There is a real problem when adding micro elements to the soil as a result of fixation, sedimentation, washing or toxicity, and thus economic loss. The plant needs micro elements in very small quantities that do not burn the leaves or cause poisoning to plants, including iron, zinc and boron, as they are essential elements for growth and completing the plant's life cycle, and increase the plant's resistance to diseases and insects, activate enzymes, and form the chlorophyll molecule, in addition to their role in oxidation and reduction processes and vital processes. The use of fertilizers with their modern technology has made the process of activating seeds or foliar nutrition a matter of interest to researchers as a complementary process to adding fertilizers through the soil. Micronutrients contribute to the manifestation of the potential energy for the growth and yield of sunflowers, including iron, zinc and boron, and their role in improving germination, seedling growth, field establishment, photosynthesis, fertility, crop production and quality, taking into account the method of adding them, whether through soil addition, foliar nutrition or pre-treatment of seeds. The seed priming technique by soaking in solutions of micronutrient elements or adding them by spraying the vegetative part of the plant is characterized by overcoming the effects of the soil on the availability and absorption of these nutrients, and they are efficient and effective methods of plant nutrition. There is a practical and knowledge gap about the low soil stock of these nutrients, and it has become clear that they can be added in a single combination by seed priming or the vegetative growth stage to bridge this gap and enhance their role in regulating the physiological and vital processes that lead to ensuring increased growth, production and quality and obtaining seeds with high vitality and vigor. It can be concluded that the environmental conditions for growing sunflowers in Iraq are suitable and reveal the possibility of expanding its cultivation, especially when avoiding the weakness, delay and heterogeneity of germination resulting from low seed vitality, environmental conditions accompanying crop cultivation, nutritional deficiency and others through managing the mother plant.
KE Sharquie, AA Noaimi, S Al-Hashimy, IGF Al-Tereihi, The Iraqi Postgraduate Medical Journal, 2013 - Cited by 5
KA Sharquie, AA Al-Nuaimy, Annals of Saudi Medicine, 2002 - Cited by 48
In this work, composite materials were prepared by mixing different concentrations of ferrites with polyacrylonitrile (PAN) polymer. Using the electrospinning technique, these composites were deposited on a p-type silicon wafer. The prepared samples demonstrated nanofibers in both pure PAN polymers and their composites with ferrite. Prior to examining the humidity sensing effectiveness with a percentage of relative humidity at a frequency of 10 kHz, based on ambient temperature and a relative humidity range of 50–100%, the composite nanofibers demonstrated stronger humidity sensing compared to the pure PAN nanofibers, which demonstrated a powerful resistance response. More precisely, the PAN@ferrite nanocomposite showed a broad adsorption
... Show MoreNanoparticles (NPs) have unique capabilities that make them an eye-opener opportunity for the upstream oil industry. Their nano-size allows them to flow within reservoir rocks without the fear of retention between micro-sized pores. Incorporating NPs with drilling and completion fluids has proved to be an effective additive that improves various properties such as mud rheology, filtration, thermal conductivity, and wellbore stability. However, the biodegradability of drilling fluid chemicals is becoming a global issue as the discharged wetted cuttings raise toxicity concerns and environmental hazards. Therefore, it is urged to utilize chemicals that tend to break down and susceptible to biodegradation. This research presents the pra
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Iron is one of the abundant elements on earth that is an essential element for humans and may be a troublesome element in water supplies. In this research an AAN model was developed to predict iron concentrations in the location of Al- Wahda water treatment plant in Baghdad city by water quality assessment of iron concentrations at seven WTPs up stream Tigris River. SPSS software was used to build the ANN model. The input data were iron concentrations in the raw water for the period 2004-2011. The results indicated the best model predicted Iron concentrations at Al-Wahda WTP with a coefficient of determination 0.9142. The model used one hidden layer with two nodes and the testing error was 0.834. The ANN model coul
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