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71.
铁基硅盐对土壤环境镉砷赋存形态及转化影响   总被引:1,自引:0,他引:1  
为探明铁基硅盐对土壤镉砷赋存形态影响及各形态间转化规律,采用室内长期淹水培养吸附实验,研究不同比例铁硅材料对土壤离子态镉砷活性影响;筛选适宜铁基硅盐(FS)配比同时添加腐殖酸(FSC)和金属氧化物(FSCa),明确复配处理土壤中镉砷分级形态转化程度.结果显示,铁:硅比值增加10%,土壤pH值平均降低0.35;F2-S8处理土壤离子态镉降幅71%;F10-S0处理土壤离子态砷降低59.9%,离子态镉砷含量与硅酸盐-铁盐施用量互呈反比;处理F4-S6和F6-S4之间镉、砷钝化率产生交点,约为25%~30%.土壤中镉主要以可溶态为主,占比58%;砷主要以铁铝氧化态和钙结合态为主,占比40%和23%.铁硅比例为5:5或5.5:4.5左右复配能有效将铝结合态砷和铁铝氧化态砷转变为钙结合态砷和残渣态砷,可溶态镉转化为碳酸盐结合态镉以及铁锰氧化态镉,同步降低土壤中镉砷的活性.  相似文献   
72.
黄婷  张山  苏明雪  李宁 《中国环境科学》2022,42(7):3378-3384
采用共焦显微拉曼光谱仪探索不同热解温度(500~900)℃条件下所制备的污泥基生物炭结构变化的表征方法.结果表明,拉曼信号的荧光干扰与生物炭的理化特性有较强的相关性.随着热解温度升高,拉曼漂移系数减小,这与污泥基生物炭挥发分含量、H/C和O/C比变化趋势一致.其中,漂移系数与挥发分含量和H/C的相关性指数分别是0.97和0.94,其变化规律可用来准确评估生物炭挥发分含量和H/C的变化.同时,生物炭在拉曼光谱中的特征峰强度比D/G随着热解温度升高而增强,代表了污泥基生物炭无序化程度增加的过程.谷区域(V)与D峰强度比IV/ID随热解温度升高而减小,表明具有缺陷的稠合芳环结构的比例增加;另外,经分峰拟合后得到的ID1/IG1变化较小,而ID2/IG2呈增加趋势,证实了小分子侧链基团断裂形成的化合物部分沉积在炭表面,形成缺陷和非晶结构;IG1/IG2随着热解温度升高而减小,表明了炭基材料键角有序与无序比随着热解温度的升高而降低.因此,拉曼光谱可用于表征污泥基生物炭的微观结构变化,反映其结构演变规律.  相似文献   
73.
74.
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   
75.
研究不同海岸结构潮间带生物群落特征的差异不仅可以了解结构的基质特征与潮间带生物栖息适宜度的关系,还可为人工岸线生态化措施的选择提供依据。本文对凌水湾自然岸线和6个不同海岸结构潮间带生物群落进行了调查,比较了潮间带生物群落特征在不同海岸结构之间的差异,探讨了基质和结构特征与潮间带附着生物指标的关系,总结了影响附着生物特征...  相似文献   
76.
In this contribution, low-reactive circulating fluidized bed combustion (CFBC) fly ashes (CFAs) have firstly been utilized as a source material for geopolymer synthesis. An alkali fusion process was employed to promote the dissolution of Si and Al species from the CFAs, and thus to enhance the reactivity of the ashes. A high-reactive metakaolin (MK) was also used to consume the excess alkali needed for the fusion. Reactivities of the CFAs and MK were examined by a series of dissolution tests in sodium hydroxide solutions. Geopolymer samples were prepared by alkali activation of the source materials using a sodium silicate solution as the activator. The synthesized products were characterized by mechanical testing, scanning electron microscopy (SEM), X-ray diffractography (XRD), as well as Fourier transform infrared spectroscopy (FTIR). The results of this study indicate that, via enhancing the reactivity by alkali fusion and balancing the Na/Al ratio by additional aluminosilicate source, low-reactive CFAs could also be recycled as an alternative source material for geopolymer production.  相似文献   
77.
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   
78.
79.
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   
80.
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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