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891.
Steven Sai Hang Ho Ho Sai Simon Ip Kin Fai Ho Louisa Pan Ting Ng W.T. Dai Junji Cao 《Journal of the Air & Waste Management Association (1995)》2014,64(8):903-916
A comprehensive assessment of indoor carbonyl compounds for the academic staff, workers, and students was conducted on a university campus in Xiamen, China. A total of 15 representative environment categories, including 12 indoor workplaces and three residential units, were selected. The potential indoor pollution sources were identified based on the variability in the molar compositions and correlation analyses for the target carbonyls. Furnishing materials, cooking emissions, and electronic equipment, such as photocopiers, can generate various carbonyls in the workplace. Comparison studies were conducted in the clerical offices, demonstrating that off-gases from wooden furniture and lacquer coatings, environmental tobacco smoke (ETS), and the use of cleaning reagents elevated the indoor carbonyl levels. The measured concentrations of formaldehyde and acetaldehyde in most locations surpassed the exposure limit levels. The lifetime cancer hazard risk (R) associated with formaldehyde was above the concern risk level (1 × 10?6) in all of the workplaces. The results indicate that formaldehyde exposure is a valid occupational health and safety concern. Wooden furniture and refurbishing materials can pose serious health threats to occupants. The information in this study could act as a basis for future indoor air quality monitoring in Mainland China.
Implications:A university campus represents a microscale city environment consisting of all the working, living, and commercial needs of staff and students. The scope of this investigation covers 21 hazardous carbonyl species based on samples collected from 15 categories of workplaces and residential building in a university campus in southern China. Findings of the study provide a comprehensive assessment of indoor air quality with regards to workers’ health and safety. No similar study has been carried out in China. 相似文献
892.
复合改性海泡石同步处理废水中的氮磷 总被引:2,自引:0,他引:2
采用盐热和稀土掺杂制备复合改性海泡石,研究了复合改性海泡石对废水中N、P的吸附特征和去除效果。结果表明,与海泡石原矿粉比较,复合改性海泡石的脱氮除磷能力分别提高49.71%和90.14%;复合改性海泡石对N、P的吸附可以用Langmuir吸附模型描述,获得的最大吸附量分别为1.165和1.121 mg/g;修正的Elovich模型能较好地描述复合改性海泡石吸附N、P的动力学过程;用NaOH溶液可以再生吸附材料,获得较好的脱氮除磷效果,再生次数以2次为宜;用复合改性海泡石处理污水处理站的二级生化出水,最终出水的pH、N和P含量均达到《城镇污水处理厂污染物排放标准》的要求。 相似文献
893.
利用野生型酿酒酵母菌株及七基因缺失突变型酵母菌株,研究了不同基因型酵母株在不同的活性状态下对重金属Co2+和Cd2+的富集。结果显示,在磷酸盐缓冲液(PBS)中,酵母处于生长基本停止状态,两种酵母菌株都对Co2+和Cd2+表现出比较强的被动吸附能力,但野生型酵母的富集效率优于七基因缺失突变酵母株。说明酵母在PBS中对重金属的富集主要是依靠被动吸附机制,且与细胞的表面结构有关。在限制性培养基中,酵母的生长状态较好,野生型酵母对Co2+表现出了较好的主动富集现象,并且在暴露96 h时达到富集高峰,而七基因缺失突变酵母株中的含量随时间推移变化不大。在对Cd2+的富集过程中,七基因缺失突变型酵母表现出较野生型酵母更快速富集的效果。研究结果为利用酵母富集环境中重金属的实际应用提供了新的参考数据,提示对于不同环境下的不同毒性的重金属离子,可以采取不同的富集方法,针对性地设计应用方案。 相似文献
894.
以上海老港填埋场填埋垃圾为填料构建陈垃圾反应器,通过调节反应器的水力负荷、回流比以及所处的环境温度,考察了反应器对成熟垃圾渗滤液中氨氮(NH3-N)、总氮(TN)、BOD5和COD处理效果的影响,同时采用PCR-DGGE方法分析了不同条件下微生物群落结构的变化。结果表明,在15℃温度下,水力负荷由8.5 L/(m3·d)升高至17 L/(m3·d)时,反应器对污染物BOD5和NH3-N的去除效率没有改变,而对COD和TN的去除效率有明显提升;当增加回流时,反应器对污染物的去除效果没有显著差异,未能提高脱氮效率;当环境温度从15℃提高到30℃时,NH3-N和BOD5接近完全去除,COD的去除率从73.1%提高到82.4%,TN的去除率从27.3%提高到43.7%,明显提高了反应器效能。群落结构分析表明,在本研究条件下增加回流比对反应器中细菌群落结构影响不大;提高水力负荷使得上部群落结构多样性提高;而温度提高时,反应器上、下部细菌的种类数量都明显增加,多样性提高。表明在陈垃圾反应器运行时,环境温度对其效能和群落结构的影响较大。 相似文献
895.
以聚乙烯醇为包埋载体,饱和硼酸为交联剂,制作了玉米芯为内聚缓释碳源的固定化硫酸盐还原菌污泥颗粒。通过厌氧批实验研究了在模拟酸性矿山废水(AMD)条件下玉米芯含量、初始SO2-4和Mn2+负荷以及p H对固定化颗粒代谢特性的影响,初步分析了固定化颗粒处理AMD的机理及可行性。实验结果表明,玉米芯在微生物作用下快速水解并产生有机物累积后,固定化颗粒才能迅速还原SO2-4,且玉米芯含量≤5%时硫酸盐还原率与玉米芯含量成正相关,玉米芯的水解会略微降低体系的p H;初始SO2-4浓度通过改变体系中COD/SO2-4和颗粒内外的浓度差影响固定化颗粒的代谢过程,而对玉米芯水解的影响不显著。初始p H为2~6和Mn2+浓度≤55 mg/L时对固定化颗粒活性抑制作用不明显,初始p H越低越利于玉米芯的水解和颗粒形成良好的孔隙结构;颗粒对Mn2+的去除机理是一种不依赖微生物活性的快速化学吸附作用,可用伪二级动力学模型描述吸附过程(R2=0.995)。 相似文献
896.
Deriving sorption indices for the prediction of potential phosphorus loss from calcareous soils 总被引:1,自引:0,他引:1
Qiaoyun Xue Lingli Lu Yuanqing Zhou Lingyu Qi Peibin Dai Xiaoxia Liu Chengliang Sun Xianyong Lin 《Environmental science and pollution research international》2014,21(2):1564-1571
The aim of this study was to develop techniques to evaluate soil phosphorus (P) sorption capacity (PSC) and determine critical soil P levels to predict P loss potential for calcareous soils. Seventy-five soils mostly from Northern China were analyzed for soil P using four extraction methods (water, Pw; carbonate, POls; ammonium oxalate, Pox; and Mehlich 3, PM3) as well as PSC derived from single-point (PSC150) and multipoint sorption (S t) isotherms. Strong correlation was found between PSC150 and S t (r 2=0.89, p<0.001). The sum of αCaM3 and βMgM3 as an index of PSC (PSC(CaM3 + MgM3)) was most closely related to the maximum amount of P sorbed (S max) as given by the sum of S t and soil initial P setting α=0.039 and β=0.462 (r 2=0.80, p<0.001). The degree of P saturation (DPS) was thereafter calculated from PSC(CaM3 + MgM3) (DPS(CaM3 + MgM3)), to which Olsen P (POls) was significantly correlated (r 2=0.82, p<0.001). In a split-line regression from Pw against DPS(CaM3 + MgM3) (r 2=0.87, p<0.05), a change point was identified at 28.1% DPS(CaM3 + MgM3), which was equivalent to 49.2 mg kg?1 POls and corresponded to a Pw concentration of 8.8 mg kg?1. After the change point, a sharp increase in Pw was observed. Our results reveal a new approach to approximating DPS from CaM3 and MgM3 for calcareous soils without the need to generate a S max. We conclude that in the absence of an environmental soil test criteria for P, the DPS(CaM3 + MgM3) and POls could be used to predict P loss potential from calcareous soils. 相似文献
897.
Baifei Huang Junliang Xin Hongwen Dai Aiqun Liu Wenjing Zhou Kebing Liao 《Environmental science and pollution research international》2014,21(19):11565-11571
A pot experiment was conducted to investigate the translocation of cadmium (Cd) and lead (Pb) and assess the safety of edible parts in two cultivars of water spinach (Ipomoea aquatica Forsk.) contrasting in shoot Cd and Pb concentrations. A low-Cd-Pb cultivar (QLQ) and a high-Cd-Pb cultivar (T308) were grown in five soils with different concentrations of Cd and Pb. The results showed that QLQ had lower Cd and Pb concentrations in stems and leaves and higher root Cd concentration than T308 did. Root Pb concentration of T308 dramatically increased with increasing soil Pb concentration and was higher than that of QLQ in the highest Pb treatment. The root-to-stem Cd translocation ability in T308 was 2.3–3.0-fold higher than that in QLQ. Nevertheless, there was no significant difference in root-to-stem Pb translocation between QLQ and T308. The bioconcentration factors (BCFs) for Cd and Pb in the two cultivars remained stable in different Cd or Pb treatments, which were attributable to the homeostatic control mechanisms of Cd and Pb in water spinach. 相似文献
898.
899.
采用酸析—微电解—Fenton试剂氧化联合工艺预处理苯达松废水。考察了酸析pH、铸铁粉加入量、微电解时间、双氧水加入量、Fenton试剂氧化时间等因素对废水处理效果的影响。实验结果表明:最佳工艺条件为酸析pH 3.0,铸铁粉加入量1.0 g/L,微电解时间2 h,Fenton试剂氧化时间4 h,双氧水加入量25 mL/L;在最佳工艺条件下处理初始COD为22 500 mg/L、BOD5/COD为0.08、色度为2 500倍的苯达松废水,总COD去除率为96.2%,出水COD为858 mg/L,出水色度为150倍,BOD5/COD为0.38;采用微电解—Fenton试剂氧化联合工艺预处理酸析后的苯达松废水,处理效果远高于单独微电解和单独Fenton试剂氧化工艺。 相似文献
900.
采用热解—氨浸工艺处理含铜废催化剂(w(Cu)为23.6%),优化了工艺条件,并通过蒸氨还原法制备出Cu2O产品。实验结果表明:热解工段中,控制管式热解炉的空气流量为3.0 m3/min,在升温速率20 ℃/min、热解终温600 ℃、终温保持时间90 min的优化条件下,含铜废催化剂中的有机物热解完全;氨浸工段中,以NH4Cl-NH3-H2O溶液为氨浸液,控制氨浸温度为40 ℃,在烧成料研磨时间90 min(粒径29.43 μm)、氨浸液总氨浓度4 mol/L、氨浸时间80 min的优化条件下,铜浸出率达到98%;经蒸氨还原法制得的Cu2O产品的质量符合HG/T 2961—2010《工业氧化亚铜》中的一等品标准,产率为24%。 相似文献