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61.
为探讨污水深度处理和同步获取产油微藻的可行性,建立光生物反应器,应用微拟球藻去除污水和中水中的氮磷,并分析不同浓度的Fe3+和Zn2+离子对微藻的生长和油脂积累的影响,从而在净化污水的同时培养微藻获得富油生物质。结果表明,该藻对污水氮磷具有较强的去除能力,可在13 d内,去除水体中96%的氨氮和94%的磷,同时化学需要氧量(COD)的去除率可达72.9%。在生活污水中培养至第16天,微藻的细胞密度可达4.55×106 cell/mL。Fe3+浓度对微拟球藻的生长具有显著影响(P6 cell/mL。该研究以中水和生活污水为基质培养微拟球藻,同时获取微藻油脂,为污水中氮磷的去除和能源的同步获取提供了新途径。 相似文献
62.
用核子微探针进行单个大气颗粒物的分析 总被引:7,自引:1,他引:7
本文对单个大气颗粒物进行了分析研究,用核子微探针对首钢地区单个大气颗粒物进行了扫描分析,用三维等高线法给出了各种元素在一群单个大气颗粒物中的二维分布。从一群单个大气颗粒物中各元素的二维分布可对首钢地区大气污染的特征及来源进行分析研究。 相似文献
63.
UV-catalytic treatment of spent caustic from ethene plant with hydrogen peroxide and ozone oxidation 总被引:1,自引:0,他引:1
YU Zheng-zhe SUN De-zhi LI Chang-hai SHI Peng-fei DUAN Xiao-dong SUN Guo-rong LIU Jun-xin 《环境科学学报(英文版)》2004,16(2):270-275
The performance of UV/H2O2, UV/O3 and UV/H2O2/O3 oxidation systems for treating spent caustic from an ethylene plant was investigated, in UV/H2O2 system, with the increase of H202 dosage, removal efficiencies of COD and the ratio of biochemical oxygen demand(BOD) to chemical oxygen demand(COD) of the effluent were increased and a better performance was obtained than the H2O2 system alone. In UV/H2O2 system, removal efficiency of COD reach 68% under the optimum condition, and BOD/COD ratio was significantly increased from 0.22 to 0.52. In UV/O3 system, with the increase of O3 dosage, removal efficiency of COD and BOD/COD ratio were increased, and a better performance was obtained than the O3 system alone. Under the optimum condition, removal efficiency of COD was 54%, and BOD/COD ratio was significantly increased from 0.22 to 0.48. In UV/H2O2/O3 system, COD removal efficiency was found to be 22.0% higher than UV/O3 system. 相似文献
64.
Osmotic distillation (OD) was found to be a coupled process in membrane absorption (MA) for the treatment of high strength ammonia wastewater. As a result, ammonia could not be concentrated in absorption solution(AS) as expected. The inhibition of the coupled OD in MA process was investigated as well as various factors affecting the inhibition. The results indicated that the coupled OD can be effectively inhibited by heating concentrated solution and cooling dilute solution. It was also found that experimental minimum inhibition temperature difference(MITD) between concentrated and dilute solutions was different when using polyvinylidene fluoride(PVDF) and polypropylene(PP) membranes respectively, which could be ascribed to material properties, such as OD and membrane distillation (MD) coefficients of the membranes. Experimental MITDs were found to be higher than theoretical MITDs which were calculated using a simplified method. 相似文献
65.
Junyu Zheng Bowen Shi Xin Yuan Chuanzeng Zheng Yufan Yu Zhijiong Huang 《环境科学学报(英文版)》2023,123(1):430-445
Because of the recent growth in ground-level ozone and increased emission of volatile organic compounds (VOCs), VOC emission control has become a major concern in China. In response, emission caps to control VOC have been stipulated in recent policies, but few of them were constrained by the co-control target of PM2.5 and ozone, and discussed the factor that influence the emission cap formulation. Herein, we proposed a framework for quantification of VOC emission caps constrained by targets for PM2.5 and ozone via a new response surface modeling (RSM) technique, achieving 50% computational cost savings of the quantification. In the Pearl River Delta (PRD) region, the VOC emission caps constrained by air quality targets varied greatly with the NOx emission reduction level. If control measures in the surrounding areas of the PRD region were not considered, there could be two feasible strategies for VOC emission caps to meet air quality targets (160 µg/m3 for the maximum 8-hr-average 90th-percentile (MDA8-90%) ozone and 25 µg/m3 for the annual average of PM2.5): a moderate VOC emission cap with <20% NOx emission reductions or a notable VOC emission cap with >60% NOx emission reductions. If the ozone concentration target were reduced to 155 µg/m3, deep NOx emission reductions is the only feasible ozone control measure in PRD. Optimization of seasonal VOC emission caps based on the Monte Carlo simulation could allow us to gain higher ozone benefits or greater VOC emission reductions. If VOC emissions were further reduced in autumn, MDA8-90% ozone could be lowered by 0.3-1.5 µg/m3, equaling the ozone benefits of 10% VOC emission reduction measures. The method for VOC emission cap quantification and optimization proposed in this study could provide scientific guidance for coordinated control of regional PM2.5 and O3 pollution in China. 相似文献
66.
生物质燃烧对东南亚及中国南方对流层臭氧含量影响的模拟研究 总被引:11,自引:0,他引:11
利用区域气候和大气化学模式系统,对2000年春季生物质燃烧排放影响东南亚及中国南部地区对流层臭氧含量进行模拟研究.结果表明,春季东南亚和南亚的生物质燃烧不仅影响源区对流层臭氧含量,而且对处于环流下游的中国南部地区也有显著作用;燃烧源区主要影响对流层低层,下游地区则影响对流层中低层.在源区引起的对流层臭氧总浓度增加达2.1×10-1g/m2,对下游的中国南部地区增加量为9.0~12.0×10-2g/m2;源区大气低层1000~900hPa的臭氧含量可增加36×10-9m3/m3 以上,而在中国南部750~700hPa高度上空的增加达15×10-9m3/m3. 相似文献
67.
北京市饮用水中溴酸盐、卤代乙酸及高氯酸盐研究 总被引:25,自引:4,他引:25
调查了北京市饮用水厂源水及出厂水中消毒副产物溴酸盐、卤代乙酸及典型污染物高氯酸盐的污染现状,研究了其来源及环境影响因素.结果表明,北京市饮用水中基本不含溴酸盐;含有5种卤代乙酸和高氯酸盐.饮用水加氯消毒是产生卤代乙酸的主要原因.在所调查水厂出厂水中卤代乙酸的平均浓度为42.1~149.5μg/L;其中含氯卤代乙酸占总量的90%以上.5种卤代乙酸的含量顺序为三氯乙酸>二氯乙酸>氯溴乙酸>二溴乙酸>一溴二氯乙酸.饮用水中卤代乙酸受季节影响较大,9月份浓度最高,4月份浓度最低.高氯酸盐主要存在于以地下水为源水的水厂中,受地下水污染影响较大.各水厂出厂水中高氯酸盐含量为0.1~6.8μg/L.饮用水中高氯酸盐在11月份含量最高,7月份含量最低. 相似文献
68.
69.
70.
利用毛细管气相色谱法测定水和废水中的丙烯酰胺 总被引:4,自引:2,他引:4
本文采用毛细管色谱法建立了水和废水中丙烯酰胺的测定程序。以活性炭柱吸附、浓缩样品中的丙烯酰胺,用甲醇洗脱,洗脱液用FID测定。方法回收率为83.1~99.0%,相对标准偏差为5.34%,检出限为0.016mg/L。 相似文献