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111.
本研究依据2018年山东近岸养殖区调查资料,采用营养盐限制法则评价方法,对DIN、PO4-P、SiO3-Si的平面分布、结构及限制特征进行了分析。结果显示,2018年,山东近岸养殖区DIN、PO4-P和SiO3-Si年平均浓度分别为(0.253±0.048)mg/L、(0.00743±0.00238)mg/L和(0.269±0.089)mg/L,渤海养殖区片的DIN、SiO3-Si浓度总体高于黄海养殖区片,高值站位多分布于莱州湾等半封闭海湾;PO4-P浓度均普遍较低。N/P、Si/N和Si/P的年平均值分别为131±47、0.92±0.47和90±60。N/P高值区多分布于渤海养殖区及海阳-莱阳区片;Si/N、Si/P高值区多分布于牟平区片及渤海的潍坊、龙口及莱州-招远区片。对营养盐限制状况的分析表明,山东近岸养殖区营养盐结构表现为明显的磷限制和枯水期的硅限制。4个季节磷限制状况都较为明显,枯水季节的冬季、春季和秋季硅限制较为明显。建议滩涂贝类养殖区片合理规划放养密度,充分利用海洋初级生产力,净化水质;筏式养殖贝类、藻类养殖区片积极推广贝藻兼养、轮养,开展时空立体养殖,调整养殖品种结构,改善因营养结构改变导致的贫营养状况。 相似文献
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Yuan Ma Shan Zhai Shi Yun Mao Shi Lei Sun Ying Wang Zhong Hua Liu 《Journal of environmental science and health. Part. B》2013,48(9):661-670
A new imidacloprid (IMI) degrading bacterium Z-9 (deposited number CGMCC 6648) was isolated and identified as Pseudoxanthomonas indica by 16S rRNA gene analysis. Two metabolites were identified as olefin and 5-hydroxy IMI by liquid chromatography-mass spectrometry and nuclear magnetic resonance analysis. P. indica CGMCC 6648 degraded 70.1% of IMI (1.22 mmol L?1) and formed 0.93 mmol L?1 5-hydroxy IMI and 0.05 mmol L?1 olefin IMI in 6 days and in the presence of 100 mmol L?1 glucose. The half-life of IMI degradation was 3.6 days. P. indica CGMCC 6648 transforms IMI via a co-metabolism mechanism and different carbohydrates have significant effects on 5-hydroxy IMI formation, whereas different organic acids have substantial effects on olefin IMI production. Lactose is the best co-substrate for IMI degradation and 5-hydroxy IMI formation with 0.77 mmol L?1 degraded and 0.67 mmol L?1 formed in 48 h, respectively. Pyruvate is the best co-substrate for olefin IMI formation with 0.17 mmol L?1 produced in 96 h for all carbon sources tested. Pyruvate significantly stimulates the conversion of 5-hydroxy IMI to olefin IMI, whereas glucose slightly inhibits this reaction. P. indica CGMCC 6648 rapidly degrades IMI and forms olefin IMI, which may enhance its potential for biodegradation of IMI and increase its insecticidal activity, which can decrease the IMI dosage required. 相似文献
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Differences in nitrous oxide fluxes from red soil under different land uses in mid-subtropical China 总被引:1,自引:0,他引:1
Shan LinJaved Iqbal Ronggui Hu Leilei RuanJinshui Wu Jinsong ZhaoPengju Wang 《Agriculture, ecosystems & environment》2012,146(1):168-178
Red soil may play an important role in nitrous oxide (N2O) emissions due to its recent land use change pattern. To predict the land use change effect on N2O emissions, we examined the relationship between soil N2O flux and environmental determinants in four different types of land uses in subtropical red soil. During two years of study (January 2005-January 2007), biweekly N2O fluxes were measured from 09:00 to 11:00 a.m. using static closed chamber method. Objectives were to estimate the seasonal and annual N2O flux differences from land use change and, reveal the controlling factors of soil N2O emission by studying the relationship of dissolved organic carbon (DOC), microbial biomass carbon (MBC), water filled pore space (WFPS) and soil temperature with soil N2O flux. Nitrous oxide fluxes were significantly higher in hot-humid season than in the cool-dry season. Significant differences in soil N2O fluxes were observed among four land uses; 2.9, 1.9 and 1.7 times increased N2O emissions were observed after conventional land use conversion from woodland to paddy, orchard and upland, respectively. The mean annual budgets of N2O emission were 0.71-2.21 kg N2O-N ha−1 year−1 from four land use types. The differences were partly attributed to increased fertilizer use in agriculture land uses. In all land uses, N2O fluxes were positively related to soil temperature and DOC accounting for 22-48% and 30-46% of the seasonal N2O flux variability, respectively. Nitrous oxide fluxes did significantly correlate with WFPS in orchard and upland only. Nitrous oxide fluxes responded positively to MBC in all land use types except orchard which had the lowest WFPS. We conclude that (1) land use conversion from woodland to agriculture land uses leads to increased soil N2O fluxes, partly due increased fertilizer use, and (2) irrespective of land use, soil N2O fluxes are under environmental controls, the main variables being soil temperature and DOC, both of which control the supply of nitrification and denitrification substrates. 相似文献
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Xiaoping Zhou Xiaoke Wang Lei Tong Hongxing Zhang Fei Lu Feixiang Zheng Peiqiang Hou Wenzhi Song Zhiyun Ouyang 《环境科学学报(英文版)》2012,24(12):2104-2112
The significant warming in urban environment caused by the combined effects of global warming and heat island has stimulated widely development of urban vegetations. However, it is less known of the climate feedback of urban lawn in warmed environment. Soil warming effect on net ecosystem exchange (NEE) of carbon dioxide during the transition period from winter to spring was investigated in a temperate urban lawn in Beijing, China. The NEE (negative for uptake) under soil warming treatment (temperature was about 5℃ higher than the ambient treatment as a control) was -0.71 μmol/(m2.sec), the ecosytem was a CO2 sink under soil warming treatment, the lawn ecosystem under the control was a CO2 source (0.13 μmol/(m2.sec)), indicating that the lawn ecosystem would provide a negative feedback to global warming. There was no significant effect of soil warming on nocturnal NEE (i.e., ecosystem respiration), although the soil temperature sensitivity (Q10) of ecosystem respiration under soil warming treatment was 3.86, much lower than that in the control (7.03). The CO2 uptake was significantly increased by soil warming treatment that was attributed to about 100% increase of α (apparent quantum yield) and Amax (maximum rate of photosynthesis). Our results indicated that the response of photosynthesis in urban lawn is much more sensitive to global warming than respiration in the transition period. 相似文献
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Six common algal fatty acids (FAs) with different numbers of double bonds, lipophilic fractions and proteins extracted from the diatom Navicula pelliculosa and algal cells were chlorinated to evaluate their potential in generating disinfection by-products (DBPs). The result showed that the more double bonds in the FAs, the higher the amounts of chloroform and dichloroacetic acid (DCAA) produced, but such a pattern was not observed for trichloroacetic acid (TCAA). Based on the previously reported composition of fatty acids in algal lipids, the DBP generation potentials of algal lipids were calculated. These predicted values were much lower than those measured in the chlorinated algal lipophilic fraction, suggesting unknown lipophilic fraction(s) served as potent DBPs precursors. Another calculation attempted to predict DBP production in algal cells based on algal lipid and protein composition, given quantified measured DBP production per unit algal lipid and proteins. The analysis showed that the observed DBP production was similar to that predicted (< 35% difference), suggesting that algal biochemical compositions may serve as a bioindicator for preliminary estimation of chloroform, DCAA and TCAA formation upon chlorinating algae. 相似文献
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白洋淀喹诺酮类抗生素污染特征及其与环境因子相关性研究 总被引:3,自引:0,他引:3
利用超高效液相色谱串联质谱法(HPLC-MS)对白洋淀水体和沉积物中喹诺酮类(Quinolones,QNs)抗生素进行检测,并研究其生态风险空间分异特征,探究其与环境因子的相关性.结果表明:①白洋淀氧氟沙星(Ofloxacin,OFL)和氟甲喹(Flumequine,FLU)的检出率最高(100%),其次为马波沙星(Marbofloxacin,MAR)和氟罗沙星(Fleroxacin,FLE)(≥60%),其余QNs的检出率较低(≤35%);②白洋淀水体和沉积物中QNs抗生素浓度范围分别为153.39~1550.07 ng·L~(-1)和10.22~381.85 ng·g~(-1),水体中QNs在S1处浓度最高,S4处最低,沉积物中QNs在S2处浓度最高;③相关性分析结果表明,水体透明度(Secchi depth,SD)、总氮(Total nitrogen,TN)、总磷(Total phosphorus,TP)、硝氮(Nitrate nitrogen,NO~-_3-N)、沉积物氨氮(Ammonia nitrogen,NH_3-Ns)和沉积物总氮(TNs)与QNs相关性显著,其中,SD、TP和NH_3-Ns与部分QNs(MAR、恩诺沙星(Enrofloxacin,ENR)和FLE)显著相关(p0.01),表明生活污水和养殖废水对QNs的贡献较大;④生态风险评价结果表明,白洋淀QNs总体处于中低风险水平,其中,ENR处于中高风险水平,其余QNs处于低风险水平;就空间分布而言,除S1和S9为高风险区外,其余各点为中低风险区. 相似文献