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991.
海拔梯度上的植物生长与生理生态特性   总被引:8,自引:0,他引:8  
环境是植物生存和发展的条件,在各种不同的生境中聚生着特定的植物种类.全球气候变化迅速而显著地改变着高海拔地区的生态环境,这必将导致山地植物生理生态适应性、分布界限等发生变化,这些变化反过来又会对气候变化造成深远影响.因此,研究山地植物的生理生态特性,揭示其对全球气候变化的响应和适应性,具有重要的现实与科学意义.海拔梯度由于包含了温度、湿度、光照等诸多环境因子的剧烈变化而成为了研究植物对全球气候变化响应的理想区域.随着海拔升高,气温下降、大气压及CO2分压降低、光强增加等,植物的生态和生理特征将产生巨大的变化,可能影响到植物种类在海拔梯度上的分布、植物群落的结构组成.一些亟待回答的问题包括:全球气候变化将如何影响高山植物的生长环境?环境变化如何影响植物生理生态适应性?植物群落的分布、结构和组成将发生哪些变化?这些变化又将怎么样影响气候进一步变化?众多的研究报导了树木的生理生态特征、生长速率和生产力等对海拔的响应.本文在总结前人研究的基础上,系统地综述了海拔梯度上温度、水分、光照、土壤等环境因子的差异对高山植物的生长及生理生态特性的影响,以及植被分布的变化,旨在阐明植物对全球气候变化的行为与生理生态响应,以期为该领域的深入研究提供参考.  相似文献   
992.
Poor biodegradability and insufficient carbon source are discovered from influent. Influent indices presented positively normal distribution or skewed distribution. Average energy consumption of WWTPs in Taihu Basin was as high as 0.458 kWh/m3. Energy consumption increases with the increase in influent volume and COD reduction. The total energy consumption decreases with the NH3-N reduction. The water quality and energy consumption of wastewater treatment plants (WWTPs) in Taihu Basin were evaluated on the basis of the operation data from 204 municipal WWTPs in the basin by using various statistical methods. The influent ammonia nitrogen (NH3-N) and total nitrogen (TN) of WWTPs in Taihu Basin showed normal distribution, whereas chemical oxygen demand (COD), biochemical oxygen demand (BOD5), suspended solid (SS), and total phosphorus (TP) showed positively skewed distribution. The influent BOD5/COD was 0.4%–0.6%, only 39.2% SS/BOD5 exceeded the standard by 36.3%, the average BOD5/TN was 3.82, and the probability of influent BOD5/TP>20 was 82.8%. The average energy consumption of WWTPs in Taihu Basin in 2017 was 0.458 kWh/m3. The specific energy consumption of WWTPs with a daily treatment capacity of more than 5 × 104 m3 in Taihu Basin was stable at 0.33 kWh/m3. A power function relationship was observed between the reduction in COD and NH3-N and the specific energy consumption of pollutant reduction, and the higher the pollutant reduction is, the lower the specific energy consumption of pollutant reduction presents. In addition, a linear relationship existed between the energy consumption of WWTPs and the specific energy consumption of influent volume and pollutant reduction. Therefore, upgrading and operation with less energy consumption of WWTPs is imperative and the suggestions for Taihu WWTPs based on stringent discharge standard are proposed in detail.  相似文献   
993.
福建东山湾养殖贝类重金属污染状况及健康风险评价   总被引:1,自引:0,他引:1  
为了解东山湾海水养殖贝类重金属污染状况及健康风险水平,2016年11月采集了华贵栉孔扇贝(Chlamys nobills)、菲律宾蛤仔(Ruditapes philippinarum)、鲍(Haliotis sp.)、巴非蛤(Paphia sp.)、牡蛎(Saccostrea sp.)和翡翠贻贝(Perna viridis)等6种常见贝类,对其污染指数、膳食暴露量和健康风险等进行评价。结果表明,东山湾贝类体内Cu、Zn、Pb、Cd、Cr、As和Hg含量(均值)分别为9.69、0.19、43.5、0.65、0.21、0.010和1.69μg·g~(-1),与第一类海洋生物质量标准限值相比,Cu、Pb、Zn、Cd、Cr和As的超标率分别为16.7%、83.3%、33.3%、33.3%、16.7%和100%;但除华贵栉孔扇贝Cd含量超标外,Pb、Cr、Hg和As含量均能满足食品中污染物限量标准要求。尽管东山湾贝类总致癌风险R_c=1.65×10~(-4),存在一定的健康风险,但5种贝类体内重金属含量略低于我国东部-南部沿海贝类的平均水平,且2010—2017年期间东山湾牡蛎体内重金属污染状况没有明显变化(养殖生物质量指数<5%),加上重金属膳食暴露风险较低,总非致癌风险R_n=0.94(<1),总体而言贝类质量状况尚可。  相似文献   
994.
Wang  Shujun  Li  Enze  Du  Zhiping  Li  Jianfeng  Cheng  Fangqin 《Environmental Chemistry Letters》2019,17(1):509-514
Environmental Chemistry Letters - Bio-refractory organic contaminants (BOC) originating from coking wastewater is a severe threat to the environment and human health. The efficient pretreatment of...  相似文献   
995.
• Shale oil and gas production generates wastewater with complex composition. • Membrane technologies emerged for the treatment of shale oil and gas wastewater. • Membrane technologies should tolerate high TDS and consume low primary energy. • Pretreatment is a key component of integrated wastewater treatment systems. • Full-scale implementation of membrane technologies is highly desirable. Shale oil and gas exploitation not only consumes substantial amounts of freshwater but also generates large quantities of hazardous wastewater. Tremendous research efforts have been invested in developing membrane-based technologies for the treatment of shale oil and gas wastewater. Despite their success at the laboratory scale, membrane processes have not been implemented at full scale in the oil and gas fields. In this article, we analyze the growing demands of wastewater treatment in shale oil and gas production, and then critically review the current stage of membrane technologies applied to the treatment of shale oil and gas wastewater. We focus on the unique niche of those technologies due to their advantages and limitations, and use mechanical vapor compression as the benchmark for comparison. We also highlight the importance of pretreatment as a key component of integrated treatment trains, in order to improve the performance of downstream membrane processes and water product quality. We emphasize the lack of sufficient efforts to scale up existing membrane technologies, and suggest that a stronger collaboration between academia and industry is of paramount importance to translate membrane technologies developed in the laboratory to the practical applications by the shale oil and gas industry.  相似文献   
996.
Fungal trophic modes and substrates utilization ability was observed in composting. Fungi had the higher diversity and more trophic types in thermophilic phase. Fungi had the higher metabolic potential in fresh swine manure and mature production. Redox potential, organics and moisture are main factors impacting fungal community. Composting reduced pathogenic fungi and enrich dung saprotroph fungi in swine manure. The succession of fungal community, trophic mode and metabolic characteristics were evaluated in 60 days composting of swine manure by high-throughput sequencing, FUNGuild and Biolog method, respectively. The result showed that the fungal community diversity reached to the highest level (76 OTUs) in the thermophilic phase of composting, then sustained decline to 15 OTUs after incubation. There were 10 fungal function groups in the raw swine manure. Pathotroph-saprotroph fungi reached to 15.91% on Day-10 but disappeared on Day-60. Dung saprotroph-undefined saprotroph fungi grown from 0.19% to 52.39% during the treatment. The fungal community had more functional groups but the lower substrate degradation rates in the thermophilic phase. The fungal communities on Day-0 and Day-60 had the highest degradation rates of amino acids and polymers, respectively. Redundancy analysis showed that ORP (49.6%), VS/Ash (45.3%) and moisture (39.2%) were the main influence factors on the succession of fungal community in the swine manure composting process.  相似文献   
997.
介绍了基于CFSv2产品开展空气质量数值模拟的技术方法以及基于该技术的成都市延伸期空气质量预报系统,评价了2019年9月25日至12月25日的预报结果,以2019年12月为例分析了系统对具体污染过程的预报能力。结果表明,系统AQI预报准确率为36.67%,等级预报准确率为68.93%,"时段1"的预报效果优于其余时段,但"时段2"和"时段3"在污染物浓度水平上仍然具有较高的参考价值。系统在PM2.5浓度、气温和气压的变化趋势上提供21 d左右的参考。后续工作中,将针对CFSv2产品开展气象模型参数方案优选,并尝试结合基于GFS产品驱动的常规业务数值预报产品为延伸期空气质量预报提供污染物浓度初始场,减少误差传递,从而提高延伸期空气质量预报产品的准确性和可用性。  相似文献   
998.
建立了大体积在线固相萃取-液相色谱串联质谱(Online-SPE-LC-MS)检测污水厂尾水中6种酸性药物的方法。10 mL水样采用0.45 μm微孔滤膜过滤后经自动进样器直接在线上样,经Atlantis T3柱(100 mm×4.6 mm×3 μm)富集,Atlantis T3柱(100 mm×2.1 mm×2.6 μm)色谱分离,ESI-/ESI+源同步切换扫描,多反应监测(MRM)模式对布洛芬、酮洛芬、双氯芬酸钠、吲哚美辛、苯扎贝特、卡马西平进行同时定量分析。基于外标法和标准加入法进行分析以消除基质效应。结果显示,6种酸性药物在0.1~200 ng/L范围内线性相关性较好(r≥0.996 4),检出限(LOD)为0.01~0.16 ng/L,定量限(LOQ)为0.02~0.52 ng/L,加标回收率为94.3%~102%,相对标准偏差(RSD)为0.49%~10.1%。该法采用10 mL大体积进样,前处理简单、快速且重现性好,可有效实现污水厂尾水中6种酸性药物的定量分析。  相似文献   
999.
根据旋风除尘理论及湿式纤维栅除尘理沦,提出了一种旋风-湿式纤维栅除尘器,并对影响其性能(效率、阻力)的有关参数(旋流入口风速、喷水量等)进行了大量实验。实验结果表明,该旋风-湿式纤维栅除尘器不仅性能优良,并对资源回收利用及污物的后处理提供很多便利。  相似文献   
1000.
臭氧氧化法处理难降解有机废水   总被引:11,自引:0,他引:11  
臭氧氧化法在废水处理中有广泛的应用,对许多难降解的有机物,比如纺织印染废水、石油类污染物、焦化废水、金矿含氰废水、造纸废水等都具有较好的降解功效.有资料表明,影响臭氧氧化有机废水的主要因素有接触时间、臭氧投加量、pH值.  相似文献   
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