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211.
采用不同浓度三苯胂(Triphenylarsine,TPA)沙质室内培养东北代表性作物大豆,研究日本遗弃在华化学武器("日遗化武")装填毒剂的主要降解产物之——TPA(C18H15As)对大豆萌发和幼苗生长的影响。结果表明:在0 mg/kg~400 mg/kg TPA浓度范围内,大豆受到的毒性效应随浓度增大而增大,直至无法生长;试验大豆的萌发率、根长、下胚轴长和株高等形态指标均随着培养介质中TPA浓度的增加而出现抑制效应明显增加的趋势;其中根系是大豆幼苗期砷累积的主要器官,也是对环境TPA毒害效应最敏感、响应最早的部位之一。日遗华武泄漏造成的土壤污染若处理不当会对埋藏地种植的大豆作物生长产生影响。 相似文献
212.
Nansi Lake is located on the east line of the South-to-North Water Diversion Project in China. A comprehensive study was carried out to investigate the spatial and temporal distribution of cyanobacteria in the lake from June 2008 to May 2011 based on monthly sample monitoring from five stations. The effect of environmental factors on cyanobacterial abundance was also evaluated. The cyanobacterial community contained 15 genera and 23 species. The cyanobacterial abundance of each monitoring station ranged from 0 to 1.53× 107 cells/L with an average of 1.45×106 cells/L, which accounted for 11.66% of the total phytoplankton abundance. The dominant species of cyanobacteria were Pseudanabaena (32.94%) and Merismopedia (19.85%), not the bloom-forming algae such as Microcystis and Anabaena. In addition, the cyanobacterial community structure and water quality variables changed substantially over the survey period. Redundancy analysis (RDA) suggested that temperature and phosphorus were important environmental factors that affected cyanobacteria. Temperature was the most important factor affecting cyanobacterial abundance. The effect of phosphorus on cyanobacterial abundance was more notable in warm periods than in periods with low temperature. 相似文献
213.
用自来水和去离子水配制不同的pH溶液,测定涡虫生存及再生的情况,以及涡虫可承受的pH变化幅度,确定日本三角涡虫对不同酸碱环境的耐受性。结果表明涡虫对酸碱环境的耐受力较强。 相似文献
214.
水解酸化+两级生物接触氧化处理高盐度水产品加工废水 总被引:1,自引:0,他引:1
介绍了“水解酸化+两级生物接触氧化”处理水产品加工废水的运行效果和工程实例,结果表明:对C1^-浓度平均6000mg/L的高盐度水产品加工废水,系统对COD、SS、氨氮的去除率分别超过了88%、90%、85%,出水COD、SS、氨氮分别低于100mg/L、70mg/L、15mg/L,出水完全可以达到《污水综合排放标准》(GB8978—1996)一级排放标准。 相似文献
215.
G.L. Feng J. Letey A.C. Chang M. Campbell Mathews 《Agriculture, ecosystems & environment》2005,110(3-4):219-229
Large scale dairy operations are common. In many cases the manure is deposited on a paved surface and then removed with a flushing system, after which the solids are separated, the liquid stored in ponds, and eventually the liquid applied on adjacent crop land. Management of liquid manure to maximize the fertilizer value and minimize water quality degradation requires knowledge of the interactive effects of mineralization of organic N (ON) to NH4+, crop uptake of mineral N, and leaching of NO3− on a temporal basis. The purpose of the research was to use the ENVIRO-GRO model to simulate how the amount of applied N, timing of N application, ON mineralization rates, chemical form of N applied, and irrigation uniformity affected (1) yields of corn (Zea mays) in summer and a forage grass in winter in a Mediterranean climate and (2) the amount of NO3− leached below the root zone. This management practice is typical for dairies in the San Joaquin Valley of California. The simulations were conducted for a 10-year period. Steady state conditions, whereby an equivalent amount of N applied in the organic form will be mineralized in a given year, are achieved more rapidly for materials with high mineralization rates. Both timing and total quantity of N application are important in affecting crop yield and potential N leaching. Major conclusions from the simulations are as follows. Frequent low applications are preferred to less frequent higher applications. Increasing the amount of N application increased both the crop yield and the amount of NO3− leached. Increasing irrigation uniformity increased crop yields but had variable effects on the amount of NO3− leached. A winter forage crop following a summer corn crop effectively reduced the leaching of residual soil N following the corn crop. 相似文献
216.
Chin-Tsan Wang Thangavel Sangeeth Wei-Mon Yan Wen-Tong Chong Lip-Huat Saw Feng Zhao Chung-Ta Chang Chen-Hao Wang 《环境科学学报(英文版)》2019,31(1):163-168
Single-chamber sediment microbial fuel cells(SSMFCs) have received considerable attention nowadays because of their unique dual-functionality of power generation and enhancement of wastewater treatment performance. Thus, scaling up or upgrading SSMFCs for enhanced and efficient performance is a highly crucial task. Therefore, in order to achieve this goal, an innovative physical technique of using interface layers with four different pore sizes embedded in the middle of SSMFCs was utilized in this study.Experimental results showed that the performance of SSMFCs employing an interface layer was improved regardless of the pore size of the interface material, compared to those without such layers. The use of an interface layer resulted in a positive and significant effect on the performance of SSMFCs because of the effective prevention of oxygen diffusion from the cathode to the anode. Nevertheless, when a smaller pore size interface was utilized, better power performance and COD degradation were observed. A maximum power density of 0.032 mW/m~2 and COD degradation of 47.3% were obtained in the case of an interface pore size of 0.28 μm. The findings in this study are of significance to promote the future practical application of SSMFCs in wastewater treatment plants. 相似文献
217.
218.
青海省西宁市和天峻县大气颗粒物中有机氯农药和类二噁英多氯联苯的水平与分布 总被引:2,自引:0,他引:2
本研究测定了青海省西宁市与海西蒙古族藏族自治州天峻县夏、冬两季大气颗粒物中有机氯农药(OCPs)和类二噁英多氯联苯(DL-PCBs)的浓度水平.结果表明,青海省大气颗粒物中OCPs主要为DDTs、HCHs.西宁市DDTs和HCHs的平均水平分别为:35 pg·m-3、5.9 pg·m-3(夏季)和93 pg·m-3、11 pg·m-3(冬季),天峻县DDTs和HCHs的平均水平分别为:83pg·m-3、6.4 pg·m-3(夏季)和28 pg·m-3、6.7 pg·m-3(冬季).与亚洲其它地区相比,青海省大气颗粒物中OCPs处于较低水平.西宁市大气颗粒物中DL-PCBs的平均水平分别为:0.52 pg·m-3(夏季),0.99 pg·m-3(冬季),天峻县为:0.58 pg·m-3(夏季)、0.52 pg·m-3(冬季).西宁市夏、冬两季OCPs的平均水平均大于天峻县,而两地DL-PCBs的平均水平相当.本研究中高原地区DL-PCBs的分布特点及变化规律与极地地区的研究相比存在一定的相似性,而DDTs和HCHs则存在差异性. 相似文献
219.
以序批式反应器培养的成熟好氧颗粒污泥为对象,研究沉淀高度对颗粒数、比重、污泥浓度、粒径分布及选择系数的影响.结果表明,随着沉淀高度的增加,污泥浓度在沉淀时间为30 s时由0.24 mg.L-1明显增加至6.07 mg.L-1,平均粒径从450μm增加到550μm,颗粒圆形度增加12.67%,而复杂度减小13.47%,说明粒径较大、形状较规则的颗粒沉降较快,从而更易在沉降选择过程中得以保留.根据选择压原理,结合颗粒污泥沉降实验结果引入选择系数.实验和计算结果显示,在任意沉淀高度,选择系数随粒径和密度的增大而增加.随着沉淀高度的增加,直径>600~800μm的颗粒选择系数增加,小颗粒趋势与之相反,说明增大排水比有利于大颗粒保留而絮体被筛选出反应器,而低的排水比会使污泥颗粒化过程放缓.该研究结果可望对加速污泥颗粒化过程和提高其稳定性提供科学的理论依据和指导. 相似文献
220.