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991.
Preliminary investigation of phosphorus adsorption onto two types of iron oxide-organic matter complexes 总被引:1,自引:0,他引:1
Iron oxide(FeO)coated by natural organic matter(NOM)is ubiquitous.The associations of minerals with organic matter(OM)significantly changes their surface properties and reactivity,and thus affect the environmental fate of pollutants,including nutrients(e.g.,phosphorus(P)).In this study,ferrihydrite/goethite-humic acid(FH/GE–HA)complexes were prepared and their adsorption characteristics on P at various p H and ionic strength were investigated.The results indicated that the Fe O–OM complexes showed a decreased P adsorption capacity in comparison with bare Fe O.The maximum adsorption capacity(Q_(max))decreased in the order of FH(22.17 mg/g)FH-HA(5.43 mg/g)GE(4.67 mg/g)GE-HA(3.27 mg/g).After coating with HA,the amorphous FH–HA complex still showed higher P adsorption than the crystalline GE–HA complex.The decreased P adsorption observed might be attributed to changes of the Fe O surface charges caused by OM association.The dependence of P adsorption on the specific surface area of adsorbents suggests that the Fe O component in the complexes is still the main contributor for the adsorption surfaces.The P adsorptions on Fe O–HA complexes decreased with increasing initial p H or decreasing initial ionic strength.A strong dependence of P adsorption on ionic strength and p H may demonstrate that outer-sphere complexes between the OM component on the surface and P possibly coexist with inner-sphere surface complexes between the Fe O component and P.Therefore,previous over-emphasis on the contributions of original minerals to P immobilization possibly over-estimates the P loading capacity of soils,especially in humic-rich areas. 相似文献
992.
Pengjun Xu Bu Tao Zhiqiang Ye Hu Zhao Yue Ren Ting Zhang Yeru Huang Jiping Chen 《环境科学学报(英文版)》2016,28(10):102-111
The concentrations of 16 priority polycyclic aromatic hydrocarbons(PAHs) were measured in 23 farmland soil samples and 10 riverine sediment samples from Guiyu, China, and the carcinogenic risks associated with PAHs in the samples were evaluated. Guiyu is the largest electronic waste(EW) dismantling area globally, and has been well known for the primitive and crude manner in which EWs are disposed, such as by open burning and roasting. The total PAH concentrations were 56–567 ng/g in the soils and 181–3034 ng/g in the sediments.The Shanglian and Huamei districts were found to be more contaminated with PAHs than the north of Guiyu. The soils were relatively weakly contaminated but the sediments were more contaminated, and sediments in some river sections might cause carcinogenic risks to the groundwater system. The PAHs in the soils were derived from combustion sources,but the PAHs in the sediments were derived from both combustion and petroleum sources. 相似文献
993.
Chemical characteristics of fine particles and their impact on visibility impairment in Shanghai based on a 1-year period observation 总被引:1,自引:0,他引:1
Min Zhou Liping Qiao Shuhui Zhu Li Li Shengrong Lou Hongli Wang Qian Wang Shikang Tao Cheng Huang Changhong Chen 《环境科学学报(英文版)》2016,28(10):151-160
In this work, a one-year observation focusing on high time resolution characteristics of components in fine particles was conducted at an urban site in Shanghai. Contributions of different components on visibility impairment were also studied. Our research indicates that the major components of PM2.5 in Shanghai are water-soluble inorganic ions and carbonaceous aerosol, accounting for about 60% and 30% respectively. Higher concentrations of sulfate (SO42−) and organic carbon (OC) in PM2.5 occurred in fall and summer, while higher concentrations of nitrate (NO3−) were observed in winter and spring. The mass concentrations of Cl− and K+ were higher in winter. Moreover, NO3− increased significantly during PM2.5 pollution episodes. The high values observed for the sulfate oxidizing rate (SOR), nitrate oxidizing rate (NOR) and secondary organic carbon (SOC) in OC indicate that photochemical reactions were quite active in Shanghai. The IMPROVE (Interagency Monitoring of Protected Visual Environments) formula was used in this study to investigate the contributions of individual PM2.5 chemical components to the light extinction efficient in Shanghai. Both NH4NO3 and (NH4)2SO4 had close relationships with visibility impairment in Shanghai. Our results show that the reduction of anthropogenic SO2, NOx and NH3 would have a significant effect on the improvement of air quality and visibility in Shanghai. 相似文献
994.
995.
石油开采在规模不断扩张的同时,也造成了大面积的采区环境污染,严重降低了生态环境质量.为探索石油开采区域生态环境质量综合评价的有效方法,通过对石油开采区域生态环境质量及综合评价现状的分析,精选指标构建了石油开采区域生态环境质量的综合评价指标体系,利用专家调查法确定了各评价指标的相对权值,并构建了石油开采区域生态环境质量模糊综合评价模型,选择胜利油田某采区进行了综合评价的应用研究,对模糊综合评价模型的有效性进行了验证. 相似文献
996.
997.
998.
基于高原环境的保障装备适应性技术研究 总被引:1,自引:1,他引:0
目的寻找和发现现役保障装备在高原保障过程中存在的问题,评估装备的高原工作性能,全面提升保障装备高原环境适应能力。方法依据高原环境特点,全面、准确定量掌握现役保障保障装备在高原环境下的实际性能,找出存在的突出问题,并在此基础上有针对性地开展高原环境保障装备适应性技术研究。结果从技术措施、调试工艺、各分系统间的匹配这三个方面提出提高保障装备高原环境适应性技术。结论通过适应性技术高原型保障装备可达到功能完备、性能可靠、适应高原环境现役主战装备的保障需求。 相似文献
999.
在用连续型超临界水氧化设备处理废水时,经常发现系统的净化出水pH值变小、排盐出水pH值变大。为了深入研究并揭示其机理,选择原碱性废水中和水、原酸性废水中和水、弱碱性废水、NaCl水溶液、纯自来水和纯NaOH水溶液6种典型水样进行定量试验。结果表明,连续型超临界水氧化系统存在净化出水和排盐出水pH值变化的现象,即使废水在进入系统前调整为中性(pH=7),反应后依然是净化出水pH7,排盐出水pH7。该现象很可能是由于在超临界状态下原水中无机酸根离子和金属阳离子的结晶盐离解生成了H~+、OH~-,随后各自缔合成酸性和碱性物质。缔合的酸性物质留在超临界水中,并随之从净化水出口排出,降低了出水的pH值;缔合的碱性物质混入盐结晶析出物中,随之在亚临界区溶解并经过排盐口流出,而重新溶解的金属氢氧化物增加了排水的pH值。另外,在超临界水氧化反应器复杂的氧化腐蚀环境下也生成了一定量的OH~-和酸缔合物,它们对改变出水pH值有一定作用。酸根离子极难从超临界水氧化系统中分离,因此对碱性废水要慎重中和,特别要慎重选择酸根离子,最好不要用盐酸中和,这是因为其带入的Cl~-会引起超临界系统内的氯腐和系统净化出水口的酸腐。研究表明,因为存在出水pH值的变化,对超临界水氧化系统出水的纯净程度必须予以重新考虑。 相似文献
1000.
针对化学协同生物除磷过程,研究了序批式生物膜反应器(SBBR)中FeSO_4对悬浮相活性污泥脱氢酶活性(DHA)、胞外聚合物(EPS)及系统处理效果的影响.结果表明,少量FeSO_4对DHA和EPS的分泌具有促进作用,但最佳投加量不一致,分别为0.10 mmol·L-1和0.20 mmol·L-1;大量的FeSO_4则会引发抑制.FeSO_4投加量少于0.30 mmol·L-1时会使污泥MLVSS、MLVSS/MLSS增加,超过0.30 mmol·L-1时则使MLVSS、MLVSS/MLSS下降,但MLSS和SVI随着FeSO_4投加量的增加分别持续增加和下降.FeSO_4对COD和TN的去除具有抑制作用,但并不显著,去除率分别在77%和72%左右;TP的去除效果明显改善,在投加量为0.30 mmol·L-1时效果最好.投加FeSO_4协同生物除磷时建议最佳投加量为0.30 mmol·L-1,此时污泥DHA被轻微抑制,但污泥浓度、EPS、TP去除率均已达到最大,出水水质满足一级A排放标准. 相似文献