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251.
An embedded reservoir that provides an efficient nutrient removal system protects drinking water.However,embedded reservoirs are rarely used in eutrophic shallow lakes because of their undetermined nutrient retention efficiency and unknown effects by the phytoplankton community.In this study,we aim to investigate the nutrient retention and algae succession in an embedded reservoir and adjacent wetland from April 2017 to September 2018 in the eastern part of Lake Taihu,China.More than 40% of total phosphorus(TP) and 45% of particulate phosphorous entering the reservoir were retained semiannually,and the highest TP removal efficiency was achieved in the reservoir during autumn with an average value of 53.3% ± 9.9%.The overall nitrogen retention efficiency(21.7% ± 37.8%) was lower than that of TP(41.8% ± 27.8%).Similar trends were obtained in the wetland area.An important pathway for phosphorus removal is through particulate matter retention.Our study revealed that nutrient retention mechanisms in the reservoir were primarily via macrophyte absorption,particulate substance sedimentation,and prolonged water residence time.Consequently,the phytoplankton biomass(Chl-a) in the reservoir decreased(from 48.0 to 25.2 μg/L) and water transparency improved,due to the decreased P level and transformation of the phytoplankton group into simple structures with good ecological status.Therefore,the combination of embedded reservoir and constructed wetland ecosystem can be used successfully to protect surface water.The results will be advantageous to groups seeking to preserve drinking water sources.  相似文献   
252.
为降低污水污泥中药理活性化合物(PhACs)产生的环境风险,利用生物方法强化污泥厌氧消化,提高其去除效果.以CFA(氯贝酸)、TCS(三氯生)、DCF(双氯芬酸)、CBZ(卡马西平)4种典型的PhACs为目标污染物,利用气相色谱-质谱联用仪(GC-MS)定量分析污泥中的目标物,探究外加生物酶联合污泥厌氧消化法强化对PhACs的作用效果.结果表明,随着SRT(污泥停留时间)的增大,目标物的去除率有一定程度的增大,特别是在高温条件下,当SRT由7 d增至20 d时,CFA的去除率增长了45%;木瓜蛋白酶对中高温系统中CBZ的去除效果最佳,分别为63.8%和67.5%,同时对4种目标物总的去除率最高,分别为57.3%和61.8%;添加溶菌酶试验中,4种目标物去除效果差异较大,中温、高温系统中对TCS的去除效果最佳为81.7%和80.9%,去除效果最差的是CBZ,去除率为40.4%和33.5%;纤维素酶处理中,4种目标物的去除率均小于60%.混合生物酶试验中,高温条件下更易去除PhACs.研究显示,生物酶强化污泥厌氧消化能有效去除污水污泥中的PhACs.   相似文献   
253.
针对含NO3--N与较高浓度SO42-实际工业废水处理较难的问题,考察了不同水力停留时间(HRT)下连续运行的CO2-氢基质膜生物膜反应器(CO2-MBfR)处理模拟废水和实际工业废水的性能,结果表明,2种废水的出水NO3--N浓度均随着HRT的减小而增大,模拟废水中NO3--N的处理效果和电子通量分配比例均优于实际废水,但其电子通量分配的格局基本不变:NO3--N和SO42-的电子通量分别在90.09%~97.49%和2.51%~9.91%左右.要实现实际废水总氮达到15mg/L的排放标准,需维持HRT不少于10.4h.  相似文献   
254.
Reclamation of degraded grasslands as managed grasslands has been increasingly accelerated in recent years in China. Land use change affects soil nitrogen(N) dynamics and nitrous oxide(N_2O) emissions. However, it remains unclear how large-scale grassland reclamation will impact the grassland ecosystem as a whole. Here, we investigated the effects of the conversion from native to managed grasslands on soil N dynamics and N_2O emissions by field experiments in Hulunber in northern China. Soil(0–10 cm), nitrate(NO_3~-),ammonium(NH_4~+), and microbial N were measured in plots in a temperate steppe(Leymus chinensis grassland) and two managed grasslands(Medicago sativa and Bromus inermis grasslands) in 2011 and 2012. The results showed conversion of L. chinensis grassland to M.sativa or B. inermis grasslands decreased concentrations of NO_3~–-N, but did not change NH_4~–N . Soil microbial N was slightly decreased by the conversion of L. chinensis grassland to M.sativa, but increased by the conversion to B. inermis. The conversion of L. chinensis grassland to M. sativa(i.e., a legume grass) increased N_2O emissions by 26.2%, while the conversion to the B. inermis(i.e., a non-legume grass) reduced N_2O emissions by 33.1%. The conversion from native to managed grasslands caused large created variations in soil NO?3~-+–N and NH_4~–N concentrations. Net N mineralization rates did not change significantly in growing season or vegetation type, but to net nitrification rate. These results provide evidence on how reclamation may impact the grassland ecosystem in terms of N dynamics and N_2O emissions.  相似文献   
255.
Nitrogen(N) runoff from paddy fields serves as one of the main sources of water pollution. Our aim was to reduce N runoff from paddy fields by fertilizer management and inoculation with arbuscular mycorrhizal fungi(AMF). In northeast China, Shuangcheng city in Heilongjiang province, a field experiment was conducted, using rice provided with 0%, 20%, 40%, 60%, 80%,and 100% of the local norm of fertilization(including N, phosphorus and potassium), with or without inoculation with Glomus mosseae. The volume, concentrations of total N(TN),dissolved N(DN) and particulate N(PN) of runoff water were measured. We found that the local norm of fertilization led to 18.9 kg/ha of N runoff during rice growing season, with DN accounting for 60%–70%. We also found that reduction in fertilization by 20% cut down TN runoff by 8.2% while AMF inoculation decreased N runoff at each fertilizer level and this effect was inhibited by high fertilization. The combination of inoculation with AMF and 80% of the local norm of fertilization was observed to reduce N runoff by 27.2%. Conclusively, we suggested that the contribution of AMF inoculation combined with decreasing fertilization should get more attention to slow down water eutrophication by reducing N runoff from paddy fields.  相似文献   
256.
This paper describes how organic compounds and nitrogen compounds induce the formation of hydrogen cyanide during the distillation process. Hydrogen cyanide formation was confirmed by X‐ray diffraction. The formation scheme for hydrogen cyanide from organic compounds is proposed.  相似文献   
257.
Wuhan Tianhe International Airport (WUH) was suspended to contain the spread of COVID-19, while Shanghai Hongqiao International Airport (SHA) saw a tremendous flight reduction. Closure of a major international airport is extremely rare and thus represents a unique opportunity to straightforwardly observe the impact of airport emissions on local air quality. In this study, a series of statistical tools were applied to analyze the variations in air pollutant levels in the vicinity of WUH and SHA. The results of bivariate polar plots show that airport SHA and WUH are a major source of nitrogen oxides. NOx, NO2 and NO diminished by 55.8%, 44.1%, 76.9%, and 40.4%, 33.3% and 59.4% during the COVID-19 lockdown compared to those in the same period of 2018 and 2019, under a reduction in aircraft activities by 58.6% and 61.4%. The concentration of NO2, SO2 and PM2.5 decreased by 77.3%, 8.2%, 29.5%, right after the closure of airport WUH on 23 January 2020. The average concentrations of NO, NO2 and NOx scatter plots at downwind of SHA after the lockdown were 78.0%, 47.9%, 57.4% and 62.3%, 34.8%, 41.8% lower than those during the same period in 2018 and 2019. However, a significant increase in O3 levels by 50.0% and 25.9% at WUH and SHA was observed, respectively. These results evidently show decreased nitrogen oxides concentrations in the airport vicinity due to reduced aircraft activities, while amplified O3 pollution due to a lower titration by NO under strong reduction in NOx emissions.  相似文献   
258.
259.
260.
合肥地区不同类型源头溪流暂态存储能力及氮磷滞留特征   总被引:2,自引:0,他引:2  
为揭示合肥地区不同类型源头溪流暂态存储能力及氮磷吸收滞留的基本特征,在城区和城郊筛选4条典型源头溪流,并以NH4Cl、KH2PO4为添加营养盐,以Na Cl为保守型示踪剂,开展现场示踪实验.在此基础上,利用OTIS模型水文参数(D、A、As和α),计算暂态存储指标(Ts、Tc、Ls、Rh和F200med),进而开展暂态存储能力分析,并以NH+4-N和SRP一阶吸收系数(λ、λs)解析氮磷滞留特征.结果表明:4条溪流水体的α值均处于10-4~10-3数量级;各溪流Tc基本都显著超过Ts,意味着这些溪流水体溶质滞留效应主要来自主渠道流动水体,而不是暂态存储区;根据Tc、Ts、Ls和Rh等指标,得到各源头溪流暂态存储能力排序为:二十埠河二级支流二十埠河一级支流十五里河源头段关镇河支渠;4条源头溪流主渠道流动水体与暂态存储区的NH+4-N、SRP滞留特征存在很大的差异,并且二十埠河一、二级支流和十五里河均不同程度出现λ-NH+4、λs-NH+4为负值的现象,意味着这些水体对于NH+4-N既具有短期存储作用,也起着"源"的作用.  相似文献   
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