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991.
Water soluble organic carbon (WSOC) in sediments plays an important role in transference and transformation of aquatic pollutants. This article investigated the inherent mechanisms of how sediemnt grain size affect the partitioning coeffcient (k) of WSOC. Influences of NaOH extracted humic substances were particularly focused on. Sediments were sampled from two cross-sections of the middle Yellow River and sieved into three size fractions (< 63 μm, 63-100 μm, and 100--300 μm). The total concentration of WSOC in sediments (CWSOC) and k were estimated using multiple water-sediment ratio experiments. Results show that CWSOC ranges from 0.012 to 0.022 mg/g, while k ranges from 0.8 to 3.9 L/kg. Correlations between the spectrum characteristics of NaOH extracted humic substances and k were analyzed. Strong positive correlations are determined between k and the aromaticity indicators of NaOH extracted humic substances in different sediment size fractions. Comparing with finer fractions (< 63 μm), k is higher in larger size fractions (63--100 and 100--300 μm) related to higher aromaticity degree of NaOH extracted humic substances mostly. While negative relationship between k and the area ratio of fourier transform infrared spectroscopy (FT-IR) at 3400 and 1430 cm-1 implied that the lowest k was related to the highest concentration of the acidic humic groups in particles < 63 μm. WSOC in finer fractions (< 63 μm) is likely to enter into pore water, which may further accelerate the transportation of aquatic contaminants from sediment to water. 相似文献
992.
Water soluble organic carbon (WSOC) is considered the most mobile and reactive soil carbon source and its characterization is an
important issue for soil ecology study. A biodegradability test was set up to study WSOC extracted from 7 soils di erently managed.
WSOC was extracted from soil with water (soil/water ratio of 1:2, W/V) for 30 min, and then tested for biodegradability by a liquid state
respirometric test. Result obtained confirmed the finding that WSOC biodegradability depended on the both land use and management
practice. These results suggested the biodegradability test as suitable method to characterize WSOC, and provided useful information
to soil fertility. 相似文献
993.
核桃壳质活性炭的制备及吸附恶臭气体的研究 总被引:2,自引:0,他引:2
研究了用ZnCl2活化法制备核桃壳质活性炭的工艺条件及其改性前后吸附典型恶臭气体硫化氢的硫容量及穿透行为:结果表明:ZnCl2质量分数60%,300℃炭化80min,500℃活化60min,制得的活性炭脱硫硫容量高,穿透时间长;性能表征测得其碘吸附值可达880mg/g以上,吸附效果明显优于市售活性炭。用质量分数为1%的KIO3改性后的活性炭脱硫性能明显提高。 相似文献
994.
现代人80%以上的时间是在室内度过的,室内实际上已成为越来越多的人最直接、最经常的生活环境。与此同时,室内空气质量的优劣也越来越受到人们的关注。本文在呼和浩特市选择不同时间装修的居室,对其室内空气中甲醛、氨、一氧化碳、氡的含量进行了实测,分析了居室装修后室内主要空气污染物的污染水平以及各污染物的分布特征。数据表明,目前新近装修的居室内存在严重的甲醛污染,其超标率达到55.81%,随装修后时间的推移室内甲醛含量逐渐减少,其超标率逐渐降低,说明室内甲醛含量与室内通风状况有明显的正相关性;在所测定的居室中,一氧化碳及氨均未超标,氡的超标率为20%。 相似文献
995.
羊草草原碳循环过程的模拟与验证 总被引:2,自引:0,他引:2
根据内蒙古典型羊草草原碳通量和生物量观测数据,验证VIP(Vegetation Interface Proces-ses)模型,并模拟分析1958—2007年该生态系统碳循环特征及其与环境因子的相关关系。结果显示:VIP模型能够较准确地模拟地上生物量(R2=0.70)和净生态系统生产力NEP(R2=0.57)的变化趋势。羊草草原生态系统总初级生产力(GPP)、净初级生产力(NPP)和生态系统呼吸(Re)在1958—1973年间下降,1973—1993年间增长,1993年后又出现下降的趋势。与环境因子的相关性分析表明,GPP、NPP和Re随CO2和降水的增多而增大,随温度升高和降水的减少而降低,其中降水量与碳通量相关性最高,呼吸与温度、降水、CO2均存在一定程度的正相关关系。NEP年际变化较大,主要受控于年降水量,以228 mm为界,年降水量大于此值时,NEP为正的概率较大。 相似文献
996.
为有效控制流域水质污染,保证饮用水水源的水质安全,通过采集和测定流域内土壤、植物以及河流断面水体悬浮颗粒有机质(POM)在枯水期和丰水期的碳、氮稳定同位素值和C/N比值,对石头口门水库汇水流域水体POM的来源进行研究.结果表明,水体中POM主要来源于土壤有机质,其贡献为69.2%,藻类等大型水生生物和浮游植物的贡献分别为23.1%和7.7%.流域水体中POM的来源存在时空差异.丰水期,浮游植物和藻类等大型水生植物的贡献均为15.4%,而枯水期后者的贡献提高到了30.8%.水体POM主要来源于双阳河和饮马河下游的土壤有机质,说明该区域土壤侵蚀较重,易发生非点源污染;岔路河和饮马河上游支流小黄河,水体POM以浮游植物的贡献占主导,其贡献分别为86.3%和94.8%,这些区域侵蚀较弱,非点源污染发生的风险小;大中型水库区域的POM主要由藻类等大型水生植物贡献,表明悬浮颗粒物在进入水库后可能发生了明显沉积. 相似文献
997.
锡林河流域典型草原碳素生物小循环研究 总被引:1,自引:1,他引:0
应用生物地球化学分室方法研究了内蒙古锡林河流域2个典型草原群落——羊草草原和大针茅草原的碳素生物小循环,研究表明:①生长季禁牧的羊草草原植物分室碳素净固定量为165.50 gC.m-2,土壤分室碳素净排放量为174.36 gC.m-2,系统碳素净固定量为-8.86 gC.m-2,基本处于平衡状态,植物分室的碳输入和碳输出也近于平衡状态;②生长季禁牧的大针茅草原植物分室碳素固定量为130.04 gC.m-2,土壤分室碳素净排放量为128.28 gC.m-2,系统碳素净固定量为1.76 gC.m-2,基本处于平衡状态,植物分室的碳输入和碳输出在降水量大的年份以输入为主,在降水量小的年份近于平衡状态;③水热等生境条件较适宜的羊草草原碳素周转量比大针茅草原要大得多,水分是典型草原碳素循环量的主要影响因素。 相似文献
998.
温室效应导致全球变暖已成为全球性的环境问题之一.采用放电等离子体法转化CO2,不仅可消纳温室气体,缓解全球变暖的巨大影响,还可制备化工原料CO和O2.充分利用了C1(含1个碳原子的化合物分子)资源,对高频同轴式介质阻挡放电等离子体分解纯CO2进行了研究.结果发现:在采用不锈钢光滑内电极,放电间隙为2.0mm,注入功率为180W,气体流量为170mL/min的条件下,CO2转化率可达18.2%,CO和O2产率分别为10.1%和4.7%;增大注入功率,减小气体流量、选择合适的放电间隙和内电极形式,均有利于提高CO2转化率,获得更多的CO和O2. 相似文献
999.
The elemental composition and bacteria attached in particles were investigated during granular activated carbon (GAC) filtration.The experimental results showed that trapped influent particles could form new,larger particles on GAC surface.The sloughing of individuals off GAC surface caused an increase in effluent particles in the size range from 5 to 25 μm.The selectivity for element removal in GAC filters caused an increasing proportion of metallic elements in the effluent particles.The distribution of molar ratio indicated a complicated composition for large particles,involving organic and inorganic substances.The organic proportion accounted for 40% of total carbon attached to the particles.Compared with dissolved carbon,there was potential for the formation of trihalomethanes by organic carbon attached to particles,especially for those with size larger than 10 μm.The pure carbon energy spectrum was found only in the GAC effluent and the size distribution of carbon fines was mainly above 10 μm.The larger carbon fines provided more space for bacterial colonization and stronger protection for attached bacteria against disinfection.The residual attached bacteria after chorine disinfection was increased to 10 2-10 3 CFU/mL within 24 hours at 25°C. 相似文献
1000.
Influence of Indian mustard (Brassicajuncea) on rhizosphere soil solution chemistry in long-term contaminated soils: A rhizobox study 总被引:1,自引:0,他引:1
This study investigated the influence of Indian mustard (Brassica juncea) root exudation on soil solution properties (pH, dissolved
organic carbon (DOC), metal solubility) in the rhizosphere using a rhizobox. Measurement was conducted following the cultivation
of Indian mustard in the rhizobox filled four di erent types of heavy metal contaminated soils (two alkaline soils and two acidic
soils). The growth of Indian mustard resulted in a significant increase (by 0.6 pH units) in rhizosphere soil solution pH of acidic
soils and only a slight increase (< 0.1 pH units) in alkaline soils. Furthermore, the DOC concentration increased by 17–156 mg/L
in the rhizosphere regardless of soil type and the extent of contamination, demonstrating the exudation of DOC from root. Ion
chromatographic determination showed a marked increase in the total dissolved organic acids (OAs) in rhizosphere. While root exudates
were observed in all soils, the amount of DOC and OAs in soil solution varied considerably amongst di erent soils, resulting in
significant changes to soil solution metals in the rhizosphere. For example, the soil solution Cd, Cu, Pb, and Zn concentrations increased
in the rhizosphere of alkaline soils compared to bulk soil following plant cultivation. In contrast, the soluble concentrations of Cd, Pb,
and Zn in acidic soils decreased in rhizosphere soil when compared to bulk soils. Besides the influence of pH and DOC on metal
solubility, the increase of heavy metal concentration having high stability constant such as Cu and Pb resulted in a release of Cd and
Zn from solid phase to liquid phase. 相似文献