نتایج جستجو برای: D-nZVi
تعداد نتایج: 577922 فیلتر نتایج به سال:
در سال های اخیراز نانوذره های آهن صفر ظرفیتی(nzvi) برای پاک سازی آبهای زیر زمینی استفاده شده است؛ اما به دلیل برخی از ویژگی ها، از جمله ناپایداری و تجمع یافتگی، بازیابی و صاف کردن آن ها، استفاده از آنها با محدودیت هایی رو به رو است. استفاده از کانی ها به عنوان بستر و پوشش آنها به وسیله نانوذره ها به عنوان راه حلی برای غلبه بر این محدودیت ها مطرح می باشد. در این پژوهش، nzvi بر رو...
در سال های اخیر آهن صفر ظرفیتی (zvi)، کاربرد زیادی در حذف آلاینده های آلی و غیر آلی، از منابع آلوده ی آبی داشته است. به دلیل سطح ویژ ه ی بالا و خصوصیات جذب و احیای zvi در ابعاد نانومتری، این مواد تمایل بسیاری جهت حذف یون های سمی محلول در آب از خود نشان می دهند. در این پایان نامه نانوذرات آهن صفر ظرفیتی زنجیر مانند (nzvi) با ابعاد تقریبی 100 نانومتر، بوسیله ی افزودن قطره ای محلول بوروهیدرید سدی...
1,2-Dichloroethane (1,2-DCA) is a chlorinated solvent classified as a probable human carcinogen. Due to its extensive use in industrial applications, widespread contamination, and recalcitrance toward abiotic dechlorination, 1,2-DCA remains a challenging compound for the remediation community. Over the past decade, nano zerovalent iron (nZVI) has been efficiently used to treat many of the chlor...
Nano-scale zero valent iron (nZVI) has received significant attention because of its potential to rapidly reduce a number of priority source zone contaminants. In order to effectively deliver nZVI to the source zone the nZVI particles must be stable. Previous laboratory studies have demonstrated the mobility of polymer modified suspensions of low concentration nZVI. More recently studies have s...
Direct injection of reactive nanoscale zerovalent iron particles (NZVI) is considered to be a promising approach for remediation of aquifers contaminated by chlorinated organic pollutants. In this study we show that the extent of sulfidation of NZVI enhances the rate of dechlorination of trichloroethylene (TCE) compared to that by unamended NZVI, and the enhancement depends on the Fe/S molar ra...
The toxic effect of nanoscale zero valent iron (nZVI) particles on bacteria from different growth phases was studied. Four bacterial strains namely Escherichia coli strains JM109 and BW25113, and Pseudomonas putida strains KT2440 and F1 were experimented. The growth curves of these strains were determined. Bacterial cells were harvested based on the predetermined time points, and exposed to nZV...
Nanoscale Zero Valent Iron (nZVI) represents a promising material for subsurface water remediation technology. However, dry, bare nZVI particles are highly reactive, being pyrophoric when they are in contact with air. The current trends of nZVI manufacturing lead to the surface passivation of dry nZVI particles with a thin oxide layer, which entails a decrease in their reactivity. In this work ...
The presence of organic contaminants in industrial effluents is an environmental concern of increasing global importance. One innovative technology for treating contaminated industrial effluents is nanoscale zero-valent iron supported on biochar (nZVI/BC). Based on Transmission Electron Microscopy, X-Ray Diffraction, and Brunauer-Emmett-Teller characterizations, the nZVI was well dispersed on t...
BACKGROUND In a world of nanotechnology, the first concern is the potential environmental impact of nanoparticles. An efficient way to estimate nanotoxicity is to monitor the responses of bacteria exposed to these particles. OBJECTIVES The current study explored the antimicrobial properties of nZVI (zero-valent Iron nanoparticles) on the Gram-negative bacterial systems Erwinia amylovora, Xant...
Because of its strong pollutant degradation ability, nanoscale zerovalent iron (NZVI) has been introduced to soils and groundwater for remediation purposes, but its impacts on plants are still not very clear. In this work, the effects of low concentration (10-320 μmol/L) NZVI particles on seed germination and growth of peanut plants were evaluated. The exposure of peanut seeds to NZVI at all th...
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