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221.
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• Washed MSWI fly ash was used as partial cement or sand substitute. • Sand replacing is beneficial for strength, while cement replacement reduces strength. • Cementing efficiency factor and mortar pore structure explain the strength results. • Health risk assessment was conducted for MSWI fly ash blended cement mortar. • CR and HI contributed by different exposures and heavy metals were analyzed. The strength of cement substituted mortar decreases with the increase in fly ash amount, whereas the strength increases when the fly ash is blended as sand substitute. A mortar with highest strength (compressive strength= 30.2 Mpa; flexural strength= 7.0 Mpa) was obtained when the sand replacement ratio was 0.75%. The k value (cementing efficiency) of fly ash varied between 0.36 and 0.15 for the fly ash fraction in binder between 5% and 25%. The k values of fly ash used for sand replacement were all significantly above that used for cement substitution. The macropores assigned to the gaps between particles decreased when the fly ash was used as sand replacement, providing an explanation for the strength enhancement. The waste-extraction procedure (toxicity-sulphuric acid and nitric acid method (HJ/T 299-2007)) was used to evaluate metal leaching, indicating the reuse possibility of fly ash blended mortar. For the mortar with the mass ratio of fly ash to binder of 0.5%, the carcinogenic risks (CR) and non-carcinogenic hazard quotient (HQ) in sensitive scenario for blended mortar utilization were 9.66 × 10-7 and 0.06, respectively; these results were both lower than the threshold values, showing an acceptable health risk. The CR (9.89 × 10-5) and HQ (3.89) of the non-sensitive scenario for fly ash treatment exceeded the acceptable threshold values, indicating health risks to onsite workers. The main contributor to the carcinogenic and non-carcinogenic risk is Cr and Cd, respectively. The CR and HQ from inhalation was the main route of heavy metal exposure.  相似文献   
223.
天津地区生态沟渠不同植物配置对氮磷去除效果研究   总被引:2,自引:0,他引:2  
为筛选适宜天津地区的生态沟渠及提高其净化效果,设置了2组沟渠植物配置试验,研究不同植物配置模式下沟渠氮磷去除效果。结果表明:在沟底种植不同水生蔬菜中,空心菜(Ipomoea aquatica)对氮磷的净化作用较好,总氮、总磷的去除率分别为49.00%、56.05%。在沟壁种植不同护坡植物中,水葱(Scirpus validus)对氨氮、总磷的拦截较好,去除率分别为40.74%、45.24%,显著高于油莎草(Cyperus esculentus L.)和梭鱼草(Pontederia cordata)。综合比较2组植物配置模式的沟渠,以空心菜(沟底)+水葱(沟壁)植物配置的生态沟渠氮磷去除效果最佳,总氮、硝态氮、氨氮和总磷的去除率分别为49.00%、59.04%、43.91%、56.05%。该植物搭配生态沟渠是适宜天津地区治理氮磷污染的一种可行模式,研究成果将为治理天津地区面源污染提供技术指导。  相似文献   
224.
225.
为解决页岩气开采过程中产生的油基岩屑的资源化、无害化处理问题,采用逆流萃取+臭氧氧化联合的方法对其进行处理,并分别对逆流萃取、臭氧氧化环节的工艺参数进行了优化。结果表明,在最优条件下,经过处理后的油基岩屑的含油率可由原始的39.42%降低到0.18%,达到了GB 4284-2018中规定的处置要求,处理过程中回收的油分可重新用于配制钻井液。通过对油基岩屑固相的表征,发现其具备臭氧催化氧化催化剂的明显特征,是一种天然的臭氧催化氧化催化剂,并从反应动力学角度对臭氧氧化环节的反应特性进行了定量分析。结果表明,其满足一级反应动力学特征,反应活化能为6.194 kJ·mol~(-1)。以逆流萃取+臭氧氧化为核心的联合工艺为油基岩屑的资源化、无害化处理提供了参考。  相似文献   
226.
砒砂岩区不同留茬高度及坡向下沙棘根系分形特征   总被引:1,自引:0,他引:1  
为提高内蒙古砒砂岩区沙棘(Hippophae rhamnoides)人工林根系的生长能力,对东(E)、南(S)、西(W)、北(N)不同坡向沙棘植株进行了距地表0、10、15、20 cm(即a、b、c、d)留茬高度处理,而根系分形特征是植物根系构型应对环境异质性的表型可塑性,为反映沙棘根系对不同坡向不同留茬生长环境的适应...  相似文献   
227.
气态甲醛对大鼠肺组织影响的病理学观察   总被引:1,自引:1,他引:0  
为了研究大鼠吸入甲醛后其肺组织病理结构的改变并探讨其损伤机理,以雌性Wisar大鼠为实验材料,采用动式吸入方式染毒15d(暴露组甲醛浓度32~37mg·m-3,每日暴露4h)后,取肺组织进行光镜及透射电镜观察.光镜观察结果表明,甲醛暴露后,大鼠肺组织主要表现为间质性肺炎和肺泡性肺炎的病理学特点,肺泡壁毛细血管扩张、充血、出血严重,个别区域可见大量炎细胞浸润,肺内细支气管和肺泡腔内见大量血细胞,部分肺泡腔内有透明膜形成,内含脱落的肺泡上皮细胞.电镜观察结果表明,甲醛暴露后,大鼠肺泡上皮细胞损伤严重,线粒体嵴断裂、肿胀、空泡化,部分肺泡上皮细胞胞膜溶解,细胞器丢失,细胞坏死、脱落.推测甲醛吸入可致大鼠肺病理损伤,损伤机理可能与自由基损害和醛糖还原酶(AR)表达变化有关.  相似文献   
228.
抗生素的大量使用导致其通过各种途径进入到污水处理厂、地表水甚至饮用水源水中.在污水处理厂二级出水排放之前以及自来水的生产和供应过程中,都必须进行氯化消毒处理以杀灭病原微生物.在此过程中,抗生素一方面可能被氯化降解,另一方面也可能转化成毒性更高的降解产物.因此,了解抗生素在氯化消毒过程中的降解行为对于明确其生态和健康风险...  相似文献   
229.
Wang  Jiaqing  Lu  Pei  Su  Wei  Xing  Yi  Li  Rui  Li  Yuran  Zhu  Tingyu  Yue  Huifang  Cui  Yongkang 《Environmental science and pollution research international》2019,26(20):20248-20263

Currently, activated coke is widely used in the removal of multiple pollutants from industrial flue gas. In this paper, a series of novel FexLayOz/AC catalysts was prepared by the incipient wetness impregnation for NH3-SCR denitrification reaction. The introduction of Fe-La bimetal oxides significantly improved the denitrification performance of activated coke at mid-high temperature, and 4% Fe0.3La0.7O1.5/AC exhibited a superior NOx conversion efficiency of 90.1% at 400 °C. The catalysts were further characterized by BET, SEM, XRD, Raman, EPR, XPS, FTIR, NH3-TPD, H2-TPR, et al., whose results showed that the perovskite-type oxide of LaFeO3 and oxygen vacancies were produced on the catalysts’ surfaces during roasting. Fe-La doping enhanced the amount of acid sites (mainly Lewis and other stronger acid sites) and the content of multifarious oxygen species, which were beneficial for NOx removal at mid-high temperature. Moreover, it was investigated that the effect of released CO from activated coke at mid-high temperature on the NOx removal through the lifetime test, in which it was found that a large amount of CO produced by pyrolysis of activated coke could promote the NOx removal, and long-term escaping of CO on the activated coke carrier did not have a significant negative impact on catalytic performance. The results of the TG-IR test showed that volatile matter is released from the activated coke while TG results showed that the weight loss rate of 4% Fe0.3La0.7O1.5/AC only was 0.0015~0.007%/min at 300–400 °C. Hence, 4% Fe0.3La0.7O1.5/AC had excellent thermal stability and denitrification performance to be continuously used at mid-high temperature. Finally, the mechanisms were proposed on the basis of experiments and characterization results.

  相似文献   
230.
Chen  Hui  Mao  Wei  Shen  Yiqiu  Feng  Weiwei  Mao  Guanghua  Zhao  Ting  Yang  Lanqin  Yang  Liuqing  Meng  Chunfeng  Li  Yong  Wu  Xiangyang 《Environmental science and pollution research international》2019,26(24):24609-24619

Phthalates (PAEs) in drinking water sources such as the Yangtze River in developing countries had aroused widespread concern. Here, the water, suspended particulate matter (SPM), and sediment samples were collected from 15 sites in wet and dry seasons in Zhenjiang, for the determination of six PAEs (DMP, DEP, DIBP, DBP, DEHP, and DOP) using the solid-phase extraction (SPE) or ultrasonic extraction coupled with gas chromatography-mass spectrometry (GC-MS). The total concentrations of six PAEs (Σ6PAEs) spanned a range of 2.65–39.31 μg L?1 in water, 1.97–34.10 μg g?1 in SPM, and 0.93–34.70 μg g?1 in sediment. The partition coefficients (Kd1) of PAEs in water and SPM phase ranged from 0.004 to 3.36 L g?1 in the wet season and from 0.12 to 2.84 L g?1 in the dry season. Kd2 of PAEs in water and sediment phase was 0.001–9.75 L g?1 in the wet season and 0.006–8.05 L g?1 in the dry season. The dominant PAEs were DIBP, DBP, and DEHP in water and SPM, DIBP, DEHP, and DOP in sediment. The concentration of DBP in water exceeded the China Surface Water Standard. The discharge of domestic sewage and industrial wastewater might be the main potential sources of PAEs. The risk quotient (RQ) method used for the risk assessment revealed that DBP (0.01 < RQ < 1) posed a medium risk, while DIBP and DEHP (RQ > 1) posed a high environmental risk in water, DIBP (RQ > 1) also showed a high risk in sediment.

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