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To understand the short-term effects of forest gap by human harvesting on soil available nutrient in Pinus massoniana plantations, the variations of soil ammonium nitrogen (NH4+-N) and nitrate nitrogen (NO3-N) concentrations in the gap center and gap edge during growing season were observed in seven gaps of different size (Gl: 100 m2; G2:225 m2; G3:400 m2; G4:625 m2; G5:900 m2; G6:1225 m2; G7:1600 m2) and pure understory of a 39-year-old masson pine plantation in a hilly area of the upper reaches of Yangtze River. The results showed that in the early stage of gap formation, the gap size had significant effect on NH4+-N, the season changes on NP3--N, and the interaction effect of gap size and seasonal variation on NH4+-N and NO3--N. The difference of NH4+-N and NO3--N between the gap center and gap edge was not significant. (I) The NH4+-N content was 4.30-11.99 mg kg-1, and NO3--N content was 2.57-10.81 mg kg-1. There was no obvious difference in NH4+-N and N03--N among gaps of different size in early or late growing seasons, when both increased first and decreased afterwards in the middle of growing season. The gaps of 100∼400 m2 area had a higher content of available nitrogen. (2) The seasonal dynamic differed between NH4+-N and NO3--N, with the former lower in middle growing season whereas the latter higher in the middle growing season but lower in the end of growing season. The soil NH4+-N was higher than NO3- -N in the early and late periods, but lower in the middle period. (3) The soil NH4+-N and NO3--N in parts of gaps were lower than understory in the early and late growing season. (4) Correlation analyses showed that NH4+-N had significant positive correlation with microbial biomass nitrogen (MBN), and NO3--N with soil temperature, MBN and organic matter. But the impact of soil water content on available nitrogen was not significant. These results suggested that soil temperature and microbial activity variation caused by gap harvesting are the main factors affecting soil available nitrogen content of Pinus massoniana plantations. 相似文献
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Assessment of heavy metal bioavailability in contaminated sediments and soils using green fluorescent protein-based bacterial biosensors 总被引:2,自引:0,他引:2
A green fluorescent protein (GFP)-based bacterial biosensor Escherichia coli DH5alpha (pVLCD1) was developed based on the expression of gfp under the control of the cad promoter and the cadC gene of Staphylococcus aureus plasmid pI258. DH5alpha (pVLCD1) mainly responded to Cd(II), Pb(II), and Sb(III), the lowest detectable concentrations being 0.1 nmol L(-1), 10 nmol L(-1), and 0.1 nmol L(-1), respectively, with 2h exposure. The biosensor was field-tested to measure the relative bioavailability of the heavy metals in contaminated sediments and soil samples. The results showed that the majority of heavy metals remained adsorbed to soil particles: Cd(II)/Pb(II) was only partially available to the biosensor in soil-water extracts. Our results demonstrate that the GFP-based bacterial biosensor is useful and applicable in determining the bioavailability of heavy metals with high sensitivity in contaminated sediment and soil samples and suggests a potential for its inexpensive application in environmentally relevant sample tests. 相似文献
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本文从细微粒子污染导致灰霾形成的角度出发,首先开展了灰霾监测实验,并对实验数据进行频数和描述性分析,研究了以PM10为主的细微粒子污染与灰霾的影响关系。确定了以PM10日平均浓度为灰霾目的判定依据,并根据中国大陆PM10污染指数的分级标准建立了灰霾等级指数,从而形成了一套根据PM10日平均浓度来确定不同等级的灰霾发生概率的方法,为灰霾预测及灰霾治理提供一定的理论依据。 相似文献
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生活水污泥油化试验研究 总被引:10,自引:0,他引:10
用碳酸钠与污泥混合,在压力4 ̄5kgf/cm^2、温度300 ̄450℃获得燃料油16%左右,气体各C1 ̄C3烃类占体积的约19%,臭气物质主要10种。 相似文献
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玉米秸秆生物炭固化细菌对镉砷吸附 总被引:4,自引:2,他引:2
为了确保细菌对镉砷复合污染土壤的修复效果,对细菌进行固定化处理.本研究将细菌悬液(Delftia sp. B9, B9)、玉米秸秆生物炭(corn stalks biochar,CSB)以及玉米秸秆生物炭-细菌复合体(corn stalks biochar-bacteria complex,B-CSB)作为3种吸附材料,探究3种材料对镉和砷的吸附特性及pH对3种材料去除水中镉砷离子性能的影响,进行了等温吸附模型拟合,并采用扫描电镜(SEM)、傅里叶红外变换光谱(FT-IR)和X射线光电子能谱分析(XPS)对3种材料进行表征分析,同时探究添加B9、 CSB和B-CSB对土壤中镉和砷形态变化的影响.结果表明, 3种材料对Cd2+的饱和吸附量分别为49.43、 82.68和75.38 mg·g-1;对As的饱和吸附量分别为24.67、 42.92和34.03 mg·g-1.添加B-CSB可使土壤中的弱酸可溶态Cd显著下降,残渣态Cd显著增加;铁型砷含量显著减少,残渣态砷含量增加.B-CSB是一种更有效地修复镉砷复合污染的材料. 相似文献