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1.
指出水产品代谢物的排出及没有被水产品利用的残饵是造成渔业养殖中水环境污染的重要原因之一。针对渔业污染物的生成情况,提出了渔业污染物排放总量的3种核定方法:实测法、物料平衡法、经验系数法。  相似文献   
2.
东太湖渔业发展对水环境的影响及其生态对策   总被引:20,自引:0,他引:20  
谷孝鸿  王晓蓉  胡维平 《上海环境科学》2003,22(10):702-704,711
东太湖网围养殖始于1984.至今养殖面积达3200hm^2。占东太湖面积的24%以上。网围养殖的盲目发展带来了湖泊的水质污染.沼泽化等环境问题。为保护东太湖水域环境。必须明确湖泊功能定位。减少湖泊污染源。并在此基础上进行人工调控.合理放养。完善湖泊生态系统结构。针对东太湖水生植被退化的趋势。应恢复和加强对优质水生植被的保护。促进湖泊生物多样性。恢复其良性生态。  相似文献   
3.
分子生物学在渔业环境保护中的运用   总被引:3,自引:0,他引:3  
朱毅  徐虹 《环境导报》1999,(3):13-15
分子生物学理论和技术在渔业环境保护与监测工作中的应用越来越得到人们的重视:生物体的多种酶已被用作监测水环境污染的指标;金属硫蛋白等生物体解毒体系在监测和防治水体重金属污染方面发挥显著作用;核酸是生物体遗传信息载体,以核酸质量变化监测水环境污染已取得较好的效果。据此就分子生物学在今后渔业环境保护中的运用提出了观点。  相似文献   
4.
Alaska's program for rebuilding salmon stock is calledfishery enhancement. Hatchery technology can produce dramatic increases in numbers of fish homing to selected streams. The Sheep Creek Hatchery is unusually efficient— it increases a fish run by a factor of 3000 and produces salmon at 9–11c/kg by minimizing mechanical energy inputs and human labor. The design harnesses the force of gravity and capitalizes on instinctual behavior of the fish. Since migratory fish collect protein from ocean pasturage, the technology increases the share of this resource collected and concentrated for harvest in a specific country or region. While small seaside hatcheries can solve biological problems of depleted fish stocks, economic and political considerations may preclude efficient utilization of the protein produced. Further, the potential for one state or country to concentrate fish near its shores poses new dilemmas for international regulation of harvests.  相似文献   
5.
Fishermen were aggregated into high-, mid-, and low-consumptive groups according to the importance they placed on catching fish. Analysis of variance indicated that each consumptive group was unique in the importance it placed on other fish-related variables. Low-consumptive fishermen rated most other aspects of the fishing experience, such as interacting with nature, relaxation, and escaping the daily routine, more important than did high-consumptive fishermen. Low-consumptive fishermen also fished more frequently and were generally more satisfied with their most recent fishing trip than were high-consumptive-oriented fishermen. The three groups can be viewed as different fishing constituencies. By understanding their characteristics, we can gain additional insights into the impacts of management decisions on recreational fishermen and their experiences.  相似文献   
6.
舟山渔场有色溶解有机物(CDOM)的三维荧光-平行因子分析   总被引:18,自引:10,他引:8  
利用三维荧光光谱(EEMs)-平行因子分析(PARAFAC)技术研究春季舟山渔场有色溶解有机物(CDOM)的荧光成分组成、分布特征及来源.PARAFAC模型解析出舟山渔场CDOM由2类5个荧光组分组成,即类腐殖质成分C1(330/420 nm)、C2[(290)365/440 nm]、C3[(260)370/490 nm]及类蛋白质成分C4(285/340 nm)、C5(270/310 nm).5种荧光组分的平面分布模式基本一致,在各层均呈现由近岸海域向远岸海域逐渐减小的趋势,但各层又略有差别.表层高值区出现在杭州湾口外北部海域、虾峙门航道口外海域,且杭州湾口外北部海域的荧光值要高于虾峙门航道口外海域;中层高值出现区域与表层相同,但杭州湾口外北部海域的荧光值要低于虾峙门航道口外海域;底层从近岸向远岸梯度减小,高值区出现在舟山本岛附近海域.各荧光组分的分布与盐度之间存在明显负相关关系,与叶绿素a的线性关系不明显.分析表明,春季舟山渔场CDOM表、中层主要受长江输入和舟山工农业等人为活动排放影响,而底层主要受舟山工农业等人为活动排放影响.从垂直分布模式上,CDOM在30°N断面上由中、表层水体向底层呈现逐渐减小的趋势,并在近岸和远岸海域都出现了高值区,且与盐度低值区、叶绿素a高值区相对应,反映该断面近岸区CDOM主要受长江输入影响,远岸区CDOM主要受生物活动影响;在30°N断面,CDOM分布模式与30.5°N断面基本类似,只是在近岸区域底层出现CDOM高值区,可能是由于潮汐、底层上升流等物理外力作用下,沉积物间隙水中高浓度的CDOM释放出来,使得靠近沉积物界面的底层水体中CDOM浓度升高.5种荧光组分中,C1、C3、C4之间相关性较强,与C2、C5相关性相对较弱,说明C1、C3、C4在来源上具有相似性与C2、C5有一定的差异性.春季舟山渔场CDOM腐殖化指数(HIX)的值较小,反映了春季舟山渔场CDOM的腐殖化程度较低,稳定性较差,在环境中存在时间较短;生物指数(BIX)在舟山外海出现高值区,近岸海域出现低值区,反映出在近岸海域人类活动的影响较大,而在外海生物活动的影响较为明显.  相似文献   
7.
The existing literature (i) examines bycatch and discard behavior in a static framework and (ii) treats bycatch as a deterministic process uniform across vessels. Using a dynamic representative agent model in a two-stock resource, this paper explores strategic interactions between a social planner and two groups of harvesters, one of which imposes a stochastic “technological externality” (bycatch) on the other. In addition to limitations on entry and the number of trips taken in each industry, three bycatch control instruments are compared to the unconstrained case: taxes, trip limits, and value-based quotas. Implementation and enforcement costs aside, taxes dominate both types of quota, and value limits outperform trip limits by eliminating one type of discarding. In simulations, relative performance depends upon variance in the bycatch process, differences in the ex vessel prices of stocks, relative efficiency of the harvester types, and fixed costs on the trip and industry margins.  相似文献   
8.
A general model is developed to examine the patterns of the regional movement of tagged and released fish from mark-recapture experiments. It is a stochastic model that incorporates fishing mortality, natural mortality, fish movement, tag-shedding, and different rates of reporting. A likelihood function is constructed for estimating its parameters. We used this model to analyze data on the Pacific halibut from mark-recapture experiments conducted by the International Pacific Halibut Commission (IPHC), with a total of 36,058 releases from 1982 to 1986 and 5,826 recoveries from 1982 to 2000. We estimated their rates of movement among IPHC management areas, along with their instantaneous rates of natural and fishing mortalities. Our analysis revealed that fish movement was not significant among areas, with a resident probability of > 0.92. This lends support to the IPHC catch-at-age stock assessment model (which has no built-in movement components). The estimated instantaneous rate of natural mortality (0.198 year−1) lies between that assumed in all IPHC stock assessments before 1998 (0.20 year−1) and that from 1999 onwards (0.15 year−1). The estimates of the instantaneous rates of fishing mortality were consistent with those from the IPHC stock assessment model. Received: April 2003 / Revised: May 2005  相似文献   
9.
通过多年实地调研,认为拦网养殖、湖滩地种植、过度捕捞、沿湖城镇生活污水污染等是渔业资源不断减少主要原因,并根据实际情况提出防治对策。  相似文献   
10.
/ Emerging ecosystem science builds on adaptive management as an approach to dealing with salmon problems in the Pacific Northwest. Adaptive management brings scientific and democratic processes together. However, managers, the public, resource users, and scientists differ in their views on the causes of salmon decline. Managers emphasize habitat loss and over-harvest as the primary causes; commercial fishers point to habitat loss, management practices, and predators; and the public gives greatest weight to water pollution and ocean drift nets. Scientific studies of salmon often produce results that seem contradictory or unclear to the public. For adaptive management to be effective, scientists' and the public need to better understand one another's perspectives.KEY WORDS: Perception; Fishery management; Salmon; Pacific Northwest; Science  相似文献   
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