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11.
Jianhua GAO Guishan YANG Weixin OU 《Frontiers of Environmental Science & Engineering in China》2008,2(1):81-88
In order to explore the effect of different ecological zones and their above plants in the organic matter cycling of the whole
tidal salt marsh, indicators such as total organic carbon (TOC), total nitrogen (TN), C/N ratio, δ13C and δ15N of surface, core sediments, and plants of tidal salt marshes in North Jiangsu Province are analyzed. Subsequently, distribution
regularities of these measurement indicators are discussed, and the biogeochemistry processes between sediments and plants
are also analyzed. Lastly, the organic matter sources of different ecologic zones in tidal salt marsh are evaluated, and the
organic matter accumulations in different ecologic zones induced by their plants are also compared. These results indicate
that TOC, TN, C/N ratio and δ13C showed obvious zonal distribution. The organic matter sources are dominated by marine input in the silt flat, artemisia schrenkiana flat, and the transition zone between silt and spartina alterniflora flat, and are controlled by terrigenous input in spartina alterniflora flat. Spartina alterniflora plays an important role in the accumulation of organic matter in the whole tidal salt marshes ecosystem. In the study area,
the annually increased TOC, organic matter and TN in the spartina alterniflora, artemisia schrenkiana and reed flats reach 6,451, 12,043 and 536 t, respectively. The amount of TOC, organic matter and TN accumulated in the spartina alterniflora flat is more than that in other ecological zones, which shows that the spartina alterniflora flat exert a non-replaceable effect on the material cycle and exchange in the whole tidal salt marshes ecosystem.
__________
Translated from Environmental Science, 2005, 26(6): 51–56 [译自: 环境科学] 相似文献
12.
Narwhals (Monodon monoceros) from North West Greenland are known to bioaccumulate mercury (Hg) in tissues and internal organs. This is postulated to be a health concern and therefore studies were undertaken to conduct a screening study of Hg concentrations and histopathology of liver and renal tissues in a total of 12 specimens. The sample consisted of two sub-adults (one male, one female) and 10 adult (six males, four females) collected in Qaanaaq (Thule) 2010. In liver, Hg mean ± SD was 11.88 ± 10.47 μg/g ww (range: 0.39?31.8 μg/g ww) while the concentrations in kidneys were 1.85 ± 1.20 μg/g ww (range: 0.41?4.03 μg/g ww). There was no marked difference in Hg concentrations between males and females while sub-adults had significantly lower concentrations. The histological examinations of renal tissue showed glomerular capillary dilatation and basement membrane thickening, dilatation, and hyalinization of Bowman's space/capsule and tubular lesions with hyaline casts accompanied by interstitial fibrosis in the kidneys. In liver tissue, portal cell infiltrates and fibrosis, bile duct proliferation, lipid-filled Ito cells, and steatosis were found. There was no marked difference in histological prevalence between males and females and in Hg concentrations in individuals with or without lesions. Four of seven renal lesions and one liver lesion were found in the two sub-adult whales. Based upon these findings, as well as the nature of the lesions, evidence suggests that histopathological alterations were a result of age but that Hg might be an aggravating co-factor in development of renal lesions in particular. 相似文献
13.
为了探索培育高产粮田的施肥模式,实现氮肥资源的高效利用与环境效益,以华北平原的小麦(Triticum aestivum)-玉米(Zea mays L.)轮作体系作为研究对象,通过2007─2011年4个轮作季,探讨不同的施肥模式对作物产量和土壤硝态氮的影响。试验以处理A(当地传统管理)作为对照,从测土确定施肥量、按作物生长发育明确施肥时期、合理分配各时期的养分配比及增施有机肥等方面改变传统施肥模式,设置3种高产施肥培育模式,分别为处理B(现有高产田推荐管理)、处理C(高肥料投入管理)和处理D(水肥高效管理),进行田间小区试验。4个轮作季的总产量以处理D为最高,达75430 kg·hm-2,其次是处理C为75166 kg·hm-2,当地传统的产量最低。冬小麦季的吸氮量为处理C和D显著高于A处理,分别高出444.78 kg·hm-2和310.20 kg·hm-2,但与处理B无显著差异;处理D在夏玉米季的吸氮量为776.75 kg·hm-2,显著高于处理A。处理B的氮肥偏生产力值最高为38.21,处理D为36.71,处理A和C均为28.33。各处理经过4个轮作季后,土壤硝态氮均在120-160 cm出现累积峰,A、B、C和D的硝态氮峰值分别为58.65、28.98、105.89、45.29 mg·kg-1。在0-100cm土层,处理B的硝态氮累积量达到144.22 kg·hm-2,显著高于处理A、C、D;所有处理在100-200 cm土层均出现较高的硝态氮累积,处理C高达1021.19 kg·hm-2;0-400 cm的土壤硝态氮累积量分别为724.27、711-92、1324.30、730.70 kg·hm-2。处理A、B、C、D在耕层土壤氮素的表观损失分别为1298.95、653.18、1236.39和718.43 kg·hm-2,处理B、D显著低于处理A、C,D和B间差异不显著。因此,处理D是培育高产的理想施肥模式,合理的施肥量、科学的施肥时期以及有机无机的合理配比是达到高产、提高肥效和环境友好的关键。 相似文献
14.
Conservation practitioners widely recognize the importance of making decisions based on the best available evidence. However, the effectiveness of evidence use in conservation planning is rarely assessed, which limits opportunities to improve evidence-based practice. We devised a mixed methodology for empirically evaluating use of evidence that applies social science tools to systematically appraise what kinds of evidence are used in conservation planning, to what effect, and under what limitations. We applied our approach in a case study of the Nature Conservancy of Canada (NCC), a leading land conservation organization. We conducted qualitative and quantitative analyses of 65 NCC planning documents (n = 13 in-depth) to identify patterns in evidence use, and surveyed 35 conservation planners to examine experiences of and barriers to using evidence. Although claims in plans contained a wide range of evidence types, 26% of claims were not referenced or associated with an identifiable source. Lack of evidence use was particularly apparent in claims associated with direct threats, particularly those identified as low (71% coded as insufficient or lacking evidence) or medium (45%) threats. Survey participants described relying heavily on practitioner experience and highlighted capacity limitations and disciplinary gaps in expertise among planning teams as barriers to using evidence effectively. We found that although time-intensive, this approach yielded actionable recommendations for improving evidence use in NCC conservation plans. Similar mixed-method assessments may streamline the process by including interviews and refining the document analysis frames to target issues or sections of concern. We suggest our method provides an accessible and robust point of departure for conservation practitioners to evaluate whether the use of conservation planning reflects in-house standards and more broadly recognized best practices. 相似文献
15.
16.
苏北潮滩湿地不同生态带有机质来源辨析与定量估算 总被引:6,自引:2,他引:6
对苏北潮滩湿地表层沉积物以及不同生态带柱状沉积物与植被中的TOC、TN、C/N、δ13C和δ15N的含量进行分析,并通过不同的指标进行相互验证,探讨各测量指标的分布规律,分析不同生态带植被和沉积物间的生物地球化学作用,定量估算不同生态带有机物的来源,对比不同生态带及其植被在苏北潮滩湿地有机质富集中的作用.结果表明:TOC、TN、C/N和δ13C都表现出了比较明显的地带性分布特征;光滩以及光滩和互花米草过渡带内的有机质来源以海源为主,互花米草滩以陆源为主,盐蒿滩也以海源为主,互花米草对生态系统内的有机质有着重要的贡献;研究区互花米草滩、盐蒿滩和芦苇地内,每年新增的TOC、有机质和TN分别达到了6 451t、16 595t和536t;互花米草滩对TOC、有机质和TN的富集量要远大于其它几个带,在整个潮滩湿地生态系统的物质循环和交换中也发挥着不可替代的作用. 相似文献
17.
有机肥与无机肥配施对潮土N2O排放的影响 总被引:3,自引:1,他引:3
华北平原是我国重要的粮食主产区,由于土壤有机质含量低,增加氮肥用量并不能导致玉米产量持续增加.有机肥和无机肥配施被广泛认为是同时实现粮食增产和提高土壤有机质的双赢措施,但是有机肥和无机肥配施对华北平原农田N2O排放的影响尚不明确.本研究在华北平原潮土区,通过测定不同种类有机肥与无机肥配施后农田N2O排放通量和作物产量,旨在揭示不同种类有机肥及其用量对潮土N2O排放和作物产量的影响效应.田间试验共设置8个处理,分别为不施肥(CK)、化肥氮(NPK)、 40%牛粪氮+60%化肥氮(CM)、 40%鸡粪氮+60%化肥氮(FC)、 40%猪粪氮+60%化肥氮(FP)、 20%牛粪氮+80%化肥氮(1/2CM)、 20%鸡粪氮+80%化肥氮(1/2FC)和20%猪粪氮+80%化肥氮(1/2FP).整个玉米季N2O排放通量均与土壤WFPS显著正相关(P<0.05).除NPK处理外,玉米季N2O排放量与土壤可溶性有机碳(DOC)平均含量存在显著的线性关系.玉米季CK处理N2<... 相似文献
18.
生物质炭对华北平原4种典型土壤N2O排放的影响 总被引:1,自引:0,他引:1
生物质炭作为一种新型的土壤改良剂,在降低土壤温室气体排放方面发挥着重要作用.为明确生物质炭对冬小麦苗期土壤N_2O排放的影响,以华北平原的4种典型土壤(水稻土、砂姜黑土、褐土和潮土)为研究对象,进行田间试验,设置了4个处理:对照(CK)、单施化肥(NPK)、单施生物质炭(BC)和化肥与生物质炭配施(NPK+BC).结果表明,单施化肥显著增加了4种土壤N_2O排放,与对照相比,水稻土、砂姜黑土、褐土和潮土N_2O排放分别增加了314%、116%、240%和282%.添加生物质炭对华北平原4种土壤N_2O排放影响存在差异,与CK相比,单施生物质炭水稻土、褐土N_2O排放显著增加了72. 4%和50. 9%,而砂姜黑土和潮土BC与CK处理无显著差异.与NPK相比,生物质炭与化肥配施显著降低了4种土壤N_2O排放.添加生物质炭提高了4种土壤pH,其中,初始pH最低的水稻土,受生物质炭影响较显著,施肥则降低了4种土壤pH.砂姜黑土、褐土和潮土施肥处理N_2O排放通量均与铵态氮含量呈显著正相关,水稻土和砂姜黑土单施生物质炭处理N_2O排放通量与硝态氮含量呈显著正相关. 相似文献
19.
北太平洋柔鱼渔场时空分布与海洋环境要素的研究 总被引:9,自引:0,他引:9
根据2010 年7~9月和2011年7~10月“舟渔1301#” 2个航次的北太平洋柔鱼渔场海上调查资料,利用渔获生产数据?海况天气数据以及同期的卫星遥感获取的海表面温度(SST) ?海表盐度(SSS)及叶绿素a (Chl-a)浓度和海流等数据,分析柔鱼的中心渔场分布与海洋环境的变动关系.研究结果显示:整个调查期间渔获频次在SST和Chl-a因子上均呈正态分布,渔场高产的最适SST范围为18~20℃, 最适SSS范围为33.60‰~34.80‰, 最适Chl-a浓度范围为0.08~0.24mg/m3,其中SST与柔鱼渔场之间有较好的匹配关系,中心渔场通常位于18~20℃的等温线附近,且位置一般出现在冷水团和暖水团交汇区的冷水团一侧;中心渔场位于亲潮和黑潮交汇混合区的向北一侧,离交汇地带的距离较近,而且随着时间的推移,渔汛期间中心渔场的位置逐步往其向西北方向移动.总体上多个环境因子皆可作为确定潜在中心渔场的指标,但以海表水温为最佳,另外辅助寒?暖流的交汇情况以及Chl-a浓度?天气海况等因素来综合分析,判断渔场的中心位置会更准确. 相似文献
20.