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991.
采用田间试验,施用2种城市污泥堆肥(含生物质炭和不含生物质炭),通过静态暗箱-气相色谱法研究污泥堆肥土地利用过程温室气体排放特征,探讨施用污泥堆肥的短期影响作用.结果表明,在观测时间内,N2O排放主要集中在前3周,约占总排放量的87.9%~95.6%.N2O排放量均随污泥堆肥施用量的增加而增加(P<0.05),裸地N2O排放量高于种植作物处理.施用含生物质炭污泥堆肥能减少土壤N2O排放,且随着施用量的增加,N2O减少量越大(P<0.05).CH4排放量较低,在试验前期和后期主要为负,总体表现为吸收CH4.各处理吸收CH4主要集中在第18d以后,其CH4吸收量占总吸收量的52.1%~66.7%.施用含生物质炭污泥堆肥处理CH4吸收量比不含生物质炭污泥堆肥处理低35.2%~62.2%,同时,裸地CH4吸收量明显高于种植作物处理(P<0.05).CO2排放也主要集中在18d以后,约占排放总量的50.5%~61.8%.种植作物能促进CO2的排放,种植作物处理是裸地的1.34~1.57倍.在观测时间内,污泥堆肥土地利用是CH4的弱吸收汇,是N2O和CO2的排放源,施加污泥堆肥能显著增加土壤N2O和CO2的排放.施用生物质炭污泥堆肥短期内能够减少温室气体总排放量,温室气体减排量达到20.41%~62.51%. 相似文献
992.
Zhao Chenxu Lin Xiaojuan Ji Feng Xiong Ping Liu Yao Wang Suting Chen Peng Xu Qing Zhang Li Tao Zexin Xu Aiqiang 《Food and environmental virology》2020,12(4):321-332
Food and Environmental Virology - We present the results of environmental surveillance for poliovirus (PV) and non-poliovirus (NPEV) around the switch from trivalent to bivalent oral polio-vaccine... 相似文献
993.
994.
PFOS前体物质(PreFOSs)降解菌的分离鉴定及其降解特性 总被引:3,自引:0,他引:3
从氟化工厂附近土壤中分离出1株能以全氟辛烷磺酸前体物质(Pre FOSs)为唯一碳源和能源生长的降解菌PF1,经形态观察及16S r DNA基因序列分析,初步鉴定该菌为生丝微菌属(Hyphomicrobium sp.).在温度为30℃、p H为7.0~7.2条件下,菌株PF1对全氟辛基磺酰胺(PFOSA)和N-乙基全氟辛基磺酰胺(N-Et FOSA)48 h降解率分别为14.6%和8.2%,对PFOS无降解能力.对降解产物进行检测和分析,结果表明PFOSA的降解产物为PFOS;N-Et FOSA能被降解生成PFOSA和PFOS,同时也产生少量的全氟辛基磺酰胺乙酸(FOSAA).由此推断Pre FOSs降解途径,在菌株PF1的作用下,PFOSA脱去氨基直接转化成PFOS.NEt FOSA主要有2种降解途径:(1)N-Et FOSA脱乙基产生PFOSA,PFOSA再进一步脱氨基生成PFOS,此为主要途径;(2)NEt FOSA中的N-乙基被氧化成乙酸基生成FOSAA,FOSAA进一步脱去乙酸基生成PFOSA,并最终脱氨基生成PFOS. 相似文献
995.
基于长三角典型城市大气VOCs排放清单识别的8个VOCs主要排放行业,选择11家代表性企业,实测研究了VOCs治理装置、排放现状、排放组成特征,并计算相关行业排放的臭氧生成潜势.结果表明,不同净化技术对非甲烷总烃(NMHC)的去除效率差异大,存在净化后浓度增加的现象,目前的环保装置对废气的处理有待优化.本次采样的大部分企业存在NMHC、苯、甲苯、二甲苯超标现象,其中甲苯的超标情况最严重.对于筛选的8个主要行业,芳香烃和含氧VOCs,是最主要的排放化合物,芳香烃是对臭氧生成贡献最大的化合物.在不同行业中,VOCs组成存在显著差异,因此在制定VOCs减排控制措施时,应优先减排对臭氧生成贡献大的行业. 相似文献
996.
In this study,direct contact membrane distillation(DCMD)was used for treating fermentation wastewater with high organic concentrations.DCMD performance characteristics including permeate flux,permeate water quality as well as membrane fouling were investigated systematically.Experimental results showed that,after 12 hr DCMD,the feed wastewater was concentrated by about a factor of 3.7 on a volumetric basis,with the permeate flux decreasing from the initial 8.7 L/m~2/hr to the final 4.3 L/m~2/hr due to membrane fouling;the protein concentration in the feed wastewater was increased by about 3.5 times and achieved a value of 6178 mg/L,which is suitable for reutilization.Although COD and TOC in permeate water increased continuously due to the transfer of volatile components from wastewater,organic rejection of over 95%was achieved in wastewater.GC–MS results suggested that the fermentation wastewater contained 128kinds of organics,in which 14 organics dominated.After 12 hr DCMD,not only volatile organics including trimethyl pyrazine,2-acetyl pyrrole,phenethyl alcohol and phenylacetic acid,but also non-volatile dibutyl phthalate was detected in permeate water due to membrane wetting.FT-IR and SEM–EDS results indicated that the deposits formed on the membrane inner surface mainly consisted of Ca,Mg,and amine,carboxylic acid and aromatic groups.The fouled membrane could be recovered,as most of the deposits could be removed using a HCl/Na OH chemical cleaning method. 相似文献
997.
Tao Wang Zhenxing Huang Wenquan Ruan Mingxing Zhao Youlian Shao Hengfeng Miao 《环境科学学报(英文版)》2018,30(2):227-234
In this study, a full-scale internal circulation(IC) reactor coupled with an external circulation system was developed to treat high-strength leachate from a municipal solid waste(MSW)incineration plant, in which anaerobic sludge granulation was intensively investigated. Results showed that the IC reactor achieved excellent treatment performance under high organic loading rates(OLR) of 21.06–25.16 kg chemical oxygen demand(COD)/(m3? day). The COD removal efficiency and biogas yield respectively reached 89.4%–93.4% and 0.42–0.50 m3/kg COD.The formation of extracellular polymeric substances(EPS) was closely associated with sludge granulation. Protein was the dominant component in sludge EPS, and its content was remarkably increased from 21.6 to 99.7 mg/g Volatile Suspended Solid(VSS) during the reactor operation. The sludge Zeta potential and hydrophobicity positively correlated with the protein/polysaccharide ratio in EPS, and they were respectively increased from-26.2 m V and 30.35% to-10.6 m V and 78.67%, which was beneficial to microbial aggregation. Three-dimensional fluorescence spectroscopy(3 D-EEM) and Fourier transform infrared spectroscopy(FT-IR)analysis further indicated the importance of protein-like EPS substances in the sludge granulation. Moreover, it was also found that the secondary structures of EPS proteins varied during the reactor operation. 相似文献
998.
α-MnO_2 nanotubes and their supported Au-Pd alloy nanocatalysts were prepared using hydrothermal and polyvinyl alcohol-protected reduction methods, respectively. Their catalytic activity for the oxidation of toluene/m-xylene, acetone/ethyl acetate, acetone/m-xylene and ethyl acetate/m-xylene mixtures was evaluated. It was found that the interaction between Au-Pd alloy nanoparticles and α-MnO_2 nanotubes significantly improved the reactivity of lattice oxygen, and the 0.91 wt.% Au0.48 Pd/α-MnO_2 nanotube catalyst outperformed the α-MnO_2 nanotube catalyst in the oxidation of toluene, m-xylene, ethyl acetate and acetone. Over the0.91 wt.% Au0.48 Pd/α-MnO_2 nanotube catalyst,(i) toluene oxidation was greatly inhibited in the toluene/m-xylene mixture, while m-xylene oxidation was not influenced;(ii) acetone and ethyl acetate oxidation suffered a minor impact in the acetone/ethyl acetate mixture; and(iii) m-xylene oxidation was enhanced whereas the oxidation of the oxygenated VOCs(volatile organic compounds) was suppressed in the acetone/m-xylene or ethyl acetate/m-xylene mixtures. The competitive adsorption of these typical VOCs on the catalyst surface induced an inhibitive effect on their oxidation, and increasing the temperature favored the oxidation of the VOCs. The mixed VOCs could be completely oxidized into CO_2 and H_2 O below 320°C at a space velocity of 40,000 m L/(g·hr). The 0.91 wt.% Au0.48 Pd/α-MnO_2 nanotube catalyst exhibited high catalytic stability as well as good tolerance to water vapor and CO_2 in the oxidation of the VOC mixtures. Thus, the α-MnO_2 nanotube-supported noble metal alloy catalysts hold promise for the efficient elimination of VOC mixtures. 相似文献
999.
测土配方施肥对油菜生产的影响——基于1 722份田间试验材料的经济学分析 总被引:1,自引:1,他引:0
论文基于1 722份田间试验数据,将氮、磷、钾肥的投入量和油菜的产出量分别折算为相应的具体投入值和产出值,首先,运用超越对数生产函数模型计算出各种化肥要素的边际产出,研究发现氮、磷、钾肥的投入对油菜产出值的作用大小存在一定差异,对油菜产出值的影响大小关系为氮肥>磷肥>钾肥,其中氮肥的产出弹性值为0.288 3,磷肥的产出弹性值为0.180 3,钾肥的产出弹性值为0.087 7。其次,继续探究氮、磷、钾肥在油菜生产中的相互关系,结果显示,氮肥替代弹性系数为-0.058 8,磷肥为0.120 9,钾肥为0.281 0。最后,测算出使油菜产出值最大的氮肥最佳投入值为951.20 元/hm2,最佳磷肥投入值为3 766.08 元/hm2,最佳钾肥投入值为621.32 元/hm2。 相似文献
1000.
综合生态安全格局构建与城市扩张模拟的城市增长边界划定——以天水市规划区(2015—2030年)为例 总被引:5,自引:5,他引:0
传统的城市增长边界划定方法,一般仅考虑生态安全格局,并未考虑在现有客观条件下的城市扩张趋势,划定结果具有一定的主观性;或仅对城市的扩张进行模拟,忽略了城市的生态安全问题。针对上述问题,论文通过耦合城市综合生态安全格局与基于CA_Markov模型的城市扩张模拟结果,提出了一种新的城市增长边界划定方法:首先,合理选取因子构建研究区的综合生态安全格局,利用禁建区对综合生态安全格局的结果进行修正,获得研究区的刚性增长边界;其次,合理选取城市扩张驱动因子,通过CA_Markov模型预测城市扩张边界;最后,综合考虑刚性增长边界、模拟获得的城市扩张边界及近期城市拓展方案等,获得最终的城市增长边界。并以天水市规划区(2015—2030)为案例,对方法的科学性进行了说明。结果表明,论文划定的城市增长边界内总面积370.56 km2,占规划区总面积的7.7%。此方法能够有效解决城市增长与生态保护之间的矛盾,对河谷型城市等建设用地匮乏、生态环境脆弱城市的增长边界划定具有良好的应用价值,也可为其他类型城市的城市增长边界划定提供参考。 相似文献