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  • 1
    Publication Date: 2021-05-19
    Description: Nowadays, the offspring of sturgeon species in the Caspian Sea is under danger because of biological and non-biological impacts such as pollution and illegal catching as well as dams obstacles of fish migration to the upstream of the rivers for the spawning. One of the most practical way to protect and maintain the natural stocking of these valuable species in the sea is artificial propagation and releasing of the produced larvae into the sea and the entering rivers as Iran Fishery Organization is currently producing about 22 million larvae per year according to the forth national plan of the country. However, protecting these natural resources of these species from the toxic chemicals is a critical issue because of high level pollution of their natural environment. In this research work an attempt was made to evaluate the toxicity of diazinon and its effect on some specific and nonspecific immune parameters of these sturgeon species in particular great sturgeon in order to give some recommendations for improving of their natural environment. A number of 300 fish weighing 12±2 g from great sturgeon obtained from sturgeon farms in Golestan states were used. Fish were transported to the Caspian Sea institute of ecology and were kept in 2000 L tanks with well aeration. Fish were fed commercial feed containing Kilka meal. The water quality parameters consisting of NO2, NH3, pH, DO and hardness were 〈0.1, 0 mg.l, 0.02mg/l, 7.9, 7-9/1 mg/l, and 145 mg/l, respectively. The acute toxicity of diazinon was assessed in beluga (Huso huso) and some of hematological and biochemical parameters of the survival fish examined. The obtained LC50-96 hours was 5.63 mg/l for Huso huso. Also, the obtained results showed that RBC, HB and PCV were significantly lower in the survival fish than the control fish. However, level of MCV in test groups was higher than control groups (P〈0.05). Also, leucocytes count level was different between the test and control groups. Also, no difference was observed in level of enzymes of ALD, AST, LDH and ALP between test and control groups, while levels of total protein and glucose in test groups were lower and higher than control fish, respectively. IgM of these species were purified and partially characterized using affinity chromatography and SDSPAGE methods, the obtained results showed than all fish species possess and IgM like protein with a molecular weight of 870KDa. This IgM showed to have heavy chains with 77-84 KDa and light chains with 28-30 KDa. The chronic/sublethal effect of this diazinon was assessed in great sturgeon juvenile and hematological and biochemical changes, leucocyte population size, lysozyme activity, chemiluminuscence (CL) response, antibody titration and histhopathological change were studied in beluga (Huso huso) weighing 450±50 g in the present of Antigen of Aeromonas Hydrophila as a single intraperitoneal injection at 1x107 cell per fish and thereafter a chronic exposure to organophosphate, diazinon at concentrations of 1,5 and 10 mg/L as a 48 hours bath and sample collected on day one and every week interval upto 22 days provided at 22±1?C and acceptable water quality condition. Results of erythrocyte profile in fish treated with diazinon generally showed significantly decrease of RBC, HCT (P〈0.05) compare to control fishes. While there was no significant difference (P〉0.05) in the values of MCH, MCV and MCHC between these groups. Compare to control group (group A) the values of white blood cells and lymphocyte were significantly lower in the exposed fish to diazinon (groups of C, D, E, F, G and H) while, the level of neutrophile and eosinophil was higher than control one (P〈0.05). No significant differences was found in values of monocytes and immature neutrophiles between control group and these groups (P〉0.05).Furthermore, fish treated with diazinon showed a higher levels of asparate aminotransferase (AST), alkaline phosphatase (ALP), alanine aminotransferase (ALT), lactate dehydrogenase (LDH) in the early stage of post-exposure, compare to control fishes, while the level of these enzymes was lower in this group for the rest of experiment. Also, fish treated with Antigen-diazinon showed generally lower and higher levels of total protein and glucose concentrations in blood plasma, respectively compared to fish untreated(control) (P〈0.05).The level of cholinesterase in fish treated with diazinon bath generally lower than control group(P〈0.05).The level of lysozyme in liver of groups B,D,F,G and H were significantly higher (P〈0.05) than group A up to 2 weeks post-treatment and then it insignificantly reduced to lower levels until week 3 post-exposure. Also, kidney lysozyme contents were significantly higher (P〉0.05) in groups of B,F,G and H than group A up to 2 weeks post-treatment and then was lower for the rest of the experiment. The level of spleen lysozyme in groups of B,G and H was also, higher than group A for the first 2 weeks post-treatment and, then it reduced to below levels measured during the rest of experiment (P〉0.05). Lysozyme level of sera samples were significantly higher (P〈0.05) in groups of B, D, E, F, G and H than group A in the one week post-treatment. There was significant difference in the lysozyme contents of tissues of liver, spleen and serum between groups of A and E,F,G,H(P〈0.05). Mean spontaneous CL response in groups of diazinon bath were significantly lower than group A throughout the experiment (P〈0.05). Maximum peak was found in group D one day post-exposure, while the minimum peak was found in group E throughout the experiment. The antibody titration in groups of treated with diazinon bath generally lower than control group (P〈0.05).but the antibody titer in group B that treated with Antigen without diazinon bath was higher than the other groups. The histopathological effects of diazinon on the liver, kidney, spleen, gills, nostril and barbels of gain sturgeon examined under light and electron microscope, showed that diazinon caused severe damage to the cell structure such as congestion of blood vessels, hemorrhage, cellular infiltration, pyknosis of cells nuclei, vacuolar degeneration and general necrosis in the tissues of kidney, spleen and liver. There were also degenerative changes of interstitial tissue, detachment of tubular basement membrane in kidney. In the gills, hyperplasia and fusion of secondary lamellae, separation and sloughing of epithelium from the underlying basement membrane were also observed In conclusion, diazinon at toxic and sub lethal concentrations is able to seriously affect the sturgeon immunity resulting in suppression of fish immune system and making fish susceptible to both non-infectious and infectious diseases.
    Description: Iranian Fisheries Science Research Institute
    Description: Published
    Keywords: Biological ; Non-biological ; Chemical ; Biochemical ; Histhopathological ; Sturgeon ; Huso huso ; Diazinon ; Immune system ; Blood factors ; LC50 96h ; Migration ; Spawning ; Larvae ; Kilka ; Toxicity ; Aeromonas hydrophila ; Lymphocyte ; Gills ; Beluga
    Repository Name: AquaDocs
    Type: Report , Refereed
    Format: 154pp.
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  • 2
    Publication Date: 2021-05-19
    Description: An Environmental Impact Assessment was undertaken to identify existing values and characteristics of physical, biological and socioeconomic resources within the area proposed for the Aquaculture development in BibiShirvan Ab-bandan (small storage dam). The proponent (Fisheries Department of Golestan province) intends to redevelop fish culture in a constructed water body which is used mainly by local farmers for storing water to meet crops water needs especially at dry periods of the year. The area being examined as part of this environmental impacts assessment is located approximately 40 km west of Gonbad city,Golestan province in northeast of Iran. The site located at 54° 47'- 54° 52 ' (East longitudes) and '37 ° 10'- 37° 11' (North latitudes). The Bibi Shirvan Ab-bandan sealed with an area of about 580 acres, is a collection of three distinct basins that are connected with each other at several points. At present, there are some problems for water supply and maintaining full reservoir levels which cause the Bibi-Shirvan reservoir have always been empty partly and farmers could not been utilizing all its capacity. At the operation phase, the supply water will be provided by pumping through the left coast of Gorgan river via an irrigation concrete canal which is constructed by the Organization of Jihad-e-Agriculture and also, two small streams namely Ghareh-tekan and Bayram-shally. For better management of fish culture it is proposed a plan, which increase the volume of the Bibi- Shirvan reservoir by heightens the circumference embankment and construction of the interior retaining wall that will divide the reservoir into smaller pieces of ponds. It also proposed the installation of other pumping stations on abovementioned streams to supply water for combined requirements of cultivated crops and fish culture. The total surface area and storage capacity of Bibi Shirvan reservoir will be about 500 hectares and 8.1 million cubic meters respectively, after the construction of embankments. Environmental impact assessment for the project in terms of design features is mandatory and subject to article 2, paragraph (e) environmental impact assessment regulations. There are some problems for developing optimized fish culture practices and operations in the area. The unknown ownership of reservoir, absence of official right of water allocation, limiting capacity of reservoir reduced surface area for fish culture , lack of hydraulic system structures for water supply control, and drainage are among the problems that restrict fish culture practices and will not allow to attain optimum production. Therefore, the proposed plan including improved methods and rehabilitation of embankments was placed on the agenda of the Golestan Province, Department of Fisheries. For optimization studies and achievements to update information using Geographic Information System (GIS), the maps of the study area were provided. Thus, in first step, the digital map with a scale of 1:500 to 1:2000 AUTO CAD format that shows the project location, have been constructed. General location map of the region, residential areas and villages, roads and other maps needed in studies using these layers were produced. Next, the outputs for Cartography maps were prepared using ARC GIS software. The spatial layers were performed by using the GIS soft-wares and advised which suggested by different expert teams (groups of soil and water pollution studies, social environment, economic and cultural, biological environment, climate and hydrology). The output of digital spatial data, spatial analysis and cartography as various maps, tables or diagrams and graphical analysis were used in the reports. Since implementing this Project could be created various impacts in different environments (physical, biological, socioeconomic and cultural) The EIA study was undertaken .For facilitate decision making process on project implementation, the modified matrix method has been used. In conclusion, the results of EIA matrices shows the action of Project with environmental mitigation measures (+410) is superior to no action Project (-79). It is therefore considered that the Bibi-Shirvan Project will have a minimal impact on the environmental values of the area. The Project will provide favorable overall positive outcomes for indigenous peoples and fish farmers in the region. Also, problems such as excessive migration of rural people, lack of employment and consequently low level of income and welfare of the people will be improved. Therefore, the Project with consideration of environmental mitigation measures is recommended .
    Description: Iranian Fisheries Science Research Institute
    Description: Published
    Keywords: Environmental impact assessment ; Warm Water ; Fish culture ; Aquaculture
    Repository Name: AquaDocs
    Type: Report , Refereed
    Format: 266pp.
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  • 3
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    Unknown
    Iranian Fisheries Science Research Institute | Tehran, Iran
    In:  http://aquaticcommons.org/id/eprint/25085 | 18721 | 2018-08-22 07:23:39 | 25085 | Iranian Fisheries Science Research Institute
    Publication Date: 2021-07-16
    Description: Nowadays, the offspring of sturgeon species in the Caspian Sea is under danger because of biological and non-biological impacts such as pollution and illegal catching as well as dams obstacles of fish migration to the upstream of the rivers for the spawning. One of the most practical way to protect and maintain the natural stocking of these valuable species in the sea is artificial propagation and releasing of the produced larvae into the sea and the entering rivers as Iran Fishery Organization is currently producing about 22 million larvae per year according to the forth national plan of the country. However, protecting these natural resources of these species from the toxic chemicals is a critical issue because of high level pollution of their natural environment. In this research work an attempt was made to evaluate the toxicity of diazinon and its effect on some specific and nonspecific immune parameters of these sturgeon species in particular great sturgeon in order to give some recommendations for improving of their natural environment. A number of 300 fish weighing 12±2 g from great sturgeon obtained from sturgeon farms in Golestan states were used. Fish were transported to the Caspian Sea institute of ecology and were kept in 2000 L tanks with well aeration. Fish were fed commercial feed containing Kilka meal. The water quality parameters consisting of NO2, NH3, pH, DO and hardness were 〈0.1, 0 mg.l, 0.02mg/l, 7.9, 7-9/1 mg/l, and 145 mg/l, respectively. The acute toxicity of diazinon was assessed in beluga (Huso huso) and some of hematological and biochemical parameters of the survival fish examined. The obtained LC50-96 hours was 5.63 mg/l for Huso huso. Also, the obtained results showed that RBC, HB and PCV were significantly lower in the survival fish than the control fish. However, level of MCV in test groups was higher than control groups (P〈0.05). Also, leucocytes count level was different between the test and control groups. Also, no difference was observed in level of enzymes of ALD, AST, LDH and ALP between test and control groups, while levels of total protein and glucose in test groups were lower and higher than control fish, respectively. IgM of these species were purified and partially characterized using affinity chromatography and SDSPAGE methods, the obtained results showed than all fish species possess and IgM like protein with a molecular weight of 870KDa. This IgM showed to have heavy chains with 77-84 KDa and light chains with 28-30 KDa. The chronic/sublethal effect of this diazinon was assessed in great sturgeon juvenile and hematological and biochemical changes, leucocyte population size, lysozyme activity, chemiluminuscence (CL) response, antibody titration and histhopathological change were studied in beluga (Huso huso) weighing 450±50 g in the present of Antigen of Aeromonas Hydrophila as a single intraperitoneal injection at 1x10^7 cell per fish and thereafter a chronic exposure to organophosphate, diazinon at concentrations of 1,5 and 10 mg/L as a 48 hours bath and sample collected on day one and every week interval upto 22 days provided at 22±1?C and acceptable water quality condition. Results of erythrocyte profile in fish treated with diazinon generally showed significantly decrease of RBC, HCT (P〈0.05) compare to control fishes. While there was no significant difference (P〉0.05) in the values of MCH, MCV and MCHC between these groups. Compare to control group (group A) the values of white blood cells and lymphocyte were significantly lower in the exposed fish to diazinon (groups of C, D, E, F, G and H) while, the level of neutrophile and eosinophil was higher than control one (P〈0.05). No significant differences was found in values of monocytes and immature neutrophiles between control group and these groups (P〉0.05).Furthermore, fish treated with diazinon showed a higher levels of asparate aminotransferase (AST), alkaline phosphatase (ALP), alanine aminotransferase (ALT), lactate dehydrogenase (LDH) in the early stage of post-exposure, compare to control fishes, while the level of these enzymes was lower in this group for the rest of experiment. Also, fish treated with Antigen-diazinon showed generally lower and higher levels of total protein and glucose concentrations in blood plasma, respectively compared to fish untreated(control) (P〈0.05).The level of cholinesterase in fish treated with diazinon bath generally lower than control group(P〈0.05).The level of lysozyme in liver of groups B,D,F,G and H were significantly higher (P〈0.05) than group A up to 2 weeks post-treatment and then it insignificantly reduced to lower levels until week 3 post-exposure. Also, kidney lysozyme contents were significantly higher (P〉0.05) in groups of B,F,G and H than group A up to 2 weeks post-treatment and then was lower for the rest of the experiment. The level of spleen lysozyme in groups of B,G and H was also, higher than group A for the first 2 weeks post-treatment and, then it reduced to below levels measured during the rest of experiment (P〉0.05). Lysozyme level of sera samples were significantly higher (P〈0.05) in groups of B, D, E, F, G and H than group A in the one week post-treatment. There was significant difference in the lysozyme contents of tissues of liver, spleen and serum between groups of A and E,F,G,H(P〈0.05). Mean spontaneous CL response in groups of diazinon bath were significantly lower than group A throughout the experiment (P〈0.05). Maximum peak was found in group D one day post-exposure, while the minimum peak was found in group E throughout the experiment. The antibody titration in groups of treated with diazinon bath generally lower than control group (P〈0.05).but the antibody titer in group B that treated with Antigen without diazinon bath was higher than the other groups. The histopathological effects of diazinon on the liver, kidney, spleen, gills, nostril and barbels of gain sturgeon examined under light and electron microscope, showed that diazinon caused severe damage to the cell structure such as congestion of blood vessels, hemorrhage, cellular infiltration, pyknosis of cells nuclei, vacuolar degeneration and general necrosis in the tissues of kidney, spleen and liver. There were also degenerative changes of interstitial tissue, detachment of tubular basement membrane in kidney. In the gills, hyperplasia and fusion of secondary lamellae, separation and sloughing of epithelium from the underlying basement membrane were also observed In conclusion, diazinon at toxic and sub lethal concentrations is able to seriously affect the sturgeon immunity resulting in suppression of fish immune system and making fish susceptible to both non-infectious and infectious diseases.
    Keywords: Biology ; Health ; Pollution ; Iran ; Caspian Sea ; Sturgeon ; Huso huso ; Diazinon ; Immune system ; Blood factors ; LC50 96h ; Migration ; Spawning ; Larvae ; Kilka ; Toxicity ; Aeromonas hydrophila ; Lymphocyte ; Gills ; Beluga
    Repository Name: AquaDocs
    Type: monograph
    Format: application/pdf
    Format: application/pdf
    Format: 154
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  • 4
    facet.materialart.
    Unknown
    Iranian Fisheries Science Research Institute | Tehran, Iran
    In:  http://aquaticcommons.org/id/eprint/25782 | 18721 | 2018-10-13 08:35:39 | 25782 | Iranian Fisheries Science Research Institute
    Publication Date: 2021-07-16
    Description: Proposed land area within the Environmental impact assessment study boundary is designated for development of warm-water fish culture and located at "49 '55 ° 54 to" 14 '56 ° 54 east longitude, and "7 '15 37 to" 48 '19 37 north latitude, in the Gonbad Kavous county of Golestan province. Currently in Digcheh there are 47 earthen ponds with different dimensions comprising some 380 ha project's overal footprint with an estimated 324ha net area of production ponds, which involves common carp and chinese carp fish farming. Fresh water supply is provided from Gorgan-Roud to the culture ponds by pumping via some mobile pump through a common earthen channel which is shared with agriculture lands of the rural community. Environmental impact assessment studies for the project which in terms of design features, subject to article 2, paragraph (e) of Environmental impact assessment regulation is necessary in order to resolve problems related to water supply , optimization of fish farm's hydraulic systems through the construction of concrete main intake channel and optimization and renewal of pond's weir and outlet structure, intake and drainage channels of production ponds, and also renovation of water pumping systems wich will be resulting in increased farmed fish production and decreased production costs. For optimization of EIA study and achievements to update information by using Geographic Information System(GIS) software, the maps of the study area were provided with scrutiny. Thus, in first step digital map with a scale of 1:500 to1:2000 in AUTO CAD format that shows the project location, prepared with land surveying. Layers of required maps based on Iran Army Geographical Organization base maps for site with conceptual and spatial information of location were provided. General location map of the region, residential areas and villages, roads and other maps needed in studies us ing these layers were produced. Next, the paper output for Cartography maps were prepared using ARC GIS software. The spatial layers with the help of GIS spatial analysis studies by different expert teams of EIA studies (soil and water pollution , social, economic and cultural studies, biological environment, climate and hydrology) , were performed. The output of digital spatial data, spatial analysis and Cartography as various maps, tables or diagrams and graphical analysis were used in various discipline reports. Since implementing the project can be create different and various changes or effects on environment resources (physical, biological, social, economic and cultural) ,thus knowing how these impacts occur will be assist to prevent or reduce their pursuant negative effects the environment impact assessment studies carried out. In order to conduct decision-making process between action and no action alternatives for perform Digcheh Aquaculture project the Leopold matrix and comparison checklist method has been used. The results of the Leopold matrix shows that the action of Project with environmental mitigation measures (+412) is superior to no action Project (-79). Obviously, the modernization and Optimization of Digcheh warm-water fish farming development project have some adverse effects on the environment like other development projects but it seems with considering mitigation measures and performing Environmental Management Plans with regard to positive outcomes for local area, implementation of this project will be provide a lot of positive or favorable outcome for indigenous peoples and fish farmers. As well as with implemention of the Digcheh project problems such as the loss of water in earthen channels, the overall status of fish farming practices, migration from rural to urban areas , lack of employment and consequently low level of income and welfare of the people will be improved and acquire positive trend in the region Consequently in the EIA study final findings, the implementation of Dighcheh fish culture development project is recommended and emphasized.
    Keywords: Aquaculture ; Management ; Iran ; Digcheh ; Environmental impact assessment ; Warm Water ; Fish culture ; Environmental
    Repository Name: AquaDocs
    Type: monograph
    Format: application/pdf
    Format: application/pdf
    Format: 220
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  • 5
    facet.materialart.
    Unknown
    Iranian Fisheries Science Research Institute | Tehran, Iran
    In:  http://aquaticcommons.org/id/eprint/25783 | 18721 | 2018-10-13 08:04:00 | 25783 | Iranian Fisheries Science Research Institute
    Publication Date: 2021-07-16
    Description: An Environmental Impact Assessment was undertaken to identify existing values and characteristics of physical, biological and socioeconomic resources within the area proposed for the Aquaculture development in BibiShirvan Ab-bandan (small storage dam). The proponent (Fisheries Department of Golestan province) intends to redevelop fish culture in a constructed water body which is used mainly by local farmers for storing water to meet crops water needs especially at dry periods of the year. The area being examined as part of this environmental impacts assessment is located approximately 40 km west of Gonbad city, Golestan province in northeast of Iran. The site located at 54° 47'- 54° 52' (East longitudes) and 37° 10'- 37° 11' (North latitudes). The Bibi Shirvan Ab-bandan sealed with an area of about 580 acres, is a collection of three distinct basins that are connected with each other at several points. At present, there are some problems for water supply and maintaining full reservoir levels which cause the Bibi-Shirvan reservoir have always been empty partly and farmers could not been utilizing all its capacity. At the operation phase, the supply water will be provided by pumping through the left coast of Gorgan river via an irrigation concrete canal which is constructed by the Organization of Jihad-e-Agriculture and also, two small streams namely Ghareh-tekan and Bayram-shally. For better management of fish culture it is proposed a plan, which increase the volume of the Bibi- Shirvan reservoir by heightens the circumference embankment and construction of the interior retaining wall that will divide the reservoir into smaller pieces of ponds. It also proposed the installation of other pumping stations on above mentioned streams to supply water for combined requirements of cultivated crops and fish culture. The total surface area and storage capacity of Bibi Shirvan reservoir will be about 500 hectares and 8.1 million cubic meters respectively, after the construction of embankments. Environmental impact assessment for the project in terms of design features is mandatory and subject to article 2, paragraph (e) environmental impact assessment regulations. There are some problems for developing optimized fish culture practices and operations in the area. The unknown ownership of reservoir, absence of official right of water allocation, limiting capacity of reservoir reduced surface area for fish culture , lack of hydraulic system structures for water supply control, and drainage are among the problems that restrict fish culture practices and will not allow to attain optimum production. Therefore, the proposed plan including improved methods and rehabilitation of embankments was placed on the agenda of the Golestan Province, Department of Fisheries. For optimization studies and achievements to update information using Geographic Information System (GIS), the maps of the study area were provided. Thus, in first step, the digital map with a scale of 1:500 to 1:2000 AUTO CAD format that shows the project location, have been constructed. General location map of the region, residential areas and villages, roads and other maps needed in studies using these layers were produced. Next, the outputs for Cartography maps were prepared using ARC GIS software. The spatial layers were performed by using the GIS soft-wares and advised which suggested by different expert teams (groups of soil and water pollution studies, social environment, economic and cultural, biological environment, climate and hydrology). The output of digital spatial data, spatial analysis and cartography as various maps, tables or diagrams and graphical analysis were used in the reports. Since implementing this Project could be created various impacts in different environments (physical, biological, socioeconomic and cultural) The EIA study was undertaken .For facilitate decision making process on project implementation, the modified matrix method has been used. In conclusion, the results of EIA matrices shows the action of Project with environmental mitigation measures (+410) is superior to no action Project (-79). It is therefore considered that the Bibi-Shirvan Project will have a minimal impact on the environmental values of the area. The Project will provide favorable overall positive outcomes for indigenous peoples and fish farmers in the region. Also, problems such as excessive migration of rural people, lack of employment and consequently low level of income and welfare of the people will be improved. Therefore, the Project with consideration of environmental mitigation measures is recommended .
    Keywords: Aquaculture ; Ecology ; Iran ; Bibi-Shirvan reservoir ; Golestan Province ; Bibishirvan ; Gonbad region ; Environmental impact assessment ; Warm Water ; Fish culture ; Aquaculture
    Repository Name: AquaDocs
    Type: monograph
    Format: application/pdf
    Format: application/pdf
    Format: 266
    Location Call Number Expected Availability
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  • 6
    Publication Date: 2021-05-19
    Description: Proposed land area within the Environmental impact assessment study boundary is designated for development of warm-water fish culture and located at "49 '55 ° 54 to" 14 '56 ° 54 east longitude, and "7 '15 37 to" 48 '19 37 north latitude, in the Gonbad Kavous county of Golestan province. Currently in Digcheh there are 47 earthen ponds with different dimensions comprising some 380 ha project's overal footprint with an estimated 324ha net area of production ponds, which involves common carp and chinese carp fish farming. Fresh water supply is provided from Gorgan-Roud to the culture ponds by pumping via some mobile pump through a common earthen channel which is shared with agriculture lands of the rural community. Environmental impact assessment studies for the project which in terms of design features, subject to article 2, paragraph (e) of Environmental impact assessment regulation is necessary in order to resolve problems related to water supply , optimization of fish farm's hydraulic systems through the construction of concrete main intake channel and optimization and renewal of pond's weir and outlet structure, intake and drainage channels of production ponds, and also renovation of water pumping systems wich will be resulting in increased farmed fish production and decreased production costs. For optimization of EIA study and achievements to update information by using Geographic Information System(GIS) software, the maps of the study area were provided with scrutiny. Thus, in first step digital map with a scale of 1:500 to1:2000 in AUTO CAD format that shows the project location, prepared with land surveying. Layers of required maps based on Iran Army Geographical Organization base maps for site with conceptual and spatial information of location were provided. General location map of the region, residential areas and villages, roads and other maps needed in studies us ing these layers were produced. Next, the paper output for Cartography maps were prepared using ARC GIS software. The spatial layers with the help of GIS spatial analysis studies by different expert teams of EIA studies (soil and water pollution , social, economic and cultural studies, biological environment, climate and hydrology) , were performed. The output of digital spatial data, spatial analysis and Cartography as various maps, tables or diagrams and graphical analysis were used in various discipline reports. Since implementing the project can be create different and various changes or effects on environment resources (physical, biological, social, economic and cultural) ,thus knowing how these impacts occur will be assist to prevent or reduce their pursuant negative effects the environment impact assessment studies carried out. In order to conduct decision-making process between action and no action alternatives for perform Digcheh Aquaculture project the Leopold matrix and comparison checklist method has been used. The results of the Leopold matrix shows that the action of Project with environmental mitigation measures (+412) is superior to no action Project (-79). Obviously, the modernization and Optimization of Digcheh warm-water fish farming development project have some adverse effects on the environment like other development projects but it seems with considering mitigation measures and performing Environmental Management Plans with regard to positive outcomes for local area, implementation of this project will be provide a lot of positive or favorable outcome for indigenous peoples and fish farmers. As well as with implemention of the Digcheh project problems such as the loss of water in earthen channels, the overall status of fish farming practices, migration from rural to urban areas , lack of employment and consequently low level of income and welfare of the people will be improved and acquire positive trend in the region Consequently in the EIA study final findings, the implementation of Dighcheh fish culture development project is recommended and emphasized.
    Description: Iranian Fisheries Science Research Institute
    Description: Published
    Keywords: Physical ; Biological ; Social ; Cultural ; Environmental impact assessment ; Warm Water ; Fish culture ; Environmental
    Repository Name: AquaDocs
    Type: Report , Refereed
    Format: 220pp.
    Location Call Number Expected Availability
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