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501.
重金属污染是对虾养殖环境主要污染现象之一,查明重金属在环境中的迁移规律对养殖水质调控和对虾健康养殖具有重要意义。本文采用火焰原子吸收分光光度计测定在不同暴露时间下双齿许水蚤(Pseudodiaptomus dubia) 对Cu和Zn的富集量,研究了双齿许水蚤对Cu和Zn富集动力学,并探讨了温度和盐度对其富集的影响。结果表明:双齿许水蚤对Cu和Zn的富集过程均经历了快速、慢速和平衡3个阶段,实验24 h达到富集平衡;双齿许水蚤对Cu和Zn的富集动力学参数k1(Cu)=0.077 < k1(Zn)=0.272,BCF(Cu)=0.344 < BCF(Zn)=2.252,双齿许水蚤对Zn的富集速率和富集能力均大于Cu。温度对双齿许水蚤Cu和Zn富集的影响显著(p <0.05),最适温度范围为15~30 ℃;盐度对双齿许水蚤Zn富集的影响极显著(p <0.01),而对Cu富集的影响不显著(p >0.05),对Cu和Zn适宜的富集盐度范围为5~35。这些研究结果表明,双齿许水蚤对Cu和Zn均具有较强的富集能力。基于以上研究结果,在对虾养殖期间,应通过循环过滤设施去除受到重金属污染池塘中的浮游动物,从而减少幼虾对其摄食和量度体重金属的积累,降低食品安全隐患。  相似文献   
502.
异噻唑啉酮类杀菌剂1,2-苯并异噻唑-3-酮(BIT)和甲基异噻唑啉酮(MIT)虽已在多种行业中广泛使用,但目前有关其毒性尤其对水体中生物毒性的数据还较少。鉴于BIT和 MIT在水体中普遍存在,本文研究了这两种污染物对两栖动物黑斑蛙胚胎和蝌蚪的急性毒性。黑斑蛙胚胎和蝌蚪分别暴露系列浓度的BIT和 MIT,观察化学品对其生长、发育和运动的影响,计算96小时半数致死浓度(96 h-LC50)和96小时半数致畸浓度(96 h-TC50),确定最小生长抑制浓度(MCIG)。结果发现,BIT对黑斑蛙胚胎的96 h-LC50和96 h-TC50分别为2.99 mg?L-1和0.60 mg?L-1,MCIG小于0.40 mg?L-1,对蝌蚪的96 h-LC50为6.44 mg?L-1。MIT对黑斑蛙胚胎的96 h-LC50和96 h-TC50分别为5.30 mg?L-1和2.36 mg?L-1,MCIG为2.59 mg?L-1,对蝌蚪的96 h-LC50为7.58 mg?L-1。根据《化学农药环境安全评价准则报批稿》中两栖动物蝌蚪急性毒性的分级标准,判定BIT和MIT的毒性等级为中等。该毒性数据为异噻唑啉酮类杀菌剂的环境管理提供参考。  相似文献   
503.
采用半静水式毒性试验,研究了6种苯系物(苯、甲苯、乙基苯、邻–二甲苯、间–二甲苯、对–二甲苯)对虾夷扇贝的生殖毒性作用。在水温(16±0.5)℃、盐度30.0、p H 8.0条件下,用0.5、2.5、12.5 mg·L-1的苯、甲苯、乙基苯、邻–二甲苯、间–二甲苯、对–二甲苯处理虾夷扇贝的精子、胚胎和幼体,观察6种苯系物对虾夷扇贝的精子活力、卵子受精率、胚胎延滞率、胚胎畸形率、孵化率、幼体畸形率的影响。同时通过透射电镜观察6种苯系物(2.5 mg·L-1)对虾夷扇贝精子超微结构的损伤作用。结果发现:不同浓度苯系物处理组与对照组(0.0 mg·L-1)相比,虾夷扇贝精子的运动时间、卵子受精率及胚胎孵化率显著降低;胚胎发育延滞率、胚胎畸形率和幼体畸形率显著增加为并与处理浓度之间存在显著的剂量—效应关系。以上结果表明实验浓度下,6种苯系物对虾夷扇贝具有较强的胚胎毒性和生殖毒性作用。通过电镜切片发现,2.5 mg·L-1的苯、甲苯、乙基苯、邻–二甲苯、间–二甲苯、对–二甲苯导致虾夷扇贝精子超微结构损伤,表现为:精子质膜断裂、部分溶解,线粒体质膜和内嵴断裂、部分溶解。苯系物对虾夷扇贝精子超微结构的损伤可能是影响其精子活力和降低卵子受精率的主要原因之一。上述结果为苯系物对海洋贝类的生殖毒性评价提供基础数据。  相似文献   
504.
探讨了国家重点实验室利用计算机网络通讯技术的飞速发展在创新性研究、国家安全等方面发挥越来越大作用之时所面临日益突出的网络安全管理问题.根据国家重点实验室网络的基本安全要求,分析了平台安全的体系结构,提出了安全技术产品或工具的具体部署图,来保证国家重点实验室在内部管理、学术交流和保密工作等方面能达到科学、高效和严密的预期效果.  相似文献   
505.
Polycyclic aromatic hydrocarbons(PAHs) are ubiquitous priority pollutants that cause great damage to the natural environment and health. Average genome size in a community is critical for shedding light on microbiome’s functional response to pollution stress within an environment. Here, microcosms under different concentrations were performed to evaluate the selection of PAHs stress on the average genome size in a community. We found the distinct communities of significantly larger genome size w...  相似文献   
506.
Effect of pH ranging from 4.0 to 11.0 on co-fermentation of waste activated sludge (WAS) with food waste for short-chain fatty acids (SCFAs) production at ambient temperature was investigated in this study. Experimental results showed that the addition of food waste significantly improved the performance of WAS fermentation system, which resulted in the increases of SCFAs production and substrate reduction. The SCFAs production at pH 6.0, 7.0, 8.0, and 9.0 and fermentation time of 4 d was respectively 5022.7, 6540.5, 8236.6, and 7911.7 mg COD·L-1, whereas in the blank tests (no pH adjustment, pH 8.0 (blank test 1), no food waste addition, pH 8.0 (blank test 2), and no WAS addition (blank test 3)) it was only 1006.9, 971.1, and 1468.5 mg COD·L-1, respectively. The composition of SCFAs at pH from 6.0 to 9.0 was also different from other conditions and propionic acid was the most prevalent SCFA, which was followed by acetic and n-butyric acids, while acetic acid was the top product under other conditions. At pH 8.0 a higher volatile suspended solids (VSS) reduction of 16.6% for the mixture of WAS and food waste than the sole WAS indicated a synergistic effect existing in fermentation system with WAS and food waste. The influence of pH on the variations of nutrient content was also studied during anaerobic fermentation of the mixture of WAS and food waste at different pH conditions. The release of NH4+-N increased with fermentation time at all pH values investigated except 4.0, 5.0 and in blank test one. The concentrations of soluble phosphorus at acidic pHs and in the blank test one were higher than those obtained at alkaline pHs. Ammonia and phosphorus need to be removed before the SCFAs-enriched fermentation liquid from WAS and food waste was used as the carbon source.  相似文献   
507.
Soil aggregation plays an important role in agricultural production activities. However, the structure of soil aggregation is destroyed by the natural environment and unreasonable farming management, resulting in the loss of water, fertilizers and pesticides in soil. At present, hydrogels have been widely reported to promote the formation of soil aggregation. In this paper, amphiphilic calcium alginate (ASA/Ca2+) was applied to promote the formation of soil aggregation and enhance pesticide retention. Initially, an ASA was obtained through the one-pot Ugi condensation (a four-component green chemical reaction). Then, ASA/Ca2+ hydrogel is prepared by Ca2+ cross-linking. The formation of soil aggregation was determined through the Turbiscan Lab Expert stability analyzer, Confocal Laser Scanning Microscope (CLSM), and Transmission Electron Microscope (TEM). And the effect of soil aggregation on acetamiprid environmental behavior was investigated by adsorption kinetics, adsorption isotherms, and leaching. The results shown that the three-dimensional network structure of ASA/Ca2+ hydrogel can promote the formation of soil aggregation. Aggregate durability index (ADI) was 0.55 in the presence of ASA/Ca2+ hydrogel, indicating that amphiphilic hydrogel can enhance the stability of soil aggregation. The adsorbing capacity of acetamiprid was 1.58 times higher than pure soil, and the release of acetamiprid only about 20% in the presence of ASA/Ca2+ hydrogel. These results would be helpful for the formation of soil aggregation and pesticides adsorption on soil aggregation. Thus, ASA/Ca2+ hydrogel is likely to improve soil quality, simultaneously it can minimize the mobility of pesticides in the agricultural system.  相似文献   
508.
针对大型电网中区域性电网失稳的失步振荡问题,以华北2020年规划电网和东北电网2013年500 kV线路相间短路故障为研究对象,根据同调分群解列原理,提出了基于机组受扰轨迹同调分群的解列配置流程。结果表明:基于机组受扰轨迹同调分群的解列配置方法与常规解列配置方法相比,解列断面的设置思路更加清晰,并且,可以有效地解决多群振荡问题。  相似文献   
509.
电网多重故障下,二三道防线切机措施可能对失步振荡中心产生影响,并严重影响电力系统安全稳定运行。本文先从理论上分析得到二三道防线切机措施影响失步振荡中心迁移的规律,再以实际电网为研究对象,基于BPA仿真计算,研究多重故障下不同切机措施机组类型、位置、数量等差异对失步振荡中心的影响,并提出安控切机建议措施和高频切机优化方案。分析结果表明:在失步振荡过程中,二三道防线切机措施会影响失步振荡中心朝切机侧迁移。因此,在安控切机措施中应尽量避免切除振荡中心附近大容量火电机组,在高频切机方案中应先切除稳定性能较差的机组。  相似文献   
510.
Utilization of solidified phosphogypsum as Portland cement retarder   总被引:1,自引:0,他引:1  
The utilization of the phosphogypsum (PG) as cement retarder is both an economical and an ecological approach to treat this solid waste. Cement using raw PG as retarder has two problems pressing for solution,namely, delaying the setting time and difficulty being fed into the cement mill. The soluble phosphates in PG behave as super-retarder and bring about retarding in the setting process of cement made with PG. Two types of solidified phosphogypsum (SPG) were prepared to solve those two problems. The strength and the water stability of the SPG were good enough to ensure that they may be conveyed easily and fed into the cement mill stably. The cements with SPG had a similar setting time and strength as cement made with natural gypsum (NG). The microstructure of two kinds of SPG were observed with SEM. During factory application of SPG, good techniques and economic benefits were obtained.  相似文献   
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