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81.
Microcystis aeruginosa is a common aquatic toxin-producing cyanobacterium. This study explores M. aeruginosa biomass recovery using bioflocculation. Bioflocculants produced by Klebsiella pneumoniae significantly enhanced aquatic M. aeruginosa flocculation efficiency. Under neutral and acidic conditions, flocculation efficiency reached 90%, whereas flocculation efficiency was 75% under alkaline conditions. M. aeruginosa flocculation was ion dependent, and Ca2+ was determined to be the most effective cationic inducer. Negatively charged proteoglycans were identified as the being the functional components in the flocculants. Optimal conditions for M. aeruginosa flocculation were determined using response surface methodology and are as follows: (1) K. pneumoniae bioflocculant dose, 13.3?mg/L; (2) flocculation time, 1.6 hours; and (3) pH?=?5 for flocculation of 109 cells per litre. Bioflocculation using K. pneumoniae represents a promising method to control development of M. aeruginosa blooms. Further in-field investigations are necessary to fully assess its potential. 相似文献
82.
Juntao HUO Xiaohui LU Xinning WANG Hong CHEN Xingnan YE Song Gao Deborah S. Gross Jianmin CHEN Xin YANG 《Frontiers of Environmental Science & Engineering》2016,10(2):244-252
Fresh straw burning (SB) particles were generated in the laboratory by the combustion of rice straw and corn straw. The chemical composition and mixing state of the fresh SB particles were investigated by an Aerosol Time-of-Flight Mass Spectrometer (ATOFMS). Based on the mass spectral patterns, the SB particles were clustered into four major types: Salt, Organic Carbon (OC), Elemental Carbon (EC), and internally mixed particles of EC and OC (EC-OC). In addition, particles containing ash, polycyclic aromatic hydrocarbons, heavy metals or nicotine were also observed. Physical and chemical changes of the SB particles immediately after the emission were analyzed with highly time-resolved data. During the aging processes, the average particle size increased steadily. Freshly emitted organic compounds were gradually oxidized to more oxygenated compounds in the OC-containing particles. Meanwhile, an important displacement reaction (2KCl+ S O 4 2 − → K2SO4 + 2Cl−) was observed. The marker ions for SB particles were optimized and applied to identify the SB particles in the ambient atmosphere. The fluctuation of the number fraction of ambient SB particles sorted by ATOFMS agrees well with that of water soluble K+ measured by an online ion chromatography, demonstrating that the optimized marker ions could be good tracers for SB particles in field measurements. 相似文献
83.
为探究多环芳烃(PAHs)在海洋生物体内富集过程,选择皱纹盘鲍(Haliotis discus hannai)作为受试生物,应用半静态双箱动力学模型,分别考察了3-甲基菲和9,10-甲基蒽2种多环芳烃在皱纹盘鲍体内的富集动力学过程,通过非线性拟合获得鲍鱼对2种多环芳烃的吸收速率常数(K_1)、释放速率常数(K_2)、生物富集因子(BCF),以及平衡状态下鲍鱼体内2种多环芳烃的含量(Cmax)、生物学半衰期(t_(1/2))等动力学参数。结果表明,鲍鱼对9,10-甲基蒽富集动力学参数K_1、K_2、BCF、Cmax、t_(1/2)的平均值分别为4.9437、0.406、13.59、790.03μg·L~(-1)、3.78 d。鲍鱼对3-甲基菲富集动力学参数K_1、K_2、BCF、Cmax、t_(1/2)的平均值分别为2.3023、0.367、5.97、354.37μg·L~(-1)、3.13 d。鲍鱼在不同浓度下对3-甲基菲和9,10-甲基蒽的生物富集过程均符合双箱动力学模型。 相似文献
84.
海洋环境中多环芳烃类(PAHs)主要来源于海洋溢油事故以及沿海石油化工企业的废水排放,国内外大量研究发现海洋中的多环芳烃对海洋生物造成了潜在的生态风险。为了揭示不同浓度多环芳烃类污染物对海参的生态毒理效应,将仿刺参(Apostichopus japonicus)分别暴露于不同浓度的2种烷基多环芳烃3-甲基菲(5、10、100μg·L~(-1))和2-甲基蒽(5、10、50μg·L~(-1))中,检测暴露3 d、7 d和14 d后,3-甲基菲和2-甲基蒽胁迫下仿刺参CYP450和p53基因的相对表达量。结果表明,3-甲基菲和2-甲基蒽胁迫下,仿刺参CYP450和p53基因的表达均对毒物产生了不同程度的响应。与对照组相比,3-甲基菲各处理组对仿刺参CYP450和p53基因的表达均产生显著的抑制作用(P0.05); 2-甲基蒽各处理组对仿刺参CYP450和p53基因的表达影响作用不同,暴露7 d后,2-甲基蒽各处理组对仿刺参CYP450基因的表达表现出抑制作用,对p53基因的表达表现出诱导作用。相同浓度与时间胁迫下,2-甲基蒽对仿刺参CYP450和p53基因表达的影响比3-甲基菲的影响大。上述研究结果表明,3-甲基菲和2-甲基蒽均可不同程度影响仿刺参CYP450和p53基因的表达,且与3-甲基菲相比,2-甲基蒽对仿刺参CYP450和p53基因表达的影响较明显。上述结果为多环芳烃类污染物对仿刺参的生物毒性评价提供了基础数据。 相似文献
85.
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87.
石油炼化企业烟气脱硫技术研究进展 总被引:1,自引:1,他引:0
石油炼化企业由于烟气特点、排放特征和减排设施的差别,导致了各炼化企业所采用的烟气脱硫技术的差别较大,尚无成熟、有效、经济的烟气脱硫技术,各炼化企业需要采用的二氧化硫减排技术差别也较大,选用适合炼化企业烟气脱硫的可行工艺技术具有重要现实意义。综合分析了目前国内外已工业化应用的主要烟气脱硫工艺、原理、技术的优缺点以及石油炼化企业烟气脱硫技术的发展趋势,为石油炼化企业烟气脱硫技术研究提供了借鉴和参考依据,并对石油炼化企业未来烟气脱硫技术的研究和选用提出了建议。 相似文献
88.
Hui Yang Xia Huo Taofeek Akangbe Yekeen Qiujian Zheng Minghao Zheng Xijin Xu 《Environmental science and pollution research international》2013,20(7):4441-4447
Many studies indicate that lead (Pb) and cadmium (Cd) exposure may alter bone development through both direct and indirect mechanisms, increasing the risk of osteoporosis later in life. The aim of this study was to investigate the association between Pb and Cd exposure, physical growth, and bone and calcium metabolism in children of an electronic waste (e-waste) processing area. We recruited 246 children (3–8 years) in a kindergarten located in Guiyu, China. Blood lead levels (BLLs) and blood cadmium levels (BCLs) of recruited children were measured as biomarkers for exposure. Serum calcium, osteocalcin, bone alkaline phosphatase, and urinary deoxypyridinoline were used as biomarkers for bone and calcium metabolism. Physical indexes such as height, weight, and head and chest circumference were also measured. The mean values of BLLs and BCLs obtained were 7.30 μg/dL and 0.69 μg/L, respectively. The average of BCLs increased with age. In multiple linear regression analysis, BLLs were negatively correlated with both height and weight, and positively correlated with bone resorption biomarkers. Neither bone nor calcium metabolic biomarkers showed significant correlation with cadmium. Childhood lead exposure affected both physical development and increased bone resorption of children in Guiyu. Primitive e-waste recycling may threaten the health of children with elevated BLL which may eventually cause adult osteoporosis. 相似文献
89.
低温喹啉降解菌的筛选及降解性能 总被引:2,自引:0,他引:2
从吉林石化污水处理厂的活性污泥中驯化、筛选获得一株降解效率高且生长速率快高效耐冷菌,命名为WS-5.该菌能以喹啉作为惟一的碳源、氮源及能源.结合菌体的形态观察、生理生化特性实验及16S rDNA序列同源性对比分析,鉴定菌株WS-5为恶臭假单胞菌(Pseudomonas putida).不同降解条件下的实验结果表明,菌株WS-5的最佳降解条件是投菌量为15%,pH值范围在8~10,摇床转速为100 r/min.最佳降解环境下对200 mg/L的喹啉在132 h降解率达到了85.3%.菌株WS-5对初始喹啉浓度为50、100、200和300 mg/L的初始喹啉浓度分别在36、72、192和262 h内完全降解.这将为今后在低温条件下处理含喹啉废水提供技术指导. 相似文献
90.
通过在高温好氧堆肥中分别添加VT菌剂和有机物料腐熟剂,研究接种3%o的VT菌剂和有机物料腐熟剂促进堆肥的作用效果。结果表明,接种VT菌剂的处理与空白和接种有机物料腐熟剂的处理相比,堆肥初期升温更快;高温期更长;堆肥结束时,C/N降低的多,NO3-N增加的多,NH4-N挥发的少,接种VT菌剂和VT有机物料腐熟剂都可促进有机质的充分降解,缩短堆肥时间,加快堆肥腐熟,提高堆肥肥力。 相似文献