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Journal articles on the topic 'Melon seed shells'

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1

Ogu, Gideon I., and Paul I. Orjiakor. "Microbiological and Nutritional Qualities of Fermented Melon Seed Shells." International Journal of Life Sciences (IJLS) 1, no. 2 (2017): 1. http://dx.doi.org/10.21744/ijls.v1i2.27.

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In Nigerian communities, melons seed shells are generated as waste after utilization of the pulp for economic and domestic purposes. In an attempt to derive wealth from these wastes, we decided to investigate the microbial and nutritional qualities of spontaneously fermented melon seed shells...
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2

Razis, Ahmad Faizal Abdull, Muhammed Muzammel Shehzad, Sunusi Usman, et al. "Seasonal Variation in Aflatoxin Levels in Edible Seeds, Estimation of Its Dietary Intake and Vitamin E Levels in Southern Areas of Punjab, Pakistan." International Journal of Environmental Research and Public Health 17, no. 23 (2020): 8964. http://dx.doi.org/10.3390/ijerph17238964.

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A total of 779 samples of edible nuts (melon seeds, watermelon seeds, pumpkin seeds, and cantaloupe seeds) from Southern Punjab (Pakistan), were collected during the summer and the winter seasons. The natural occurrence of aflatoxins (AFs) and vitamin E (tocopherols) levels were investigated using HPLC. The results have shown that 180 (43.4%) of samples from the winter season and 122 (33.4%) samples from the summer season were found positive for AFs. Elevated average levels of total AFs (20.9 ± 3.10 μg/kg, dry weight) were observed in watermelon seeds without shell, and the lowest average amou
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3

Christian Alalor, Joshua Ilebe та Edith Ejenavwo. "Characterization of carboxymethyl cellulose derivatized from melon seed shells α-cellulose". World Journal of Biology Pharmacy and Health Sciences 21, № 3 (2025): 572–82. https://doi.org/10.30574/wjbphs.2025.21.3.0331.

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This study focuses on converting melon seed shells, which are typically discarded as waste, into carboxymethyl cellulose (CMC), a valuable cellulose derivative with a wide range of industrial applications. By repurposing agricultural waste, specifically melon seed shells, this process adds value to an otherwise unused material. The dried and ground melon seed shells were initially soaked in hot water and subsequently treated with a 20% w/v sodium hydroxide (NaOH) solution at 90–100°C for 2 hours. The isolated cellulose fiber was transformed into carboxymethyl cellulose through alkalization and
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4

Oluwabukola, Belinda Aturu, Olanrewaju Olaoye Joshua, Gbabo Agidi, Mohammed Gana Ibrahim, Efomah Andrew Ndudi, and Tizhe Liberty Jacob. "Effect of shelling speed, moisture content and number of beaters on the cleaning and recovery efficiency of a mechanized centrifugal Melon shelling machine." World Journal of Advanced Research and Reviews 10, no. 3 (2021): 239–45. https://doi.org/10.5281/zenodo.5067436.

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A response surface methodology (RSM) has been utilized for investigating the effects of the speed of shelling, melon seed moisture content and the number of beaters of a developed mechanized centrifugal melon shelling and cleaning machine. The machine shells the melon and then cleans the shelled seed from the shells and other impurities. The experiment was based on a central composite rotatable design (CCRD). The results of the experiments revealed that the highest shelling efficiency of 88.5% was obtained from a combination of a speed of 2300 rpm, moisture content of 15% (w.b) and 20 beaters,
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Oluwabukola Belinda Aturu, Joshua Olanrewaju Olaoye, Agidi Gbabo, Ibrahim Mohammed Gana, Ndudi Efomah Andrew, and Jacob Tizhe Liberty. "Effect of shelling speed, moisture content and number of beaters on the cleaning and recovery efficiency of a mechanized centrifugal Melon shelling machine." World Journal of Advanced Research and Reviews 10, no. 3 (2021): 239–45. http://dx.doi.org/10.30574/wjarr.2021.10.3.0229.

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A response surface methodology (RSM) has been utilized for investigating the effects of the speed of shelling, melon seed moisture content and the number of beaters of a developed mechanized centrifugal melon shelling and cleaning machine. The machine shells the melon and then cleans the shelled seed from the shells and other impurities. The experiment was based on a central composite rotatable design (CCRD). The results of the experiments revealed that the highest shelling efficiency of 88.5% was obtained from a combination of a speed of 2300 rpm, moisture content of 15% (w.b) and 20 beaters,
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6

Ogede, L.O., C.M. Ejimadu, and F.E. Okieimen. "Chemical and Textural Properties of Melon Seed Shell-Derived Biochar Relevant to their Application in the Remediation of Contaminated Soil." Nigerian Research Journal of Engineering and Environmental Sciences 9, no. 2 (2024): 681–88. https://doi.org/10.5281/zenodo.14566003.

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<em>In this study, biochar samples obtained by pyrolysis of melon seed shells at different temperatures (300 &ndash; 450 <sup>o</sup>C) were characterized for their potential as amendment materials in the remediation of contaminated soil. It was found that the marked decrease in the yield of the biochar (56.60 &ndash; 29.70%) with increase in pyrolysis temperature was associated with an increase of about 2.0 pH units in the pH of the biochar samples. Surface morphology and Brunauer Emmett Teller (BET) particle analysis of the samples show that all the biochar samples are microporous. The BET s
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7

Robert, Ubong W., Sunday E. Etuk, Okechukwu E. Agbasi, et al. "Valorisation of Waste Carton Paper, Melon Seed Husks, and Groundnut Shells to Thermal Insulation Panels for Structural Applications." Polytechnica 4, no. 2 (2021): 97–106. http://dx.doi.org/10.1007/s41050-021-00034-w.

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8

Cao, Tingting, Jinke Cheng, Jun Ma, et al. "Facile Synthesis of Microporous Carbons from Biomass Waste as High Performance Supports for Dehydrogenation of Formic Acid." Nanomaterials 11, no. 11 (2021): 3028. http://dx.doi.org/10.3390/nano11113028.

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Formic acid (FA) is found to be a potential candidate for the storage of hydrogen. For dehydrogenation of FA, the supports of our catalysts were acquired by conducting ZnCl2 treatment and carbonation for biomass waste. The texture and surface properties significantly affected the size and dispersion of Pd and its interaction with the support so as to cause the superior catalytic performance of catalysts. Microporous carbon obtained by carbonization of ZnCl2 activated peanut shells (CPS-ZnCl2) possessing surface areas of 629 m2·g−1 and a micropore rate of 73.5%. For ZnCl2 activated melon seed (
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9

Shaikhiev, I. G., S. V. Sverguzova, K. I. Shaikhieva, A. V. Svyatchenko, and N. A. Miroshnichenko. "WASTE FROM THE PROCESSING OF MELONS AND GOURDS AS REAGENTS FOR REMOVING POLLUTANTS FROM AQUATIC ENVIRONMENTS." Construction economic and environmental management, no. 3 (2021): 129–47. http://dx.doi.org/10.37279/2519-4453-2020-3-129-147.

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The literature data on the use of biomass and waste from the processing of melons (pumpkin, watermelon, melon, cucumber) as sorption materials for various pollutants removing from aquatic environments are summarized. It was determined that dried shells of melons and gourds are effective sorption materials for the extraction of heavy metal ions and dyes. The seeds of large fruits of melons (pumpkin, watermelon, melon), as well as their shells, also showed good sorption performance for heavy metal ions and dyes. It was revealed that most of the isotherms of the adsorption of pollutants on the pr
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10

Altuntaş, Özlem, and İbrahim Kutalmış Kutsal. "Bitki Büyümesini Arttırıcı Bazı Rhizobakteri Türlerinin Sulu ve Susuz Yetiştirilen Kavunlarda Meyve Kalitesi Üzerine Etkileri." Turkish Journal of Agriculture - Food Science and Technology 10, sp1 (2022): 2765–71. http://dx.doi.org/10.24925/turjaf.v10isp1.2765-2771.5730.

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It has been determined in many research results that plant growth promoting rhizobacteria (PGPR) affect yield, plant growth and fruit quality and play an important role. However, the use of biostimulants in agricultural production in Malatya is negligible. In order to contribute to the region's producers, a research was planned directly in the producer's garden in the Malatya/Arguvan region, which is an important melon production center. A trial was established with Arguvan (Narmikan) melon type and Kırkağaç 637 melon cultivars, which are the most grown local cultivars in the summer period of
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11

Okokon, F. B., Mathew A. Oduh, and N. A. Akpan. "Investigation of Force Required to Crack Melon Seed Shell by Static Loading." Advanced Materials Research 18-19 (June 2007): 187–92. http://dx.doi.org/10.4028/www.scientific.net/amr.18-19.187.

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The force required to shell melon seed by static loading techniques was investigated with an experimental rig machine. Melon seeds were categorized based on their moisture content into 4 sub-samples by soaking. Ten seeds from each sample were randomly selected and loaded in three different loading orientations x, y and z. The mean force required to crack the seeds was determined. Results showed variations in force, while analysis of variance showed significant difference in the loading orientation and no significant difference in the interaction of moisture content, at 95% level of confidence.
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12

Oloyede, Christopher Tunji, Simeon Olatayo Jekayinfa, Abass Olanrewaju Alade, et al. "Synthesis of Biobased Composite Heterogeneous Catalyst for Biodiesel Production Using Simplex Lattice Design Mixture: Optimization Process by Taguchi Method." Energies 16, no. 5 (2023): 2197. http://dx.doi.org/10.3390/en16052197.

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The use of biobased heterogeneous catalysts made from agricultural waste for producing biodiesel has gained attention for its potential to create a sustainable and low-cost process. The blending of two or more biomass residues to create more viable biobased catalysts is still in its early stages. In this study, a Biobased Composite Heterogeneous Catalyst (CHC) was made by blending the shells of periwinkle (PWS), melon seed-husk (MSH), and locust bean pod-husk (LBP) at a mixing ratio of 67:17:17 using Simplex Lattice Design Mixture, that was then calcined for 4 h at 800 °C. The chemical, struct
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13

Umeghalu, I.C.E., J.I. Ubah, D.C. Anizoba, et al. "Design and Fabrication of Melon Shelling and Separating Machine." International Journal of Engineering Research & Science (IJOER) 10, no. 5 (2024): 19–30. https://doi.org/10.5281/zenodo.11453048.

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<strong><em>Abstract</em></strong><strong>&mdash;</strong> <em>Although there are several designs on melon shelling machines, it is observed that these available designs in the market are relatively more sophisticated and expensive hence they are not affordable to majority of local farmers. The aim of this work is to design and fabricate cheap and affordable melon shelling and separating machine which can effectively shell all the species of melon through electric powered operation, with little or no technical skill required for its operation and at a cheap affordable price using local availab
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14

Ahmed, Awwal, Eyitayo Amos Afolabi, Mohammed Umar Garba, Umaru Musa, Mohammed Alhassan, and Kariim Ishaq. "Effect of particle size on thermal decomposition and devolatilization kinetics of melon seed shell." Chemical Engineering Communications 206, no. 9 (2019): 1228–40. http://dx.doi.org/10.1080/00986445.2018.1555530.

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15

Etoamaihe, Ukachi Julius, and Elyon Ezeh. "Determination of selected physical properties of three varieties of shelled and unshelled melon seeds." Global Journal of Engineering and Technology Advances 4, no. 1 (2020): 001–7. https://doi.org/10.5281/zenodo.4467466.

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The physical properties of shelled and unshelled melon seeds for three different varieties:&nbsp;<em>C. cucurbita, C. vulgaris and C. lanatus&nbsp;</em>were investigated at the moisture contents of 5.3, 5.1 and 6.0% dry basis respectively. The axial dimension, mean diameter, sphericity, surface area, porosity, true and bulk density, angle of repose, coefficient of friction of the three varieties of melon seeds were determined using standard methods. The results obtained from the study revealed that length, width, thickness, arithmetic and geometric diameter, sphericity, surface area and 1000 u
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16

Ogundare, Segun A., Vashen Moodley, James F. Amaku, et al. "Nanocrystalline cellulose derived from melon seed shell (Citrullus colocynthis L.) for reduction and stabilization of silver nanoparticles: Synthesis and catalytic activity." Carbohydrate Polymer Technologies and Applications 2 (December 2021): 100134. http://dx.doi.org/10.1016/j.carpta.2021.100134.

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17

Rahimdokht, Mehdi, Elmira Pajootan, and Mokhtar Arami. "Application of melon seed shell as a natural low-cost adsorbent for the removal of Methylene Blue from dye-bearing wastewaters: optimization, isotherm, kinetic, and thermodynamic." Desalination and Water Treatment 57, no. 38 (2015): 18049–61. http://dx.doi.org/10.1080/19443994.2015.1086698.

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18

"Using Cucurbits By-Products as Reagents for Disposal of Pollutants from Water Environments (a Literature Review)." Biointerface Research in Applied Chemistry 11, no. 5 (2021): 12689–705. http://dx.doi.org/10.33263/briac115.1268912705.

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The paper summarizes data from literature sources using the waste of processing cucurbits (pumpkin, watermelon, melon, cucumber) as a sorption material to remove various pollutants from water environments. It states that cucurbits' shells are effective sorption materials for extracting heavy metal ions and dyes. Seeds of large cucurbits fruits (pumpkin, watermelon, melon) and seed shells also showed good sorption performance for heavy metal ions and dyes. It was found that most of the pollutants adsorption isotherms on cucurbits by-products are most accurately described by the Langmuir model,
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19

Gill, Harsimran Kaur, Gaurav Goyal, and Jennifer L. Gillett-Kaufman. "Seedcorn maggot, Delia platura (Meigen) (Insecta: Diptera: Anthomyiidae)." EDIS 2013, no. 6 (2013). http://dx.doi.org/10.32473/edis-in1002-2013.

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The seedcorn maggot is a polyphagous pest, affecting more than 40 different host plants. It is an important pest of germinating soybeans and corn, and also attacks a wide range of horticultural crops including beans, peas, cucumber, melon, onion, pepper, potato, and other vegetables. Seedcorn maggots damage newly planted seeds by feeding on seed contents, often leaving empty seed shells and preventing germination. Although usually no more than 2% of the seedlings get infested by this insect, 30% to 60% plant loss may occur in the field. This 5-page fact sheet was written by Harsimran Kaur Gill
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20

Okwundu, Onyeka Stanislaus, Chimezie John Chiama, Chinedu James Chiama, et al. "The untapped industrial crop, Cucumeropsis mannii: dry oil extraction, characterization and potential use as biodiesel feedstock and heavy metal sink." Sustainable Environment Research 31, no. 1 (2021). http://dx.doi.org/10.1186/s42834-021-00082-y.

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AbstractDue to the quest to meet a basic need – food, vast potentials of numerous African crops have remained unexplored. Cucumeropsis mannii, an invaluable West African melon, is cultivated for its edible proteinous oil-rich seeds. Here, we report for the first time, its potential use for biodiesel production over an uncommon heterogeneous nanocatalyst, and for wastewater treatment. An identification of the untapped species’ seed was made, for disambiguation. Oil (CMO) was expressed from the C. mannii seeds (CMS) and characterized. The CMS was found composed of 53.5% lipids, while 46.1% of th
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21

Esenamunjor, Temidayo C., and Ugwu H. Ubabuike. "Performance Evaluation of a Melon Shelling Machine with Different Power Sources." FUOYE Journal of Engineering and Technology 6, no. 2 (2021). http://dx.doi.org/10.46792/fuoyejet.v6i2.607.

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Performance evaluation of an electric motor and a fuel-engine powered machine used for shelling melon seeds was performed in this study to determine the effects of shelling speed and moisture content on machine productivity. The melon seeds used for the evaluation of the existing melon shelling machine were sourced locally from Umungasi market in Aba, Abia state, Nigeria. The unshelled melon seeds as used were weighed (25g each), sprinkled with water and partially dried with natural air for 25 minutes. This enabled the skin coat became slightly softened and the cotyledon easily detached from t
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22

Alimukhamedov Saidmurat Sultanovich, Kholdorov Mirkhalil Urazbekovich, and Akhmedova Munisa Abdumajitovna. "ANALYSIS OF THE OUTER PART MICROFLORA OF THE SEEDS OF MELON CROPS AND THE EFFECT OF SEED TREATMENT PREPARATIONS." EPRA International Journal of Research & Development (IJRD), September 17, 2020, 138–40. http://dx.doi.org/10.36713/epra5138.

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This article reveals the results of experiments on microbiological analysis of harmful microorganisms present in the outer shell of melon and watermelon seeds in order to select seed treatment preparations. In the republic, sowing of seeds of vegetable and melon crops after having the treatment with particular preparations in the open field is not allowed. Because of this, seeds produced in our conditions are planted without chemical treatment, and the spread of the disease in the cultivated plants is leading to a sharp decline in productivity. KEYWORDS: melon, watremelon, seed, microflora, se
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23

Adeleke M.B and Orelaja O.A. "AN IMPROVED DESIGN AND CONSTRUCTION WITH PERFORMANCE EVALUATION OF A MELON SEEDS SHELLER WITH A CONTINUOUS SEPARATOR." EPRA International Journal of Research & Development (IJRD), November 30, 2020, 391–401. http://dx.doi.org/10.36713/epra5771.

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An improved designed and constructed melon seed sheller with continuous separator comprises of electric motors, hopper, shelling, and separator units for separating melon seed from its shell, was developed. This machine which was fabricated using locally sourced standard materials by eliminating the drudgery involved in the melon kernel separation. As we know that melon seed is a vital oil seed that is mostly used in food industries. Shelling of this crop is a problem due to the stress and time that is involved, prior to its usage. In order to address these challenges associated with shelling
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24

Akusu, O. M., and B. S. Chibor. "Effect of Shelling Methods on the Shelling Efficiency, Product Quality, Functional and Sensory Properties of Melon (Egusi) Seeds sold in Aba, Abia State, Nigeria." European Journal of Agriculture and Food Sciences 2, no. 1 (2020). http://dx.doi.org/10.24018/ejfood.2020.2.1.20.

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Local Aba made melon shelling machine type I (sample B) and improved Aba made melon shelling machine type 2 (sample C) were used to shell melon seeds and compared with hand shelling method (sample A). The shelling efficiency, quality of shelled melon seeds, functional properties of the seed flours and sensory properties of egusi soups prepared from the melon seeds were determined. The results revealed that sample A gave the highest shelling efficiency of 92.25%, followed by sample C (90.42%) and the least was sample B (80.85%). For the quality of shelled melon seeds, sample A gave the highest
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25

МИРЗОЗОДА, Г. Х., В. В. ДЕРЕВЕНКО, and П. М. ПУГАЧЕВ. "INFLUENCE OF PARAMETERS OF PREPARATION OF MELON SEEDS ON THE QUALITY OF OIL AND CAKE IN A SINGLE PRESSING ON A SCREW PRESS." Известия вузов. Пищевая технология, no. 4(370) (September 25, 2019). http://dx.doi.org/10.26297/0579-3009.2019.4.17.

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Исследована зависимость выхода масла, массовой доли сырого протеина и остаточной масличности в жмыхе от содержания плодовой оболочки в перерабатываемом материале. Объектом исследования была ядровая фракция семян дыни сорта Амири, выращенной в Таджикистане. Предварительно семена дыни масличностью 35,3 обрабатывали ИКоблучением с нагревом до 90С. Затем их обрушивали однократным ударом в модернизированной центробежной рушке. Из полученной рушанки готовили образцы модельной смеси ядровой фракции семян дыни с содержанием плодовой оболочки 8, 14, 20 и 25. Перед отжимом масла каждый образец ядровой ф
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26

Olorunmota, R. T., T. I. Ofuya, J. E. Idoko, and B. A. Ogundeji. "Comparative Effects of Rice and Melon Wastes on Sitophillus Zeamais, Storage Pest of Maize Grains in Nigeria." Journal of Experimental Agriculture International, April 7, 2021, 114–23. http://dx.doi.org/10.9734/jeai/2021/v43i130638.

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World’s calories supply from maize accounts for 20% but global postharvest grain loss caused by insect pests was estimated to be 10%. Control is mostly by synthetic insecticides with consequences such as insect resurgence and resistance and negative effect on non- target organisms. Maize grain losses to weevils are so enormous that effective local solution has to be sought. Thus this research aimed at assessing the effectiveness of powders and ash of rice husk and melon shell in controlling Sitophillus zeamais (Mots) in stored maize. Four treatments, Rice husk powder (RHP), Rice husk ash (RHA)
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27

Ajenu, C. O., M. E. Ukhun, C. Imoisi, E. E. Imhontu, L. E. Irede, and U. R. Orji. "Characterization and Stability Studies of Egusi Melon Seed Oil (Citrullus colocynthis L.)." Journal of Chemical Society of Nigeria 46, no. 2 (2021). http://dx.doi.org/10.46602/jcsn.v46i2.598.

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The physical value of oil depends upon its chemical composition, even today these values play a vital role while using different oil for industrial products and also, despite the vast nutritional and medicinal significance of egusi melon, there are little details on the shell life and stability of its oil over time. Therefore, the influence of time and temperature on melon seed oil was investigated at temperatures of 0oC and 30oC at different weeks to ascertain its physicochemical value and storage stability. For week zero, at 0oC and ambient temperature (30oC), the result revealed iodine valu
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28

Ajayi, V. A., and A. Lateef. "Biotechnological valorization of agrowastes for circular bioeconomy: melon seed shell, groundnut shell and groundnut peel." Cleaner and Circular Bioeconomy, January 2023, 100039. http://dx.doi.org/10.1016/j.clcb.2023.100039.

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29

Gao, Guoming, Xun Hu, Qingqing Wang, et al. "Functionalization of the biochar from melon seed shell via introducing nitrogen species." Journal of Environmental Chemical Engineering, March 2023, 109781. http://dx.doi.org/10.1016/j.jece.2023.109781.

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30

Hasdemir, İbrahim Metin, Emre Yılmazoğlu, Senem Güngör, and Belma Hasdemir. "Adsorption of acetic acid onto activated carbons produced from hazelnut shell, orange peel, and melon seeds." Applied Water Science 12, no. 12 (2022). http://dx.doi.org/10.1007/s13201-022-01797-y.

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AbstractIn this study, hazelnut shells, orange peel, and melon seeds were selected as raw materials in the preparation of activated carbon. Various activators at different concentrations under two activation temperatures of 300 °C and 500 °C were utilized. All produced adsorbents and a commercial activated carbon as a reference were used for the adsorption of acetic acid from its aqueous solutions in the various initial concentrations. The effect of the amounts of adsorbents was also studied. Removal efficiencies (Re%) and adsorption capacities (Qe) were experimentally determined. Langmuir, Fr
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31

Liu, Yan, Haiqin Ren, Zhili Gong, et al. "Melon seed shell synthesis N, S-carbon quantum dots as ultra-high performance corrosion inhibitors for copper in 0.5 M H2SO4." Journal of Industrial and Engineering Chemistry, April 2024. http://dx.doi.org/10.1016/j.jiec.2024.04.019.

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32

Bykovskii, Yu A., A.  Yanchenko, M.  Azopkov, V.  Golubovich, S.  Fefelova та R.  Bagrov. "Перспективные препараты для инкрустирования семян столовых корнеплодов". Kartofel` i ovoshi, № 5 (7 травня 2018). http://dx.doi.org/10.25630/pav.2018.5.17697.

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Цель исследований: оценка эффективности инкрустирования семян столовых корнеплодов рядом новых препаратов, его влияния на посевные качества: энергию прорастания, лабораторную всхожесть, полевую всхожесть. Опыты проводили лабораторных и полевых условиях в Быковском расширении Москворецкой поймы (Раменский район Московской области) по стандартным методикам: ГОСТ 120036–85 «Семена сельскохозяйственных культур. Правила приемки и методы отбора проб», ГОСТ 12038–84 «Семена сельскохозяйственных культур. Методы определения всхожести». Посевные качества оценивали по ГОСТ 32917–2014 «Семена овощных куль
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Chen, Xutao, Qing Liu, Guoliang Meng, et al. "First Report of White Mucus Disease Caused by Fuligo gyrosa on Agrocybe chaxingu in China." Plant Disease, March 27, 2024. http://dx.doi.org/10.1094/pdis-09-23-1867-pdn.

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Agrocybe chaxingu is an edible and medicinal mushroom widely cultivated in China (Liu et al. 2021). Agrocybe chaxingu is extremely well-liked for the unique flavor and nutritional value. In May 2021, a serious white mucus disease was observed in the farms of A. chaxingu in the Ganxian district of Ganzhou City, Jiangxi Province, China, with an approximate disease incidence of 20%. In the years of 2022 and 2023, the same white mucus disease on A. chaxingu was observed in the farms in Nanchang City, Jiujiang City and Guangchang County, Jiangxi Province, China. The disease generally occurs on the
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