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21.
黑龙江省作为中国东北方的农业大省,农村所占比例较大。随着农村经济的快速增长,所产生的垃圾也逐年增多,加之基础设施建设薄弱,缺乏成熟的垃圾处理技术,农村的垃圾问题已经成为我省"农村环境连片整治"必须要解决的一个重点问题。 相似文献
22.
化石燃料原油和原煤的燃烧、含钒矿石的开采和冶炼是大气中重金属钒的主要来源。文章利用重金属钒的排放系数分析了中国1978-2010年人为过程释放到大气中重金属钒的总量和行业重金属钒的排放,预测了2020年和2030年中国大气中重金属钒的排放量。结果表明,自1978年以来,中国钒的排放量增加了4倍,中国2010年人类活动向大气排放的重金属钒总量达3.18万吨,约占世界总量的12%。原油燃烧释放到大气中的钒约占总量的85%,煤炭燃烧的排放量占10.5%,其中工业耗油向大气中释放重金属钒的比例从1980的71%下降到2008年的42%,总量从3 721 t增加至9 361 t;交通运输行业从10%上升到36%,总量从547 t增加至7 967 t;其它行业(农林牧渔水利业、批发零售业和住宿餐饮业、生活消费)基本维持在20%左右,总量从986 t增加至5 052 t。因此,应加强大气中钒的监测和管理,预防大气钒污染事件的发生。 相似文献
23.
苯酚、菲在BS-12/DTAB复配修饰膨润土上吸附的差异 总被引:2,自引:0,他引:2
为了探究复配修饰膨润土吸附疏水性不同的污染物的差异,采用阳离子型表面修饰剂十二烷基三甲基溴化铵(DTAB)对两性表面修饰剂十二烷基二甲基甜菜碱(BS-12)修饰膨润土进行复配修饰,采用批处理法研究复配修饰膨润土总修饰比例对苯酚和菲的等温吸附影响,并对比不同温度、pH值和离子强度条件下供试土样对苯酚和菲吸附量、热力学参数的差异.结果表明:随着总修饰比例的增大,复配修饰膨润土对苯酚及菲的吸附能力逐渐增强,0~50%CEC修饰比例下,菲的吸附率大于苯酚的吸附率,当修饰比例超出50%CEC后,苯酚的吸附率大于菲的吸附率,总修饰比例超出150%CEC后,膨润土对苯酚的吸附率变化趋于平缓,而对菲的吸附率开始呈下降趋势;随着土样总修饰比例的增大,温度对苯酚及菲吸附量的抑制效果降低;在KNO_3浓度为0.001~0.1 mol·L~(-1)时,苯酚及菲的吸附量均随着KNO_3浓度的增大而增大;随着pH值的升高,苯酚的吸附量逐渐增大,在pH=7处达到最大,而菲的吸附量则始终呈降低趋势.热力学参数显示,随着总修饰比例的增大,复配修饰土样对苯酚和菲的吸附自发性增强,混乱度增大,当总修饰比例超出150%CEC后,自发性减弱,混乱度下降. 相似文献
24.
以68台燃油锅炉(≤10~MW)NOx排放实测数据为基础,通过统计分析方法,研究了NOx的排放特征;通过对比分析,探讨了我国燃油锅炉NOx排放控制与管理现状,讨论了进一步加强我国燃油锅炉NOx排放管理控制的可能性与可行性,并提出了相应的管理控制建议。结果表明,NOx平均排放浓度为318.2mg/m^3,基于燃料消耗量的平均排放因子为4.4kg/t,基于燃料发热量的平均排放因子为102.8ng/J,基于燃料氮含量的平均排放因子为2.1mg/mg;建议采取分阶段控制的方式,逐步提高NOx排放限制,从而实现控源减排目标。 相似文献
25.
26.
Wenying Chen Yves-Michel Le Nindre Ruina Xu Delphine Allier Fei Teng Kim Domptail Xing Xiang Laura Guillon Jiyong Chen Lingyan Huang Rongshu Zeng 《International Journal of Greenhouse Gas Control》2010,4(2):341-350
A method, based on spatial analysis of the different criteria to be taken into consideration for building scenarios of CO2 capture and storage (CCS), has been developed and applied to real case studies in the Hebei province. Totally 88 point sources (42 from power sector, 9 from iron and steel, 18 from cement, 16 from ammonia, and 3 from oil refinery) are estimated and their total emission amounts to 231.7 MtCO2/year with power, iron and steel, cement, ammonia and oil refinery sharing 59.13%, 25.03%, 11.44%, 3.5%, and 0.91%, respectively. Storage opportunities can be found in Hebei province, characterised by a strong tectonic subsidence during the Tertiary, with several kilometres of accumulated clastic sediments. Carbon storage potential for 25 hydrocarbon fields selected from the Huabei complex is estimated as 215 MtCO2 with optimistic assumption that all recovered hydrocarbon could be replaced by an equivalent volume of CO2 at reservoir conditions. Storage potential for aquifers in the Miocene Guantao formation is estimated as 747 MtCO2 if closed aquifer assumed or 371 MtCO2 if open aquifer and single highly permeable horizon assumed. Due to poor knowledge on deep hydrogeology and to pressure increase in aquifer, injecting very high rates requested by the major CO2 sources (>10 MtCO2/year) is the main challenge, therefore piezometry and discharge must be carefully controlled. A source sink matching model using ArcGIS software is designed to find the least-cost pathway and to estimate transport route and cost accounting for the additional costs of pipeline construction due to landform and land use. Source sink matching results show that only 15–25% of the emissions estimated for the 88 sources can be sequestrated into the hydrocarbon fields and the aquifers if assuming sinks should be able to accommodate at least 15 years of the emissions of a given source. 相似文献
27.
工业废水中多金属离子的吸附净化 总被引:3,自引:1,他引:2
以含有Si、Al、Ca、C元素的矿物材料作为基质,经特定条件处理后造粒成型加工成轻质多孔Si-Al-Ca-C结构的吸附材料。研究了该吸附材料对工业废水中多种金属离子的吸附性能,探讨了影响吸附性能的因素。研究结果表明,在一定条件下,Si-Al-Ca-C吸附材料对工业废水中Al3+、Ca2+、Mn2+、Cu2+、Fe3+、Mg2+、As3+和Zn2+的净化率分别高达99.34%、99.82%、98.26%、98.16%、97.76%、97.01%、100%和89.09%。金属离子残留浓度分别为0.152、0.07、0.012、0.02、0.119、0.311、0和0.259 mg/L,均低于国家污水综合排放标准(GB8978-1996)一级标准。 相似文献
28.
In order to measure groundwater age and design nuclear waste disposal sites, it is important to understand the sorption behavior of tritium on soils. In this study, batch tests were carried out using four soils from China: silty clays from An County and Jiangyou County in Sichuan Province, both of which could be considered candidate sites for Very Low Level Waste disposal; silty sand from Beijing; and loess from Yuci County in Shanxi Province, a typical Chinese loess region. The experimental results indicated that in these soil media, the distribution coefficient of tritium is slightly influenced by adsorption time, water/solid ratio, initial tritium specific activity, pH, and the content of humic and fulvic acids. The average distribution coefficient from all of these influencing factors was about 0.1-0.2 mL/g for the four types of soil samples. This relatively modest sorption of tritium in soils needs to be considered in fate and transport studies of tritium in the environment. 相似文献
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30.
Yanguo Teng Dan Feng Liuting Song Jinsheng Wang Jian Li 《Environmental monitoring and assessment》2013,185(11):9559-9569
In order to investigate the distribution of the total petroleum hydrocarbons (TPH) in groundwater and soil, a total of 71 groundwater samples (26 unconfined groundwater samples, 37 confined groundwater samples, and 8 deeper confined groundwater samples) and 80 soil samples were collected in the Songyuan oilfield, Northeast China, and the vertical variation and spatial variability of TPH in groundwater and soil were assessed. For the groundwater from the unconfined aquifer, petroleum hydrocarbons were not detected in three samples, and for the other 23 samples, concentrations were in the range 0.01–1.74 mg/l. In the groundwater from the confined aquifer, petroleum hydrocarbons were not detected in two samples, and in the other 35 samples, the concentrations were 0.04–0.82 mg/l. The TPH concentration in unconfined aquifer may be influenced by polluted surface water and polluted soil; for confined aquifer, the injection wells leakage and left open hole wells may be mainly responsible for the pollution. For soils, the concentrations of TPH varied with sampling depth and were 0–15 cm (average concentration, 0.63 mg/g), >40–55 cm (average concentration, 0.36 mg/g), >100–115 cm (average concentration, 0.29 mg/g), and >500–515 cm (average concentration, 0.26 mg/g). The results showed that oil spillage and losses were possibly the main sources of TPH in soil. The consequences concluded here suggested that counter measures such as remediation and long-term monitoring should be commenced in the near future, and effective measures should be taken to assure that the oilfields area would not be a threat to human health. 相似文献