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261.
文章初步研究了水华蓝藻生物质对重金属离子Cu2+的吸附特性,包括生物吸附动力学和吸附等温线。生物吸附动力学结果表明,Cu2+的生物吸附可分为两个阶段,第一个阶段能较快地达到平衡,而之后的阶段进行缓慢。透析袋处理的蓝藻生物质在不同pH(3,4,5,6)的铜离子溶液条件下,吸附效率依次为62.4%,78.1%,71.2%,60.35%,吸附最大值为7.81 mg/g。水华蓝藻生物质对Cu2+的生物吸附平衡等温线可以用Freundlich模型精确拟合。水华蓝藻生物质在处理低浓度的含Cu2+废水方面有潜力。湖泊富营养化的优势在于产生低成本的、大量的、可收集的水华,这说明自然环境中的藻类资源如蓝藻水华生物质,可能作为商业中使用的生物吸附剂。 相似文献
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264.
通过对葫芦岛市工业源二氧化硫普查结果全面系统分析,阐明了各区域、行业、企业的二氧化硫产生、排放及分布特点,指出了葫芦岛地区工业源二氧化硫存在的主要问题,提出了具体的对策措施。 相似文献
265.
采用超滤膜法将2-丁烯醛生产废水中的有机物分为相对分子质量不同的7个级分,并应用溶解性有机碳(dissolved organic carbon,DOC)、紫外吸收光谱(ultraviolet spectrum,UV)、傅里叶变换红外光谱(fourier transform infrared spectrometer,FT-IR)和气相色谱/质谱联用仪(gas chromatography with mass spectrometry,GC-MS)技术对不同相对分子质量区间的有机物所占比例及物质结构进行了研究.结果表明,废水中相对分子质量1×103的有机物所占比例最高,达到88.57%;采用GCMS对废水中相对分子质量1×103的级分进行分析,定性出27种化合物,包含醛、酮、酯、醇、酚、酸、烷烃类及其他苯系物等,其峰面积占有机物峰面积总和的比例分别为6.9%、5.3%、35.4%、13.2%、4.6%、0.4%、1.7%、16.8%,总和为84%.UV和FT-IR分析结果均显示不同相对分子质量区间的光谱吸收特征没有明显差别,级分中存在含有不饱和双键、羟基、羰基化合物及芳香族化合物,与GC-MS检测结果相吻合.研究结果为废水处理工艺的开发与优化提供了重要的指导作用. 相似文献
266.
2012年1月~2012年12月采集乌鲁木齐大气PM2.5样品,使用质粒DNA评价法研究了不同季节PM2.5的氧化能力,并进行氧化性毒性与相应气象因素和质量浓度之间的相关性研究.结果表明,乌鲁木齐大气PM2.5的质量浓度具有冬季最高,春季和秋季次之,夏季最低的季节性变化特征;PM2.5全样和水溶部分氧化能力的季节差异较大,对质粒DNA的氧化性损伤具有冬季最大,春季和夏季之次,秋季最低.冬、春、夏、秋季大气PM2.5全样的TD30(PM2.5对质粒DNA造成破坏达到30%所需要的颗粒物的剂量)平均值分别为440,491,503,515μg/mL,水溶部分分别为474,721,666,600μg/mL.绝大部分PM2.5样品全样的TD30值均小于水溶部分样,表明全样的毒性大于相应的水溶部分样.全样TD30值与平均温度显著(P<0.05)正相关,表明寒冷的天气/季节可能造成PM2.5的高毒性.水溶样TD30值与风速显著(P<0.01)正相关,与相对湿度显著负相关.这表明,高的风速和低的相对湿度可能跟较低和较高的PM2.5的毒性有关.PM2.5氧化性损伤能力的大小与其质量浓度之间的相关性不明显,表明仅以颗粒物的质量浓度来评价大气颗粒物氧化性损伤能力大小的方法并不能真实地反映其对人体健康的危害程度,起决定作用的还是颗粒物的化学组成及其表面吸附的有害成分. 相似文献
267.
Photocatalytic ozonation of phenol and oxalic acid (OA) was conducted with a Ag^+/TiO2 catalyst and different pathways were found for the degradation of different compounds. Ag^+ greatly promoted the photocatalytic degradation of contaminants due to its role as an electron scavenger. It also accelerated the removal rate of OA in ozonation and the simultaneous process for its complex reaction with oxalate. Phenol could be degraded both in direct ozonation and photolysis, but the TOC removal rates were much higher in the simultaneous processes due to the oxidation of hydroxyl radicals resulting from synergetic effects. The sequence of photo-illumination and ozone exposure in the combined process showed quite different effects in phenol degradation and TOC removal. The synergetic effects in different combined processes were found to be highly related to the properties of the target pollutants. The color change of the solution and TEM result confirmed that Ag+ was easily reduced and deposited on the surface of Tit2 under photo-illumination, and dissolved again into solution in the presence of ozone. This simple cycle of enrichment and distribution of Ag^+ can greatly benefit the design of advanced oxidation processes, in which the sequences of ozone and photo-illumination can be varied according to the needs for catalyst recycling and the different properties of pollutants. 相似文献
268.
Plastics such as polyvinyl chlorides (PVC) are widely used in many indoor constructed environments; however, their unbound chemicals, such as di-(2-ethylhexyl) phthalates (DEHP), can leach into the surrounding environment. This study focused on DEHP's effect on the central nervous system by determining the precise DEHP content in mice brain tissue after exposure to the chemical, to evaluate the specific exposure range. Primary neuronal-astrocyte co-culture systems were used as in vitro models for chemical hazard identification of DEHP. Oxidative stress was hypothesized as a probable mechanism involved, and therefore the total reactive oxygen species (ROS) concentration was determined as a biomarker of oxidative stress. In addition, NeuriteTracer, a neurite tracing plugin with ImageJ, was used to develop an assay for neurotoxicity to provide quantitative measurements of neurological parameters, such as neuronal number, neuron count and neurite length, all of which could indicate neurotoxic effects. The results showed that with 1 nmol/L DEHP exposure, there was a significant increase in ROS concentrations, indicating that the neuronal-astrocyte cultures were injured due to exposure to DEHP. In response, astrocyte proliferation (gliosis) was initiated, serving as a mechanism to maintain a homeostatic environment for neurons and protect neurons from toxic chemicals. There is a need to assess the cumulative effects of DEHP in animals to evaluate the possible uotake and effects on the human neuronal system from exoosure to DEHP in the indoor environment. 相似文献
269.
Efficient dechlorination of chlorinated solvent pollutants under UV irradiation by using the synthesized TiO2 nano-sheets in aqueous phase 总被引:1,自引:0,他引:1
Landry Biyoghe Bi Ndong Murielle Primaelle Ibondou Zhouwei Miao Xiaogang Gu Shuguang Lu Zhaofu Qiu Qian Sui Serge Maurice Mbadinga 《环境科学学报(英文版)》2014,26(5):1188-1194
Titanium dioxide(TiO2), which is the widely used photo-catalyst, has been synthesized by simple hydrothermal solution containing tetrabutyl titanate and hydrofluoric acid. The synthesized product has been applied to photo-degradation in aqueous phase of chlorinated solvents, namely tetrachloroethene(PCE), trichloroethene(TCE) and 1,1,1-trichloroethane(TCA). The photo-degradation results revealed that the degradation of these harmful chemicals was better in UV/synthesized TiO2 system compared to UV/commercial P25 system and UV only system. The photo-catalytic efficiency of the synthesized TiO2 was 1.4, 1.8 and 3.0 folds higher compared to the commercial P25 for TCA, TCE and PCE degradation, respectively. Moreover, using nitrobenzene(NB) as a probe of hydroxyl radical(.OH), the degradation rate was better over UV/synthesized TiO2, suggesting the high concentration of.OH generated in UV/synthesized TiO2system. In addition,.OH concentration was confirmed by the strong peak displayed in EPR analysis over UV/synthesized TiO2system. The characterization result using XRD and TEM showed that the synthesized TiO2 was in anatase form and consisted of well-defined sheet-shaped structures having a rectangular outline with a thickness of 4 nm, side length of 50 nm and width of 33 nm and a surface 90.3 m2/g. XPS analysis revealed that ≡Ti-F bond was formed on the surface of the synthesized TiO2. The above results on both photocatalytic activity and the surface analysis demonstrated the good applicability of the synthesized TiO2 nano-sheets for the remediation of chlorinated solvent contaminated groundwater. 相似文献
270.
Carbon dioxide(CO2) emissions are a leading contributor to the negative effects of global warming. Globally, research has focused on effective means of reducing and mitigating CO2 emissions. In this study, we examined the efficacy of eco-industrial parks(EIPs) and accelerated mineral carbonation techniques in reducing CO2 emissions in South Korea.First, we used Logarithmic Mean Divisia Index(LMDI) analysis to determine the trends in carbon production and mitigation at the existing EIPs. We found that, although CO2 was generated as byproducts and wastes of production at these EIPs, improved energy intensity effects occurred at all EIPs, and we strongly believe that EIPs are a strong alternative to traditional industrial complexes for reducing net carbon emissions. We also examined the optimal conditions for using accelerated mineral carbonation to dispose of hazardous fly ash produced through the incineration of municipal solid wastes at these EIPs. We determined that this technique most efficiently sequestered CO2 when micro-bubbling, low flow rate inlet gas, and ammonia additives were employed. 相似文献