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Spinelli LF Schnaid F Selbach PA Bento FM Oliveira JR 《Journal of the Air & Waste Management Association (1995)》2005,55(4):421-429
This paper presents a study of the bioremediation of diesel oil and gasoline by a series of controlled laboratory tests. Sludge from an agroindustry was used to enhance bioremediation of both gasoline and diesel oil mixed with a soil mass to compare its efficiency with that of a mineral fertilizer. Effects of soil microbiology and soil mixtures were investigated by means of evolution of CO2, microorganism populations at 90 days, pH at 65 and 95 days, mineral nitrogen, and gas chromatographic analysis of the benzene, toluene, methyl tertiary butyl ether, C8, and C9+total aromatics at the end of the experiments. Treatments containing sludge showed better soil conditions after 170 days of treatment (inorganic nitrogen and microbiota activity) compared with gasoline and diesel oil without amendments. Samples had no detectable traces of the measured hydrocarbons at 170 days of treatment. 相似文献
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Sandro Lemos Machado Mehran Karimpour-Fard Nader Shariatmadari Miriam Fatima Carvalho Julio C.F. do Nascimento 《Waste management (New York, N.Y.)》2010,30(12):2579-2591
The characteristics of municipal solid waste (MSW) play a key role in many aspects of waste disposal facilities and landfills. Because most of a landfill is made up of MSW, the overall stability of the landfill slopes are governed by the strength parameters and physical properties of the MSW. These parameters are also important in interactions involving the waste body and the landfill structures: cover liner, leachate and gas collection systems. On the other hand, the composition of the waste, which affects the geotechnical behavior of the MSW, is dependent on a variety of factors such as climate, disposal technology, the culture and habits of the local community. It is therefore essential that the design and stability evaluations of landfills in each region be performed based on the local conditions and the geotechnical characteristic of the MSW. The Bandeirantes Landfill, BL, in São Paulo and the Metropolitan Center Landfill, MCL, in Salvador, are among the biggest landfills in Brazil. These two disposal facilities have been used for the development of research involving waste mechanics in recent years. Considerable work has been made in the laboratory and in the field to evaluate parameters such as water and organic contents, composition, permeability, and shear strength. This paper shows and analyzes the results of tests performed on these two landfills. The authors believe that these results could be a good reference for certain aspects and geotechnical properties of MSW materials in countries with similar conditions. 相似文献
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Saleemi Muhammad Kashif Tahir Muhammad Waseem Abbas Rao Zahid Akhtar Masood Ali Aamir Javed Muhammad Tariq Fatima Zahida Zubair Muhammad Bhatti Sheraz Ahmed Zahoor Ul Hassan 《Environmental science and pollution research international》2019,26(21):21371-21380
Environmental Science and Pollution Research - Cadmium is an important widely distributed heavy metal in the environment due to its several industrial uses, while milk thistle is an important herb... 相似文献
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Bibi Fatima Jamil Muhammad 《Environmental science and pollution research international》2021,28(11):13581-13594
Environmental Science and Pollution Research - This study examines the association between air pollution and economic growth based on the idea of environment Kuznets curve (EKC) hypothesis which... 相似文献
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Ayesha Noor Aboulaghras Sara Jahangeer Muhammad Riasat Areej Ramzan Rehana Fatima Rameen Akram Muhammad Balahbib Abdelaali Bouyahya Abdelhakim Sepiashvili Ekaterina Zengin Gokhan Shariati Mohammad Ali 《Environmental science and pollution research international》2021,28(35):47752-47772
Environmental Science and Pollution Research - Human papillomavirus (HPV) is a well-known sexually transmitted disorder globally. Human papillomavirus (HPV) is the 3rd most common cancer that... 相似文献
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Zohra Belala Mejdi Jeguirim Meriem Belhachemi Fatima Addoun Gwena?lle Trouv�� 《Environmental Chemistry Letters》2011,9(1):65-69
The removal of toxic metals from wastewaters by biosorption, based on the metal-binding capacities of various biological materials,
has received much interest. However, the success of this approach depends on economic feasibility, which can be obtained by
optimization of the environmental conditions. This paper evaluates, for the first time, the use of low-cost biosorbent (date
stones (DS) and palm-tree waste (PTW)) to eliminate Cu(II) from aqueous solutions. The effect of some parameters on copper
biosorption has been studied using date stones and palm-tree waste as solid sorbents. Results show that the highest percentage
of copper adsorption was obtained for the smallest size of the sorbent particles. The biosorption process was found to occur
rapidly, i.e. the maximum sorption capacity was reached within 20 min. The process involved pseudo-second-order kinetics with
an activation energy value within the normal range considered for processes, where a physical interaction between the sorbate
and the sorbent solid predominated. The thermodynamic parameters of the copper ions uptake onto the solid sorbents indicated
that, the process was endothermic and proceeds spontaneously from the date stones. However, the thermodynamic studies of the
adsorption of copper on palm-tree waste indicated that the process was exothermic and proceeds spontaneously. 相似文献
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Fatima Khasaeva Natalia Vasilyuk Petr Terentyev Maria Troshina Albert T. Lebedev 《Environmental Chemistry Letters》2011,9(3):439-445
Environmental pollution has become one of the most crucial problems of the modern society. Pyridine and its derivatives are
one of the most widespread classes of heterocyclic industrial contaminants. Due to rather tough safe levels, thorough purification
of the waste waters containing these ecotoxicants is required. However the existing chemical methods are not efficient. On
the contrary, microbiological approach seems quite promising. A new strain degrading alkylpyridines was isolated from the
soil contaminated with pyridine containing wastes. The strain was identified as Arthrobacter sp. KM-4 (VKM Ac-1098D). The strain completely consumes pyridine (2.5 g/l), 2-methylpyridine (2.5 g/l), 4-methylpyridine
(1.5 g/l) and 2,6-dimethylpyridine (3 g/l) in aquatic solutions in 24 h. The intermediate products of the biodegradation process
were identified using gas chromatography-mass spectrometry (GC–MS). Degradation schemes were proposed for pyridine and 2-methylpyridine.
Previously unknown pathway of pyridines microbial degradation via intermediate formation of pyrrolidines was reliably proved
by mass spectra and following synthesis of the identified compounds. New culture significantly surpasses all the known strains
in the pyridines’ degrading efficiency. Arthrobacter sp. KM-4 is a promising culture for application for the purification of waste water. 相似文献