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101.
Farooq Muhammad Asim Aquib Md Khan Daulat Haleem Ghayas Sana Ahsan Anam Ijaz Muhammad Banerjee Parikshit Khan Maqsood Ahmed Ahmad Muhammad Masood Wang Bo 《Environmental Chemistry Letters》2019,17(4):1565-1583
Environmental Chemistry Letters - Research has recently focused on combinational therapy using nanocarriers to overcome the obstacles associated with conventional therapy of lung cancer. The... 相似文献
102.
Khan Irfan Saito Hiroshi Ali Ahmad Salah Zhang Bofan Kubuki Shiro 《Journal of Material Cycles and Waste Management》2021,23(6):2266-2277
Journal of Material Cycles and Waste Management - The relationship between local structure and visible-light-activated photocatalytic ability of glass–ceramics prepared from Municipal Solid... 相似文献
103.
Abubakar Ahmed Ishak Mohd Yusoff Makmom Abdullah Ahmad 《Environmental science and pollution research international》2021,28(39):54339-54361
Environmental Science and Pollution Research - The interaction and the interplay of climate change with oil palm production in the Southeast Asia region are of serious concern. This particularly... 相似文献
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105.
Malik Lateef Ahmad Bashir Arshid Qureashi Aaliya Pandith Altaf Hussain 《Environmental Chemistry Letters》2019,17(4):1495-1521
Environmental Chemistry Letters - In aqueous systems, heavy metal ions, when present in excess than permissible limits, are dangerous for human beings and aquatic life. Heavy metals cannot be... 相似文献
106.
Incipient deposition of sediment in rigid boundary open channels 总被引:1,自引:0,他引:1
Mir Jafar Sadegh Safari Hafzullah Aksoy Mirali Mohammadi 《Environmental Fluid Mechanics》2015,15(5):1053-1068
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Ahmad R. Shouman 《Journal of Loss Prevention in the Process Industries》1998,11(6):383-390
A very simple solution to the thermal explosion problem for one-dimensional solids is presented. The solution produces analytical expressions for the criticality condition. Two different solutions are used. One solution gives higher answers than those known from exact solutions and the second solution gives lower answers. This allows bracketing the expected answer with a determined tolerance. The results obtained compare quite favorably with those obtained from known exact numerical solutions. This allows the utilization of the present method for many a practical problem with an acceptable tolerances. 相似文献
110.
Chromium being one of the major toxic pollutants is discharged from electroplating and chrome tanning processes and is also found in the effluents of dyes,paint pigments,manufacturing units etc.Chromium exists in aqueous systems in both trivalent(Cr^3 )and hexavalent (Cr^6 )forms.The hexavalent form is carcinogenic and toxic to aquatic life,whereas Cr^3 is however comparatively less toxic.This study was undertaken to investigate the total chromium removal from industial effluents by chemical means in order to achieve the Pakistan NEQS level of 1 mg/L by the methods of reduction and precipitation.The study was conducted in four phase Ⅰ,the optimum pH and cost effective reducing agent among the four popular commercial chemicals was selected.As a result,pH of 2 was found to be most suitable and sodium meta bisulfate was found to be the most cost effective reducing agent respectively.Phase Ⅱ showed that lower dose of sodium meta hisulfate was sufficient to obtain 100% efficiency in reducing Cr^6 to Cr^3 ,and it was noted that reaction time had no significance in the whole process.A design curve for reduction process was established which can act as a tool for treatment of industrial effluents.Phase Ⅲ studies indicated the best pH was 8.5 for precipitation of Cr^3 to chromium hydroxide by using lime.An efficiency of 100% was achievable and a settling time of 30 minutes produced clear effluent.Finally in Phase Ⅳ actual waste samples from chrome tanning and electroplating industries,when precipitated at pH of 12 gave 100% efficiency at a settling time of 30 minutes and confirmed that chemical means of reduction and precipitation is a feasible and viable solution for treating chromium wastes from industries. 相似文献