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991.
选用2种在市场上畅销的护肤品(六神沐浴露和玉兰油沐浴露),采用大型蚤(daphnia magna straus)的急性毒性标准测定方法,初步研究和评价了2种沐浴露对水环境污染的生态毒性.结果表明,六神沐浴露24h的LC50和EC50值分别为96.76和81.72 mg·L-1,48 h的LC50和EC50值分别为78.42和72.93 mg·L-1;玉兰油沐浴露24h的LC50和EC50值分别为91.13和84.95 mg·L-1,48h的LC50和EC50值分别为80.11和78.51 mg·L-1.2种沐浴露对大型蚤的致死和抑制效应与其浓度呈明显正相关关系,且毒性效应随作用时间的延长而增强. 相似文献
992.
企业环境等级评价制度将公众第三方引入环境管理体系,着重分析三方在管理中的各自作用,以及如何实现利益的最大化。公众的参与是核心,政府引导是保证企业环境等级评价制度顺利和健康实施的基础,而企业可以通过环境等级评价提高企业环境信息的透明度,并进一步利用市场增大企业的利益。 相似文献
993.
内循环移动床生物膜反应器的研究与应用 总被引:2,自引:0,他引:2
对传统移动床生物膜反应器进行改进,开发了内循环移动床生物膜反应器,通过处理模拟生活污水的研究,考察了反应器去除有机物和脱氮的能力。结果表明,在填料投加率为35%、进水COD为200~800mg/L、HRT为6h、有机负荷为0.8~3.2kg/(m.3d)的条件下,系统COD的去除率在89%以上;同时反应器具有良好的同步硝化反硝化脱氮能力,在DO为2.0mg/L、C/N为25、HRT为6h的条件下,NH4-N和TN的平均去除率分别可以达到98%和93%。另外,内循环移动床生物膜反应器与移动床生物膜反应器的对比实验结果表明,前者对COD和氮的去除效果都优于后者。 相似文献
994.
995.
996.
997.
固定化与游离态小球藻脱氮除磷对比研究 总被引:4,自引:0,他引:4
对固定化与游离态小球藻脱氮、除磷进行对比研究,结果表明固定化藻在2d内对NH4^+-N和PO^3-4-P的净化效率比悬浮态藻分别高23.14%和35.19%。固定化后初期会对藻细胞的生长产生影响,使得固定化藻的数量增长慢于悬浮态藻的生长,但在较短时间(24a左右)内细胞的活性即可恢复,并保持持续生长,这说明固定化没有对细胞产生不可恢复的损伤。固定化藻技术不仅保留了悬浮态藻的优点,而且使得藻对氮、磷的去除率有较大提高,对藻细胞起到了保护作用,延长藻细胞的生长期,有利于细胞更多地吸收氮、磷。 相似文献
998.
999.
Enhanced biological nutrient removal by the alliance of a heterotrophic
nitrifying strain with a nitrogen removing ecosystem 总被引:3,自引:0,他引:3
Nitrogen removal from synthetic wastewater was investigated in an airlift bioreactor (ALB), augmented with a novel heterotrophic nitrifier Pseudonocardia ammonioxydans H9^T under organic carbon to nitrogen ratios (Corg/N) ranging from 0 to 12. Effect of the inoculated strain was also determined on the settling properties and the removal of chemical oxygen demand (COD). Two laboratory scale reactors were set up to achieve a stable nitrifying state under the same physicochemical conditions of hydraulic retention time (HRT), temperature, pH and dissolved oxygen (DO), and operated under the sequencing batch mode. The level of DO was kept at 0.5- 1.5 mg/L by periodic stirring and aeration. Each specific Corg/N ratio was continued for duration of 3 weeks. One of the reactors (BR2) was inoculated with P ammonioxydans H9^T periodically at the start of each Corg/N ratio. Sludge volumetric index (SVI) improved with the increasing Corg/N ratio, but no significant difference was detected between the two reactors. BR2 showed higher levels of nitrogen removal with the increasing heterotrophic conditions, and the ammonia removal reached to the level of 82%-88%, up to10% higher than that in the control reactor (BR1) at Corg/N ratios higher than 6; however, the ammonia removal level in experimental reactor was up to 8% lower than that in control reactor at Corg/N ratios lower than 2. The COD removal efficiency progressively increased with the increasing Corg/N ratios in both of the reactors. The COD removal percentage up to peak values of 88%-94% in BR2, up to 11% higher than that in BR1 at Corg/N ratio higher than 4. The peak values of ammonia and COD removal almost coincided with the highest number (18%-27% to total bacterial number) of the exogenous bacterium in the BR2, detected as colony forming units (CFU). Furthermore, the removal of ammonia and COD in BR2 was closely related to the number of the inoculated strain with a coefficient index (R2) up to 0.82 and 0.85 for ammonia and 相似文献
1000.
Jianhua GAO Guishan YANG Weixin OU 《Frontiers of Environmental Science & Engineering in China》2008,2(1):81-88
In order to explore the effect of different ecological zones and their above plants in the organic matter cycling of the whole
tidal salt marsh, indicators such as total organic carbon (TOC), total nitrogen (TN), C/N ratio, δ13C and δ15N of surface, core sediments, and plants of tidal salt marshes in North Jiangsu Province are analyzed. Subsequently, distribution
regularities of these measurement indicators are discussed, and the biogeochemistry processes between sediments and plants
are also analyzed. Lastly, the organic matter sources of different ecologic zones in tidal salt marsh are evaluated, and the
organic matter accumulations in different ecologic zones induced by their plants are also compared. These results indicate
that TOC, TN, C/N ratio and δ13C showed obvious zonal distribution. The organic matter sources are dominated by marine input in the silt flat, artemisia schrenkiana flat, and the transition zone between silt and spartina alterniflora flat, and are controlled by terrigenous input in spartina alterniflora flat. Spartina alterniflora plays an important role in the accumulation of organic matter in the whole tidal salt marshes ecosystem. In the study area,
the annually increased TOC, organic matter and TN in the spartina alterniflora, artemisia schrenkiana and reed flats reach 6,451, 12,043 and 536 t, respectively. The amount of TOC, organic matter and TN accumulated in the spartina alterniflora flat is more than that in other ecological zones, which shows that the spartina alterniflora flat exert a non-replaceable effect on the material cycle and exchange in the whole tidal salt marshes ecosystem.
__________
Translated from Environmental Science, 2005, 26(6): 51–56 [译自: 环境科学] 相似文献