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601.
氨氮(NH_4~+)是大多数浮游生物优先利用的氮源,其在水体中的再生过程(REG)和潜在吸收过程(U_(pot))影响水体初级生产力和生物群落的生长。以长江为研究对象,采用同位素稀释法对长江中游滨岸带水体的NH_4~+循环速率进行研究。结果显示:长江中游滨岸带水体NH_4~+再生速率为0.12~1.62μmol/(L·h),潜在吸收速率为0.21~2.35μmol/(L·h),生物群落NH_4~+需求(CBAD)为0.08~0.75μmol/(L·h)。NH_4~+再生速率、潜在吸收速率和生物群落NH_4~+需求均随水流方向自宜昌至鄱阳湖湖口呈现显著的下降趋势(p0.05)。统计分析表明,化学需氧量(COD)(p0.01)和悬浮物浓度(SS)(p0.05)是影响长江中游水体NH_4~+循环速率的主要因素。长江中游水体NH_4~+再生速率占潜在吸收速率的43.1%~76.0%,均值为58.5±8.5%,表明NH_4~+再生是长江中游水体中生物群落NH_4~+吸收过程的主要NH_4~+来源。估算得到的NH_4~+再生量是长江中游水体TN负荷的2倍,表明水体NH_4~+再生在支持水体初级生产力和维持氮素内循环方面具有重要作用。  相似文献   
602.
江汉平原水利工程密布,大型调水工程对流域用水格局产生很大影响。气候变化同时会影响调水工程调入调出区供需水情况,从而影响流域的水资源的分配。梳理了江汉平原主要调水工程,重点围绕南水北调中线工程与引江济汉工程的规划设计指标及实际运营状况,分析江汉平原潜在的用水矛盾。此外,在未来气候变化情景下,随着干旱时长和频次增加,会导致各调水工程抽水引水成本提高,从而加剧江汉平原用水矛盾。结果表明:(1)从工程设计和运行来看,南水北调中线工程达到调水设计后,引江济汉工程在保证汉江下游用水需求上受限可能性很大;(2)引江济汉工程自运行以来,虽未有较长时间的泵站抽水引水,但就2018年的泵站抽水引水成本来看已经达到运行总经费的30%。如果引江济汉工程引水口长江水位下降,自流引水受限,使用泵站抽水引水时长及频率将会增加,会导致引水费用进一步增加;(3)"南水北调中线"、"引汉济渭"、"鄂北水资源配置"工程,再叠加汉江中下游生产生活用水,如遇枯水年份,汉江水资源配置会产生很大的矛盾,对汉江流域及汉江生态经济带发展将产生影响。  相似文献   
603.
张巍 《化工环保》2018,38(3):267-274
论述了膨润土的吸附机理,介绍了膨润土的物理及化学改性方法及其对有机染料废水,焦化废水,烟草废水,煤泥水,含酚类、石油烃类、抗生素废水及微污染水等的处理效果。针对膨润土作为环保吸附剂存在的问题指出了今后的研究方向:1)将研究成果应用于实际废水;2)研究环境友好且效果好的改性工艺及材料;3)研究新的吸附剂制备形式;4)加大膨润土在废气处理上的研究力度;5)研制吸附效果更佳且能处理复杂成分污水的新型复合吸附剂。  相似文献   
604.
采用振荡淋洗和土柱动态淋洗实验研究了皂素和柠檬酸复合对土壤中钍的淋洗性能。实验结果表明:将质量浓度为20 g/L的皂素与浓度为20 mmol/L的柠檬酸以体积比1∶10配制复合淋洗液对污染土壤中钍的去除效果最佳,淋洗3.0 h,钍去除率为84.98%;准一级动力学方程能更好地描述复合淋洗液对钍的淋洗动力学特征;动态淋洗实验中当复合淋洗液用量为1 600 mL时,钍的累积去除量为73.66 mg/kg;淋洗后土壤中钍的酸可提取态、氧化结合态和有机结合态含量分别减少了79.63%、38.13%和20.34%,残渣态含量变化不大;淋洗后土壤中钍的稳定性增加。  相似文献   
605.
Poly(aspartic acid-itaconic acid) copolymers (PAI) is a new scale inhibitor for water treatment. Thus, it is necessary to investigate its biodegradability. The biodegradability of PAI was investigated through CO2 evolution tests under different conditions based on determination of carbon dioxide production. The investigation results showed that the degradation rate of PAI on day 10 and day 28 were respectively 38.7 and 79.5%, indicating that PAI was one kind of easily biodegradable scale inhibitors. With the increase in the content of itaconic acid in copolymerization process, the biodegradability of PAI was significantly reduced. In addition, the high biodegradability might be attributed to the existence of C–N bone-structure and more –COO–. Finally, Cu2+ could decrease the degradation percentage and the enzyme inhibition effect of Cu2+ was not the linear effect, but the “low-dosage effect”.  相似文献   
606.
Liquid hot water (LHW), an environmental-friendly physico-chemical treatment, was applied to pretreat the sugarcane bagasse (SCB). Tween80, a non-ionic surfactant, was used to enhance the enzymatic hydrolysis of the pretreated SCB. It found that 0.125 mL Tween80 /g dry matter could make the maximum increase (33.2%) of the glycan conversion of the LHW-pretreated SCB. A self-designed laboratory facility with a plate-and-frame impeller was applied to conduct batch hydrolysis, fed-batch hydrolysis, and the process of high-temperature (50°C) fed-batch hydrolysis following low-temperature (30°C) simultaneous saccharification and fermentation (SSF) which was adopted to overcome the incompatible optimum temperature of saccharification and fermentation in the SSF process. After hydrolyzing LHW-pretreated SCB for 120 h with commercial cellulase, the total sugar concentration and glycan conversion obtained from fed-batch hydrolysis were 91.6 g/L and 68.3%, respectively, which were 9.7 g/L and 7.3% higher than those obtained from batch hydrolysis. With Saccharomyces cerevisiae Y2034 fermenting under the non-sterile condition, the ethanol production and theoretical yield obtained from the process of SSF after fed-batch hydrolysis were 55.4 g/L and 88.3% for 72h, respectively, which were 15.5 g/L and 24.7% higher than those from separate fed-batch hydrolysis and fermentation. The result of this work was superior to the reported results obtained from the LHW-pretreated SCB.  相似文献   
607.
当前我国环境形势仍十分严峻,"十三五"期间要实现生态环境质量总体改善,需要"硬制度""硬项目"和"硬投入"。文章结合《"十三五"生态环境保护规划》,对其中的重大改革制度政策创新和重大工程项目安排以及资金投入渠道等进行了深入分析解读,提出为确保生态环境质量总体改善,必须积极推动重大改革政策的实施,加快推进重大项目的落地,加大环保资金的投入,优化环保资金渠道。  相似文献   
608.
The residual levels of phthalate esters (PAEs) in the surface and two core sediments from Lake Chaohu were measured with a gas chromatograph–mass spectrometer (GC–MS). The temporal–spatial distributions, compositions of PAEs, and their effecting factors were investigated. The results indicated that di-n-butyl phthalate (DnBP), diisobutyl phthalate (DIBP), and di(2-ethylhexyl) phthalate (DEHP) were three dominant PAE components in both the surface and core sediments. The residual level of total detected PAEs (∑PAEs) in the surface sediments (2.146?±?2.255 μg/g dw) was lower than that in the western core sediments (10.615?±?9.733 μg/g) and in the eastern core sediments (5.109?±?4.741 μg/g). The average content of ∑PAEs in the surface sediments from the inflow rivers (4.128?±?1.738 μg/g dw) was an order of magnitude higher than those from the lake (0.323?±?0.093 μg/g dw), and there were similar PAE compositions between the lake and inflow rivers. This finding means that there were important effects of PAE input from the inflow rivers on the compositions and distributions of PAEs in the surface sediments. An increasing trend was found for the residual levels of ΣPAEs, DnBP, and DIBP from the bottom to the surface in both the western and eastern core sediments. Increasing PAE usage with the population growth, urbanization, and industrial and agricultural development in Lake Chaohu watershed would result in the increasing production of PAEs and their resulting presence in the sediments. The significant positive relationships were also found between the PAE contents and the percentage of sand particles, as well as TOC contents in the sediment cores.  相似文献   
609.
Phosphorus (P) in agricultural ecosystems is an essential and limited element for plants and microorganisms. However, environmental problems caused by P accumulation as well as by P loss have become more and more serious. Oxygen isotopes of phosphate can trace the sources, migration, and transformation of P in agricultural soils. In order to use the isotopes of phosphate oxygen, appropriate extraction and purification methods for inorganic phosphate from soils are necessary. Here, we combined two different methods to analyze the oxygen isotopic composition of inorganic phosphate (δ18OP) from chemical fertilizers and different fractions (Milli-Q water, 0.5 mol L?1 NaHCO3 (pH = 8.5), 0.1 mol L?1 NaOH and 1 mol L?1 HCl) of agricultural soils from the Beijing area. The δ18OP results of the water extracts and NaHCO3 extracts in most samples were close to the calculated equilibrium value. These phenomena can be explained by rapid P cycling in soils and the influence of chemical fertilizers. The δ18OP value of the water extracts and NaHCO3 extracts in some soil samples below the equilibrium value may be caused by the hydrolysis of organic P fractions mediated by extracellular enzymes. The δ18OP values of the NaOH extracts were above the calculated equilibrium value reflecting the balance state between microbial uptake of phosphate and the release of intracellular phosphate back to the soil. The HCl extracts with the lowest δ18OP values and highest phosphate concentrations indicated that the HCl fraction was affected by microbial activity. Hence, these δ18Op values likely reflected the oxygen isotopic values of the parent materials. The results suggested that phosphate oxygen isotope analyses could be an effective tool in order to trace phosphate sources, transformation processes, and its utilization by microorganisms in agricultural soils.  相似文献   
610.

Silicon-based fertilizers and soil amendments can have direct and indirect positive influences on cultivated plants. The solid forms of Si-based substances, the most widespread in use, are efficient only at high application rates due to their low level of solubility. Several types of Si-based substances such as fumed silica, slags from the iron and steel industry, modified slags, and a Si-rich product were tested using barley and pea as silicon accumulative and non-accumulative plants, respectively, at two application rates. The plants were grown under toxic concentrations of heavy metals in a greenhouse. Si-rich materials high in water-soluble Si had a positive effect at both the low and high application rates, and for both plant species. This type of substance can be regarded as Si fertilizer, demonstrating greater efficiency at a low application rate and lessened efficiency at a high application rate for protection of the cultivated plants against accumulation of the heavy metals.

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