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71.
Mineral dust,soil,and sea salt aerosols are among the most abundant primary inorganic aerosols in the atmosphere,and their hygroscopicity affects the hydrological cycle and global climate.We investigated the hygroscopic behaviors of six Na-and K-containing salts commonly found in those primary organic aerosols.Their hygroscopic growths as a function of relative humidity(RH) agree well with thermodynamic model prediction.Temperature dependence of deliquescence RH(DRH) values for five of those sal... 相似文献
72.
过硫酸钾溶液对测定总氮的影响 总被引:1,自引:0,他引:1
通过对过硫酸钾的配制方法,加热时的水浴温度,反应介质条件及其纯度等因素对总氮测定结果影响的讨论,提出了过硫酸钾有效的配制方法及其纯度要求,以进一步提高总氮测定的准确度. 相似文献
73.
Impact of chemical oxidation on soil quality 总被引:2,自引:0,他引:2
Oxidation treatment helps to reduce the polycyclic aromatic hydrocarbon (PAH) load in contaminated soils but it may also have an effect on the soil quality. The impact of permanganate and Fenton oxidation on soil quality is investigated. Soil quality is restricted here to the potential for plant growth. Soil samples were collected from an agricultural field (S1) and a former coking plant (S4). Agricultural soil was spiked with phenanthrene (PHE) and pyrene (PYR) at two concentrations (S2: 700 mg PHE kg−1, S3: 700 mg PHE kg−1 and 2100 mg PYR kg−1). Soils were treated with both oxidation processes, and analyzed for PAHs and a set of agronomic parameters. A plant germination and growth test was run with rye-grass on treated soils. Results showed that both treatments produced the expected reduction of PAH concentration (from 64% to 97%). Besides, a significant loss of organic C and N, and strong changes in available nutrients were observed. Permanganate treatment increased the specific surface area and the cation exchange capacity in relation to manganese dioxide precipitation, and produced a rise in pH. Fenton oxidation decreased soil pH and increased the water retention capacity. Plant growth was negatively affected by permanganate, related to lower soil permeability and aeration. Both treatments had an effect on soil properties but Fenton oxidation appeared to be more compatible with revegetation. 相似文献
74.
75.
Potassium silicate drilling fluids(PSDF) are a waste product of the oil and gas industry with potential for use in land reclamation. Few studies have examined the influence of PSDF on abundance and composition of soil bacteria and fungi. Soils from three representative locations for PSDF application in Alberta, Canada, with clay loam, loam and sand textures were studied with applications of unused, used once and used twice PSDF. For all three soils, applying ≥ 40 m3/ha of used PSDF significantly affected the existing soil microbial flora. No microbiota was detected in unused PSDF without soil. Adding used PSDF to soil significantly increased total fungal and aerobic bacterial colony forming units in dilution plate counts, and anaerobic denitrifying bacteria numbers in serial growth experiments.Used PSDF altered bacterial and fungal colony forming unit ratios of all three soils. 相似文献
76.
本文研究了三组不同粘土矿物组成的耕作土壤钾素的交换特性,结果表明,供试土壤的钾交换选择性系数(K_c)与交换性钾比率(EPR)呈极显著的负相关,相关系数变化于-0.86至-0.95之间,且K_c因EPR的增加而趋于恒值。以伊利石、蛭石占优势的第一组土壤和以伊利石为主、高岭石为次的第二组土壤的K_c趋于恒值时的EPR明显高于以高岭石为主、伊利石为次的第三组土壤。三组土壤的钾吸附比率(PAR)与EPR均呈极显著的正相关,相关系数变化于0.94至0.98之间。土壤钾交换选择性的强弱因粘土矿物组成、粘粒含量和初始交换性钾饱和度的不同而表现出如下趋势:第一组土壤>第二组土壤>第三组土壤。 相似文献
77.
新型复合预氧化技术控制副产物的试验研究 总被引:1,自引:0,他引:1
臭氧被广泛应用于饮用水预氧化工艺中,但是成本较高,而且会生成臭氧化副产物,如可同化有机碳(AOC)、溴酸盐和甲醛.因此,提出臭氧/高锰酸钾复合预氧化技术,并对照预臭氧化技术,进行了消毒副产物前质及臭氧化副产物控制的小试试验研究.结果表明,与预臭氧化(1.5 mg/L臭氧)相比,复合预氧化(0.6 mg/L臭氧 0.4 mg/L高锰酸钾)能促进混凝沉淀对消毒副产物前质的去除,总去除率与单独预臭氧化的去除率相当.而且又能降低AOC生成量,并促进混凝沉淀对AOC的去除,合计AOC去除率达43%左右.此外,对溴酸盐和甲醛生成量也有明显去除效果,比单独预臭氧化降低了78.4%和21.2%. 相似文献
78.
以过硫酸钾为氧化剂测定水中挥发酚 总被引:2,自引:0,他引:2
蔡明 《环境监测管理与技术》2000,12(5):33-34
以过硫酸钾代替铁氰化钾作氧化剂 ,在pH 1 0± 0 2溶液中 ,用 4-氨基安替比林萃取法比色测定低浓度挥发酚 ,于 460nm处有最大吸收峰 ,在 0 μg/2 50mL~ 1 5μg/2 50mL范围内符合比尔定律。 4次校准曲线相关系数为 0 9999~ 0 9994。相对标准偏差为 0 2 % ,回收率为 91 %~ 97%。显色反应的选择性、稳定性、重现性和准确性均较好。氧化剂较稳定 ,易保存、无毒性。 相似文献
79.
在柠檬酸介质中,I-对KIO3氧化结晶紫的反应有催化效应,据此建立了测定微量I-新的催化动力学光度法.方法的检出限为0.185μg/ml,测定范围为5~70μg/25ml,用本法对环境水样进行了测定,结果满意。 相似文献
80.
Wastewater irrigation is an environmentally sound wastewater disposal practice, but sewage is more saline than the supplied fresh water and the salts are recycled together with the water. Salts have negative environmental effects on crops, soils, and groundwater. There are no inexpensive ways to remove the salts once they enter sewage, and the prevention of sewage salt enrichment is the most immediately available solution. The body of initiatives presently structured by the Ministry of the Environment of Israel are herein described, with the aim to contribute to the search for a long-term solution of salinity problems in arid countries. The new initiatives are based on: (1) search for new technologies to reduce salt consumption and discharge into sewage; (2) different technologies to cope with different situations; (3) raising the awareness of the public and industry on the environmental implications of salinity pollution; and (4) an elastic legal approach expressed through new state-of-the-art regulations. The main contributor to the salinity of sewage in Israel is the watersoftening process followed by the meat koshering process. Some of the adopted technical solutions are: the discharge of the brine into the sea, the substitution of sodium by potassium salts in the ion-exchangers, the construction of centralized systems for the supply of soft water in industrial areas, the precipitation of Ca and Mg in the effluents from ion-exchangers and recycling of the NaCI solution, a reduction of the discharge of salts by the meat koshering process, and new membrane technology for salt recovery. 相似文献