis (Chagas disease) is a common health problem in Central and Southern America and is transmitted by reduviid bugs. Polymyositis, myocarditis and encephalomyelitis are constant features of the disorder but may be accompanied by more widespread visceral involvement. Infection can be confirmed by complement fixation tests but antibodies do not occur in the blood until about two months after infection. [Pg.335]

The spined citrus bug (Biprorulus bibax) is a pest of citrus in southern Australia. The major component (74, Figure 4.5) of the male-produced pheromone of B. bibax was isolated and identified by the joint work of James in Australia and Oliver et al. in the USA. Oliver found by chiral GC analysis that the insect produces a single enantiomer of 74. In 1992 I became interested in clarifying the absolute configuration of this pheromone, because Dr. Oliver requested me to do so. [Pg.111]

Boethel, D.J. J.S. Russin A.T. Weir M.B. Layton J.S. Mink M.L. Boyd. Delayed maturity associated with southern green stink bug (Heteroptera Pentatomidae) injury at various stink bug phonological stages./. EconomicEntomol. 2000, 93, 707-712. [Pg.116]

Thomas, G.D. C.M. Ignoffo C.E. Morgan W.A. Dickerson. Southern green stink bug Influence on yield and quality of soybean./. Econ. Entomol. 1974, 67, 501-503. [Pg.122]

Todd, J.W. M.D. Jellum D.B. Leuck. Effects of southern green stink bug damage on fatty acid composition of soybean oil. Environ. Entomol. 1973, 2, 685—689. [Pg.122]

MIKLAS, N., RENOU, M., MALOSSE, I., MALOSSE, C., Repeatability of pheromone blend composition in individual males of the southern green stink bug, Nezara viridula. J. Chem. Ecol, 2000, 26, 2473-2485. [Pg.220]


See other pages where Southern Bug is mentioned: [Pg.13]    [Pg.13]    [Pg.91]    [Pg.92]    [Pg.98]    [Pg.107]    [Pg.108]    [Pg.121]    [Pg.395]    [Pg.13]    [Pg.13]    [Pg.91]    [Pg.92]    [Pg.98]    [Pg.107]    [Pg.108]    [Pg.121]    [Pg.395]    [Pg.1470]    [Pg.69]    [Pg.233]    [Pg.51]    [Pg.326]    [Pg.298]    [Pg.314]    [Pg.298]    [Pg.320]    [Pg.367]    [Pg.39]    [Pg.283]    [Pg.528]    [Pg.423]    [Pg.561]    [Pg.423]    [Pg.110]    [Pg.112]    [Pg.113]    [Pg.1658]    [Pg.13]   
See also in sourсe #XX -- [ Pg.107 ]




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