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301.
序列间歇式活性污泥法处理毛纺厂废水的研究   总被引:4,自引:0,他引:4  
采用序列间歇式活性污泥法处理毛纺厂废水。试验结果表明,经4h曝气处理,进水COD为190~650mg/L时,出水COD始终低于100mg/L,去除率大多在80%~90%之间,色度去除率大多在50%以上,出水COD和色度均达到行业排放标准。还对较低COD浓度下序列间歇式活性污泥法的COD降解过程进行了研究,推导出一级反应动力学关系式Sr=So(1-10 ̄-k1t),并以试验数据进行了拟合,求解出动力学常数k1和So。  相似文献   
302.
徐东群  崔九思 《环境化学》1999,18(6):566-572
本文以活性炭纤维为吸附材料,建立了活性炭纤维吸附/二次热解吸 缩/毛细管气相色谱法测定空气中VOCS的方法,讨论了吸附剂的安全采样体积,湿度控制及分析方法的精密度,检出限和回收率。本法对苯,甲苯,四氯乙烯,对-二甲苯和苯乙类的最低可测浓度分别为0.13,0.02,0.12,0.05和0.05μg.m^-3,适用于低浓度VOCS样品的测定。  相似文献   
303.
Environmental Chemistry Letters - About one tenth of humans are impacted by water shortages around the globe. Water resilience is worsening under climate change because intensifying weather...  相似文献   
304.
Over the past decades, the plastic production has been dramatically increased. Indeed, a category of small plastic particles mainly with the shapes of fragments, fibers, or spheres, called microplastics (particles smaller than 5 mm) and nanoplastics (particles smaller than 1 μm) have attracted particular attention. Because of its wide distribution in the environment and potential adverse effects to animal and human, microplastic pollution has been reported as a serious environment problem receiving increased attention in recent years. As one of the commonly detected emerging contaminants in the environment, recent evidence indicates that the concentration of microplastics show an increasing trend, for the reason that up to 12.7 million metric tons of plastic litter is released into aquatic environment from land-based sources each year. Furthermore, microplastic exposure levels of model organisms in laboratory studies are usually several orders of magnitude higher than those found in environment, and the microplastics exposure conditions are also different with those observed in the environment. Additionally, the detection of microplastics in feces indicates that they can be excreted out of the bodies of animal and human. Hence, great uncertainties might exist in microplastics exposure and health risk assessment based on current studies, which might be exaggerated. Policies reduce microplastic emission sources and hence minimize their environmental risks are determined. To promote the above policies, we must first overcome the technical obstacles of detecting microplastics in various samples.  相似文献   
305.
● NH3 in biogas had a slight inhibitory effect on dry reforming. ● Coexistence of H2S and NH3 led to faster decline of biogas conversion. ● Regeneration was effective for catalysts deactivated under synergetic effect. Biogas is a renewable biomass energy source mainly composed of CH4 and CO2. Dry reforming is a promising technology for the high-value utilization of biogas. Some impurity gases in biogas can not be completely removed after pretreatment, which may affect the performance of dry reforming. In this study, the influence of typical impurities H2S and NH3 on dry reforming was studied using Ni/MgO catalyst. The results showed that low concentration of H2S in biogas could cause serious deactivation of catalyst. Characterization results including EDS, XPS and TOF-SIMS confirmed the adsorption of sulfur on the catalyst surface, which was the cause of catalyst poisoning. We used air calcination method to regenerate the sulfur-poisoned catalysts and found that the regeneration temperature higher than 500 °C could help catalyst recover the original activity. NH3 in the concentration range of 50–10000 ppm showed a slight inhibitory effect on biogas dry reforming. The decline rate of biogas conversion efficiency increased with the increase of NH3 concentration. This was related to the reduction of oxygen activity on catalyst surface caused by NH3. The synergetic effect of H2S and NH3 in biogas was investigated. The results showed that biogas conversion decreased faster under the coexistence of H2S and NH3 than under the effect of H2S alone, so as the surface oxygen activity of catalyst. Air calcination regeneration could also recover the activity of the deactivated catalyst under the synergetic effect of H2S and NH3.  相似文献   
306.
垃圾卫生填埋过程中逸散的甲烷与渗滤液处理过程中反硝化段不够彻底产生的硝酸盐对周围环境具有严重的威胁,反硝化厌氧甲烷氧化技术可实现甲烷与硝酸盐的同步去除,极具应用前景.本研究通过模拟垃圾填埋过程,以矿化垃圾作为垃圾填埋的覆土层与反硝化厌氧甲烷氧化微生物的接种源,建立了矿化垃圾床系统.结果表明,反应系统在140d的运行期间...  相似文献   
307.
人们早已认识到远距离强地震可能引起覆盖层深厚的沿海或盆地城市发生严重的地震灾害。以某杭州湾跨海通道为背景,建立跨海湾海床二维场地的精细化有限元模型,依据区域地震活动性,选取远场大地震井下记录作为海床基岩的输入地震动,考虑地震动特性、海床微地形特征、沉积土的空间异质性和非线性滞回特性,研究了远场强震引起的海床场地非线性地震效应特征。海床场地效应与海床微地形特征、沉积土的空间异质性和输入地震动特性密切相关。凹陷地表边缘、基岩隆起和凹陷部位及海床土软弱区域的场地放大效应显著,呈现出低频聚焦现象,且竖向地震反应更为明显。仅考虑水平向地震作用将显著低估海床非线性场地效应程度,水平向和竖向地震同时作用引起的竖向地震效应不应忽视。  相似文献   
308.
Enrichment of volatile organic compounds(VOC) and semi-volatility organic compounds(SVOC) in surface microlayer(SM) of three ddnking water sources were studied. The enrichment factor(EFs) were 0.67 to 13.37 and 0.16 to 136, respectively. The results showed some VOC and most SVOC could enrich in SM. Some EFs of SVOC was quite high. Suspension and temperature could affect EFs of SVOC, slim wind and water movement do not destroy enrichment of organic in SM.  相似文献   
309.
三氯乙烯降解菌的分离鉴定及其降解特性   总被引:2,自引:0,他引:2  
三氯乙烯是一种具有"三致"效应的有机氯代烃化合物,作为一种重要的化工原料在工业上广泛应用,同时也造成了大量的三氯乙烯进入自然环境,引起了严重的环境污染.为获得更为丰富的三氯乙烯降解微生物资源,利用水-硅油双相系统从实验室高浓度三氯乙烯胁迫底泥中,分离筛选得到两株三氯乙烯降解菌WF1、FT10.在三氯乙烯初始质量浓度为5 mg·L-1的条件下,培养72 h,菌、WF1、FT10对三氯乙烯的降解率分别为53.36%、48.06%;在500 mg·L-1乙酸钠作为共代谢基质的情况下,降解率分别为55.95%、55.62%,降解速率明显提高.根据形态学观察、16项生理生化实验和16S rRNA序列分析结果,将菌株WT1归为Achromobacter xylosoxidans,将FT10归为Sporosarcina aquimarina.对菌株培养条件进行优化,经Slide Write统计软件拟合,菌株WT1和FT10在牛肉膏蛋白胨液体培养基上的最适生长温度分别为33.7℃和35.4℃,最适生长pH分别为7.6和7.9.  相似文献   
310.
Environmental Science and Pollution Research - The influence of the combined application of chemical fertilizer with green manure on the stabilization of organic carbon (C) was explored in the...  相似文献   
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