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Cooperative effect of sodium lauryl sulfate collector and sodium pyrophosphate depressant on the flotation separation of lead oxide minerals from hematite
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作者 Honghu Tang Bingjian Liu +3 位作者 Mengshan Li Qiancheng Zhang Xiongxing Zhang Feng Jiang 《International Journal of Minerals,Metallurgy and Materials》 SCIE EI CAS CSCD 2024年第9期1975-1984,共10页
As a cornerstone of the national economy,the iron and steel industry generates a significant amount of sintering dust containing both valuable lead resources and deleterious elements.Flotation is a promising technique... As a cornerstone of the national economy,the iron and steel industry generates a significant amount of sintering dust containing both valuable lead resources and deleterious elements.Flotation is a promising technique for lead recovery from sintering dust,but efficient separation from Fe_(2)O_(3) is still challenging.This study investigated the cooperative effect of sodium lauryl sulfate(SLS,C_(12)H_(25)SO_(4)Na)and sodium pyrophosphate(SPP,Na_(4)P_(2)O_(7))on the selective flotation of lead oxide minerals(PbOHCl and PbSO_(4))from hematite(Fe_(2)O_(3)).Optimal flotation conditions were first identified,resulting in high recovery of lead oxide minerals while inhibiting Fe_(2)O_(3) flotation.Zeta potential measurements,Fourier transform infrared spectroscopy(FT-IR)analysis,adsorption capacity analysis,and X-ray photoelectron spectroscopy(XPS)studies offer insights into the adsorption behaviors of the reagents on mineral surfaces,revealing strong adsorption of SLS on PbOHCl and PbSO_(4) surfaces and remarkable adsorption of SPP on Fe_(2)O_(3).The proposed model of reagent adsorption on mineral surfaces illustrates the selective adsorption behavior,highlighting the pivotal role of reagent adsorption in the separation process.These findings contribute to the efficient and environmentally friendly utilization of iron ore sintering dust for lead recovery,paving the way for sustainable resource management in the iron and steel industry. 展开更多
关键词 sintering dust flotation separation sodium lauryl sulfate sodium pyrophosphate selective adsorption
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Effect of Leucaena leucocephala (Lam.) and Sodium Lauryl Sulfate in Meat Goat Diets on Nematode Eggs and Protozoa Interaction in the Rumen
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作者 S. Supreena P. Peangkoum 《Journal of Agricultural Science and Technology(A)》 2011年第8期1291-1294,共4页
The effeclt of condensed tannins from Leucaena leucocephala (Lam.) and sodium lauryl sulfate (SLS) addition to basal diets of corn silage on nematode eggs and protozoa interaction in the rumen within Thai native x... The effeclt of condensed tannins from Leucaena leucocephala (Lam.) and sodium lauryl sulfate (SLS) addition to basal diets of corn silage on nematode eggs and protozoa interaction in the rumen within Thai native x Anglo-Nubian male goats was studied. Goats (n = 24 male; BW = 30 + 2) were randomly considered toward treatment position into randomized complete block design (RCBD). The treatments were: 1) Basal (B; 1.0-1.2 kg/head/day, corn silage), 2) B + SLS 8 g/head/day) 3) B + 40g Leucaena/head/day (1.0% condensed tannins), and 4) B + 40g Leucaena/head/day (1.0% condensed tannins) with SLS 4 g/head/day). These studies indicate that the action of 1.0% condensed tannins by Leucaena with 8 g SLS has the effect of increasing C3 (P 〈 0.05). The opposite effect was observed for C2 which decreased (P 〈 0.05). Both intestinal nematode eggs and protozoa in the rumen were reduced highly significantly (P 〈 0.01). Bacteria population was raised (P 〈 0.01). Nevertheless, all of these treatments did not affect intake, productive performances and blood urea nitrogen. 展开更多
关键词 Leucaena leucocephala (Lam.) sodium lauryl sulfate nematode eggs protozoa meat goat RUMEN
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Glassy carbon electrode modified with multi-walled carbon nanotubes sensor for the quantihication of antihistamine drug pheniramine in solubilized systems 被引量:1
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作者 Rajeev Jain Sanjay Sharma 《Journal of Pharmaceutical Analysis》 SCIE CAS 2012年第1期56-61,共6页
A sensitive electroanalytical method for quantification of pheniramine in pharmaceutical formulation has been investigated on the basis of the enhanced electrochemical response at glassy carbon electrode modified with... A sensitive electroanalytical method for quantification of pheniramine in pharmaceutical formulation has been investigated on the basis of the enhanced electrochemical response at glassy carbon electrode modified with multi-walled carbon nanotubes in the presence of sodium lauryl sulfate.The experimental results suggest that the phcniramine in anionic surfactant solution exhibits electrocatalytic effect resulting in a marked enhancement of the peak current response.Peak current response is linearly dependent on the concentration of pheniramine in the range 200-1500 μg/mL with correlation coefficient 0.9987.The limit of detection is 58.31 μg/m L.The modified electrode shows good sensitivity and repeatability. 展开更多
关键词 PHENIRAMINE sodium lauryl sulfate (SLS) Glassy carbon electrode modified with multi-walled carbon nanotubes (GCE-MWCNTs) Solubilized systems Voltammetric quantification
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Cytotoxic effects of sodium dodecyl benzene sulfonate on human keratinocytes are not associated with proinflammatory cytokines expression 被引量:5
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作者 Mu Zhanglei Liu Xiaojing Zhao Yan Zhang Jianzhong 《Chinese Medical Journal》 SCIE CAS CSCD 2014年第21期3777-3781,共5页
Background Keratinocytes play a crucial role in the biological function of skin barrier.The relationship between sodium lauryl sulfate (SLS) and keratinocytes has been studied.However,the cytotoxicity and effects of... Background Keratinocytes play a crucial role in the biological function of skin barrier.The relationship between sodium lauryl sulfate (SLS) and keratinocytes has been studied.However,the cytotoxicity and effects of sodium dodecyl benzene sulfonate (SDBS),a common detergent similar to SLS,on keratinocytes are still not known.This study aimed to investigate the effects of SDBS on cytotoxicity and expression of proinflammatory cytokines in cultured human keratinocytes.Methods This study was carried out using the keratinocytes cell line,HaCaT cells.The cytotoxicity of SDBS on HaCaT cells was evaluated with cell counting kit-8 (CCK-8) and phase-contrast microscopy.After exposure to different concentrations of SDBS,the total RNA of the HaCaT cells was extracted for evaluating the relative mRNA expression of IL-1α,IL-6,IL-8,and TNF-α by qPCR.The supernatants of cells were collected for measuring the levels of IL-6 and IL-8 by enzyme-linked immunosorbent assay (ELISA).Results SDBS at concentrations of 20 Jg/ml and over showed direct cytotoxicity and induced morphological changes of the HaCaT cells.The mRNA expressions of IL-1a,IL-6,IL-8,and TNF-α in different concentrations of SDBS at different time were comparable with that of controls.SDBS at concentrations of 5,10,and 15 μg/ml had no significant effects on IL-6 and IL-8 excretion from HaCaT cells after 24-hour exposure.Moreover,no significant effects on the IL-6 and IL-8 excretion were found after 10 and 15 μg/ml S DBS stimulations for 6,12,and 24 hours,respectively.Conclusion SDBS at higher concentrations had cytotoxicity on HaCaT cells but had no effects on the mRNA expression of IL-1α,IL-6,IL-8,and TNF-α,that was different from SLS. 展开更多
关键词 sodium dodecyl benzene sulfonate sodium lauryl sulfate KERATINOCYTES CYTOTOXICITY CYTOKINES
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Surfactant-assisted synthesis of bis(indolyl)methanes in water 被引量:3
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作者 Eskandar Kolvari Mohammad Ali Zolfigol Hoda Banary 《Chinese Chemical Letters》 SCIE CAS CSCD 2011年第11期1305-1308,共4页
An environmentally friendly synthesis method for bis(indolyl)methanes has been developed in the presence of sodium lauryl ether sulfate(SLES),electrophilic substitution reactions of indoles with aldehydes were acc... An environmentally friendly synthesis method for bis(indolyl)methanes has been developed in the presence of sodium lauryl ether sulfate(SLES),electrophilic substitution reactions of indoles with aldehydes were accomplished in water as solvent at room temperature without any Bronested or Lewis acid catalysts. 展开更多
关键词 sodium lauryl ether sulfate Bis(indolyl) methanes INDOLES ALDEHYDES
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