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  • 1
    Keywords: Food science. ; Agriculture. ; Food Science. ; Agriculture.
    Description / Table of Contents: Chapter 1: Tissue Culture of Medicinal Plants -- Chapter 2: Mentha -- Chapter 3: Amla -- Chapter 4: Belladonna --  Chapter 5: Babchi -- Chapter 6: Ashwagandha -- Chapter 7: Cowhage -- Chapter 8: Costus -- Chapter 9: Coleus -- Chapter 10: Cinchona -- Chapter 11: Patchouli -- Chapter 12: Black pepper -- Chapter 13: Wild Marigold -- Chapter 14: Vanilla -- Chapter 15: Tuberose -- Chapter 16: Thyme -- Chapter 17: Onion -- Chapter 18: Garlic -- Chapter 19: Fennel -- Chapter 20: Henbane -- Chapter 21: Holy Thistle -- Chapter 22: Guggul -- Chapter 23: Glory Lily -- Chapter 24: Aniseed -- Chapter 25: Sacred Basil --  Chapter 26: Khus -- Chapter 27: Isabgol -- Chapter 28: Kalonji -- Chapter 29: Licorice -- Chapter 30: Brahmi -- Chapter 31: Buckwheat -- Chapter 32: Tianma -- Chapter 33: Chili pepper -- Chapter 34: Kewda -- Chapter 35: Jasmine -- Chapter 36: Opium poppy -- Chapter 37: Lavender -- Chapter 38: Tulsi -- Chapter 39: Chamomile -- Chapter 40: Bhumyamalaki -- Chapter 41: Moringa -- Chapter 42: Saffron -- Chapter 43: Barbados -- Chapter 44:Tea -- Chapter 45: Celery -- Chapter 46: Dioscorea.
    Abstract: Medicinal and aromatic crops (MACs) are high-value crops since the natural products obtained from them are low-volume high-value commodities that have numerous applications in various sectors such as the food, beverage, food supplement, flavor and fragrance, perfumery and cosmetics, pharmaceutical and aromatherapy industries. In addition, the plant biomass is used in the production of teas and medical applications in traditional and also modern medicines. MACs are important mainly because they contain plant secondary metabolites such as essential oils, alkaloids, glygosides, saponins, tannins, vitamins and other bioactives. Plant secondary metabolites are differentiated from plant primary metabolites of photosynthesis and respiration since they are directly involved in growth and development of plants. Some MACs are used as spices and culinary herbs since they contain mainly essential oils, and are used as tonic to the digestive system, appetite modification and other systems and may facilitate nutrient uptake and utilization from various foods. A significant amount of MACs and their natural products have also demonstrated antimicrobial, antifungal and bactericidal activity and significant antioxidant capacity. In the past, MACs and their natural products have been used as a source for various medicines, in food and beverage production and in aroma products. Essentials of Medicinal and Aromatic Crops summarizes the current knowledge on medicinal and aromatic crops, including the agronomical practices of important MACs and their products, their beneficial effects and utilization of MAP and their products. The chapters provide a comprehensive guide to the most important and used medicinal and aromatic crops and their use in functional foods, nutraceuticals and as bioactives against various ailments, providing researchers, teachers, chemists, food scientists, agronomists and agroecologists in academia, industry and government a fully up to date singular source on this important topic. .
    Type of Medium: Online Resource
    Pages: XIV, 1227 p. , online resource.
    Edition: 1st ed. 2023.
    ISBN: 9783031354038
    DDC: 641.3
    Language: English
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  • 2
    Keywords: Food science. ; Chemistry, Organic. ; Nutrition   . ; Food Science. ; Organic Chemistry. ; Nutrition.
    Description / Table of Contents: 1. Introduction to Carotenoids -- 2. Chemistry of Carotenoids -- 3. Synthesis of Carotenoids -- 4. Apocarotenoids -- 5. Processing of carotenoids -- 6.Stability of carotenoids -- 7. Carotenoid analysis -- 8. Carotenoids Metabolism -- 9. Fortification of carotenoids -- 10. Carotenoids as antioxidants -- 11. Carotenoids as anticancer agents -- 12. Carotenoids as antidiabetic agents -- 13. Carotenoids in liver and lung diseases -- 14. Eye Sight and Carotenoids -- 15. Role of Carotenoids in Neurological Diseases -- 16. Carotenoids in women and infant health -- 17. Carotenoids roe in cardiovascular diseases -- 18. Application of Carotenoids in Cosmetics -- 19. Carotenoids as Coloring Agents -- 20. Provitamin A Carotenoids -- 21. Commercialization and marketing potential of carotenoids -- 22. Future trends and research dimensions .
    Abstract: Plants produce chemicals as part of their normal metabolic activities. These include primary metabolites found in all plants, such as sugars and fats, as well as secondary metabolites, which can have therapeutic effects in humans and be refined to produce drugs. Plants synthesize a bewildering variety of phytochemicals, but most are derivatives of a few biochemical motifs. Numerous herbal-derived substances have been evaluated for their therapeutic potential. These include alkaloids, coumarins, saponins, plant pigments and flavonoids. Flavonoids, carotenoids and anthocyanins are probably the best known of these substances due to their antioxidant properties. Carotenoids: Structure and Function in the Human Body presents comprehensive coverage of carotenoids. The text covers the scientific literature and clinical significance of this organic pigment, with an emphasis on its therapeutic potential. The authors approach carotenoids from a range of perspectives, from their structural and physicochemical properties to their distribution in nature, interaction with the human metabolism, and use as a coloring agent in various products. The intake, metabolism and secretion of anthocyanins in the human body are covered in-depth, as are the biosynthetic pathways through which these compounds are synthesized in the natural system. Factors affecting stability and extraction are listed, and health-related uses and biological activities are covered in great detail. Present and future trends in carotenoid research are also presented. This book provides a solid background in carotenoids for researchers and professionals in food science, food technology, nutrition, biology, chemistry and medical sciences.
    Type of Medium: Online Resource
    Pages: XVI, 859 p. 312 illus., 174 illus. in color. , online resource.
    Edition: 1st ed. 2021.
    ISBN: 9783030464592
    DDC: 641.3
    Language: English
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  • 3
    Keywords: Soil science. ; Agricultural ecology. ; Sustainability. ; Agricultural biotechnology. ; Soil Science. ; Agroecology. ; Sustainability. ; Agricultural Biotechnology.
    Description / Table of Contents: Chapter 1. Effects of mulches on soil physical properties i.e. porosity, aggregate stability, infiltration rates, bulk density, compaction -- Chapter 2. Mulching and soil erosion -- Chapter 3. Effects of mulching on soil chemical, biological and enzymatic activities -- Chapter 4. Mulching and soil biota -- Chapter 5. Effects of mulches on soil moisture conservations, evapotranspiration and water use efficiency -- Chapter 6. Effects of mulching on soil organic carbon dynamics -- Chapter 7. Effects of mulches on mineral fertilizer (N, P & K) management and fertilizer use efficiency -- Chapter 8. Mulching to manage drought stress -- Chapter 9. Interactions of mulches with inorganic and organic fertilizers i.e. manures, biochar, bio-fertilizers -- Chapter 10. Organic vs synthetic i.e. plastic mulches -- Chapter 11. Mulches in rain-fed vs irrigated agroecosystems -- Chapter 12. Mulching and tillage practices effects on soil and plants -- Chapter 13. Mulching, soil quality and health -- Chapter 14. Mulches and abiotic stresses i.e. heavy metals, salinity, pesticides -- Chapter 15. Effects of mulching on crop growth, productivity and yield -- Chapter 16. Mulches for management of diseases and weeds in crops -- Chapter 17. Mulching and plant physiological attributes under abiotic stress i.e. drought, salinity, heavy metal etc -- Chapter 18. Mulching and plant-water relations -- Chapter 19. Mulching and nutrient use efficiencies in plants -- Chapter 20. Agronomic and economic valuation of mulches -- Chapter 21. Effects of mulching on soil and air temperature -- Chapter 22. Effect of mulches on greenhouse gas emissions i.e. CO2, N2O and CH4 -- Chapter 23. Response of mulching in combination with inorganic fertilizer on agroecosystem -- Chapter 24. Role of mulching in global warming potential and greenhouse gas intensity.
    Abstract: This book provides insights into recent developments in the use of mulching in agroecosystems with emphasis on the major pros and cons. Increase in human population, climatic changes and agricultural intensification have put enormous pressure on soil and water resources. As a result, we are confronted with challenges to enhance nutrient and water use efficiencies and conserve soil organic matter without compromising crop yields and food security. Increasing the soil organic matter (SOM) via residue return increased nutrient availability and soil physical and biological properties. Management practices, such as straw mulching or incorporation, have significant effects on soil health. Straw addition also increases functionality related to carbon and N metabolism via increasing the microbes and thus greatly contributes to CO2 and N2O emissions. However, the co-use of organic and inorganic fertilizer reduces the N2O emission without compromising crop yield. Mulching has long been advocated to conserve soil moisture and increase the efficiency of macro- and micro-nutrients by improving soil physical, chemical, and biological properties. These effects of mulch are translated into better crop yields while improving soil health and quality in the long run. Therefore, the use of mulching techniques is on the rise in organic as well as conventional agriculture. The book is of great interest for researchers, academics, agriculture extensionists, soil and plant scientist, fertilizer industry, farmers, agro-industrial workers, farm managers, NGOs, and climate and civil society activists.
    Type of Medium: Online Resource
    Pages: VII, 404 p. 51 illus., 41 illus. in color. , online resource.
    Edition: 1st ed. 2022.
    ISBN: 9789811964107
    DDC: 631.4
    Language: English
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  • 4
  • 5
    Publication Date: 2019-08-28
    Description: One of the most chronic constraints to crop production is the grain yield reduction near the crop harvest stage by lodging worldwide. This is more prevalent in cereal crops, particularly in wheat and rice. Major factors associated with lodging involve morphological and anatomical traits along with the chemical composition of the stem. These traits have built up the remarkable relationship in wheat and rice genotypes either prone to lodging or displaying lodging resistance. In this review, we have made a comparison of our conceptual perceptions with foregoing published reports and proposed the fundamental controlling techniques that could be practiced to control the devastating effects of lodging stress. The management of lodging stress is, however, reliant on chemical, agronomical, and genetic factors that are reducing the risk of lodging threat in wheat and rice. But, still, there are many questions remain to be answered to elucidate the complex lodging phenomenon, so agronomists, breeders, physiologists, and molecular biologists require further investigation to address this challenging problem.
    Print ISSN: 1661-6596
    Electronic ISSN: 1422-0067
    Topics: Chemistry and Pharmacology
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  • 6
    Publication Date: 2018-08-22
    Description: In this study, the energy management and switching control of plug-in hybrid electric vehicles (PHEVs) in a hybrid smart micro-grid system was designed. The charging station in this research consists of real market PHEVs of different companies with different sizes. The rate of charging of PHEVs is managed via switching control to receive maximum benefits from renewable energy sources and reduce the consumption of electricity from the grid. To support the optimum utilization of sustainable power, charging time and network stability, seven scenarios were developed for different interaction among the proposed micro-grid system and PHEVs. The proposed hybrid smart micro-grid system consists of three renewable energy sources: photovoltaic (PV) array controlled via an intelligent fuzzy control maximum power point subsystem, a fuel cell stack and a microturbine set controlled by proportional integral differential/proportional integral subsystems. A hybrid energy storage system (super-capacitor, battery storage bank and hydrogen) and residential load are also included in the proposed architecture. The hybrid smart micro-grid system is checked in terms of voltage regulation, frequency deviation and total harmonic distortion (THD). It was found that these are in limits according to the international standards. The simulations verify the feasibility of the proposed system and fulfill the requirement of vehicle-to-grid and grid-to-vehicle operations in a smart grid environment.
    Electronic ISSN: 2079-9292
    Topics: Electrical Engineering, Measurement and Control Technology
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  • 7
    Publication Date: 2018-01-09
    Print ISSN: 1661-6596
    Electronic ISSN: 1422-0067
    Topics: Chemistry and Pharmacology
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  • 8
    Publication Date: 2019-03-08
    Description: Two technology opportunities, integration of renewable energy sources and the electrification of vehicles are being encouraged to reduce dependency on fossil fuels and pollution problems. Nevertheless, the huge increase of plug-in hybrid electric vehicles (PHEVs) on roads will cause an additional load in demand, especially at rush hours, and therefore, threatens the stability of existing power grids. Considering PHEV stay for several hours in the workplace, (i.e., university), this may provide an inimitable framework to charge PHEV from wind in the workplace. This paper introduces the possibility of introducing intelligent control of wind power and battery storage units as supplementary power sources for future PHEV charging demands during rush hours. The operation of the proposed algorithm is based on the priority levels of PHEVs charging, and fluctuations in DC link voltage levels due to the variation in wind speed. The priorities of PHEVs charging are developed according to their power requirements, maximum rating of distribution transformer and park duration of PHEVs in the workplace during wind speed. Various non-isolated proportional–integral controllers and improved intelligent fuzzy control are used to keep a minimum critical DC link voltage to permit the power conditioning system to operate a charging station uninterruptedly, even at low wind speed. The improved intelligent fuzzy controller also contributes to minimizing the stress on the DC bus and ensures quality output power. The performance of the proposed charging station is verified for the real PHEV under real-world record of wind speed. All the energy sources, electric charging station and their controllers are designed in MATLAB/Simulink. Finally, the feasibility of proposed charging station is checked experimentally in the laboratory.
    Electronic ISSN: 1996-1073
    Topics: Energy, Environment Protection, Nuclear Power Engineering
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  • 9
    Publication Date: 2020-01-01
    Print ISSN: 0045-6535
    Electronic ISSN: 1879-1298
    Topics: Energy, Environment Protection, Nuclear Power Engineering
    Published by Elsevier
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  • 10
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