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Tiku DK Kumar A Sawhney S Singh VP Kumar R 《Environmental monitoring and assessment》2007,132(1-3):453-466
India has a large number of paper manufacturing units, with mills varying in size of operations and type of product, scattered
all over the length and breadth of the country. Present study deals with the survey of four different pulp and paper mills
(Mill A, Mill B, Mill C and Mill D) in India, differing in their scale of operation as well as raw material usage. Physico-chemical
characterization of wastewaters produced by different processing units like digestor house liquors, bleaching section, paper
machine backwaters, combined inlet to the ETP and outlet to ETP, for all the four mills, was conducted. Different parameters
like pH, Color, COD, BOD, percent Na, SAR, TDS and Total hardness were analyzed and compared. Highly significant differences
were thus found between all the processing units of all four mills with p values < 0.01. This evaluation showed that though these mills have effluent treatment facilities installed in their premises,
improvements are still needed to increase their efficiencies for treating the discharged wastewaters. 相似文献
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An Experimental Study on the Effect of Electrolytic Concentration on the Rate of Hydrogen Production
The effects of concentration of electrolytes on hydrogen production rate (HPR) at different applied voltages were experimentally evaluated in this research paper. The rate of hydrogen production was found to be directly proportional to the concentration of total dissolved solids and the efficiency did not change much with the change in the concentration of solids. Sensitivity analysis of the electrolysis system was also carried out to understand the relative importance of concentration of total dissolved solids (TDS) on the HPR, which can help for an optimum design. 相似文献
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Effect of cadmium on germination, amylases and rate of respiration of germinating pea seeds 总被引:10,自引:0,他引:10
Growth of embryonic axis of germinating pea seeds (Pisum sativum cv. Bonneville) was significantly inhibited by as low as 0.25 mM cadmium and the elongation of the radicle was affected more severely than that of the plumule. Total amylolytic activity, as well as activities of alpha- and beta-amylases, diminished progressively with increasing concentrations of the metal in the media. The deleterious effect on alpha-amylase persisted throughout, whereas beta-amylase activity recovered with time. The rate of respiration of seeds, measured by oxygen uptake, was markedly impeded by cadmium and the phase of rapid and linear development of respiratory activity (after 3 days of imbibition) was almost completely, suppressed in the presence of higher concentrations (1 mM) of the metal. The observed impact of cadmium on starch mobilization and on respiratory activity are discussed in relation to its adverse effects on seed germination. 相似文献
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Jaspreet Kaur Ravinder Singh Sawhney Maninder Singh 《International Journal of Green Energy》2020,17(5):309-318
ABSTRACTIn the era of developing technologies, there is always been a crisis of rising demands of energy. There is no skepticism that a lot of energy is being produced every hour for almost each and every field, but still an exploration is needed to come up with new and viable options for energy creation. The same is the objective of this paper which proposes the use of waste biomaterials in association with organic and inorganic materials as a source of energy to power up small electronic devices. In this research egg shell membrane (ESM)-based triboelectric nanogenerator (TENG) is proposed in combination with calotropis (Calo), cellulose from fruit of Bombax Ceiba (BOM), cellulose in form of tissue paper (TISU), dog hair (DH), polytetrafluoroethylene (PTFE), aluminum (Al), and copper (Cu). ESM is eco-friendly waste food by-product and available in abundance. Characterization of ESM is done by scanning electron microscope (SEM), atomic force microscope (AFM), X-ray diffraction (XRD), and Fourier transform infrared spectrophotometer (FTIR). The proposed ESM-PTFE-based TENG power up 462 green LEDs (462 × 2 V = 924 V ~ 1 kV) without rectifier and produced up to 7.61 µJ energy with 4.7 µF capacitor at 200 tapings. All the proposed ESM-based TENG combinations generate sufficient voltage to turn ON the wrist watch. This green-energy-based TENG has potential application in various fields especially related to medical devices. 相似文献
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