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1

Pita, M., and L. Lebea. "Investigate the aluminium 1050-H4 microstructure, hardness, and wear characteristics when reinforced with maize cob particles." Journal of Physics: Conference Series 2944, no. 1 (2025): 012016. https://doi.org/10.1088/1742-6596/2944/1/012016.

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Анотація:
Abstract One of the effects of creating composite materials, which are classified as advanced materials, is a change to their mechanical properties. In this study, the effect of reinforcing aluminium 1050-H4 using corn-cob particles were investigated. Prior to being examined using scanning electron microscopy (SEM), the corn cob was crushed and milled in the experiment using a Aimil machine. The hardness, microstructure and wear behavior test were carried out. The aluminium alloy reinforced with corn cob particles of two distinct diameters, <0.425 mm and 0.425 mm, to create the composites.
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2

Oribe, Assala M., Khadhum M. Shabbeb, and Ayad K. Hassan. "Synthesis and Characteristics of Acetylated Corn Cob Powder/ Unsaturated Polyester Composite." Engineering and Technology Journal 38, no. 7A (2020): 1084–95. http://dx.doi.org/10.30684/etj.v38i7a.704.

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Анотація:
In this research, the composite material was prepared from untreated and treated corn cob powder by acetylation process and the physical and mechanical properties have been studied. Cellulose is extracted using the Kürchner-Hoffer method and then acetylated. Untreated corn cob powder and Acetylated corn cob powder were mixed with unsaturated polyester resin in different concentrations (0, 1, 2, and 3 wt. %). The Mechanical and the physical test results showed that there is an enhanced in mechanical properties (Tensile, Impact, Hardness, and Bending) with the treatment (Acetylation) by increasi
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3

Krisztina, Roman. "Measurements of PVC composite with Corn Cob flour additive." International Journal of Engineering Research & Science 4, no. 3 (2018): 06–10. https://doi.org/10.5281/zenodo.1213527.

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Анотація:
<strong><em>Abstract</em></strong><strong>&mdash;</strong> <em>M</em><em>echanical and thermo-analytical analysis carried out on the composites. In order to determine the relationships between structure and properties of composite, it is necessary to carry out different measurements. The tests were: tensile test, hardness test, thermal conductivity SEM, DSC and DMA. The results showed that the mixtures were inhomogeneous. The tensile and hardness test resulted that the composite has stronger structure and an increase in the strength values. From the thermo-analytical analysis the corn cob addi
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4

Radoi, Alexandru Ioan, Ion Ciuca, Marius Marinel Stanescu, et al. "Studies Regarding Some Mechanical Properties for a Hybrid Resin Used to Build Composites Reinforced with Corn Cob Powder." Materiale Plastice 59, no. 2 (2022): 24–31. http://dx.doi.org/10.37358/mp.22.2.5581.

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Анотація:
In this paper some mechanical characteristics of a composite made from a hybrid resin and reinforced with corn cob powder are presented. The hybrid resin was made with a combination between the natural dammar resin combined with a small percentage of acrylic one. The synthetic resin was inserted in order to increase the polymerization process which was produced in about 24 h. In the fist part of the investigation, from the compression test, some mechanical characteristics are determined, such as: breaking strength or maximum force obtained at breaking. Then, by using the SEM analysis and EDS s
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5

Fouly, Ahmed, Abdulaziz K. Assaifan, Ibrahim A. Alnaser, Omar A. Hussein, and Hany S. Abdo. "Evaluating the Mechanical and Tribological Properties of 3D Printed Polylactic-Acid (PLA) Green-Composite for Artificial Implant: Hip Joint Case Study." Polymers 14, no. 23 (2022): 5299. http://dx.doi.org/10.3390/polym14235299.

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Анотація:
Artificial implants are very essential for the disabled as they are utilized for bone and joint function in orthopedics. However, materials used in such implants suffer from restricted mechanical and tribological properties besides the difficulty of using such materials with complex structures. The current study works on developing a new polymer green composite that can be used for artificial implants and allow design flexibility through its usage with 3D printing technology. Therefore, a natural filler extracted from corn cob (CC) was prepared, mixed homogeneously with the Polylactic-acid (PL
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6

Mirițoiu, Cosmin Mihai, and Alexandru Ioan Rădoi. "Mechanical properties for composites with dammar resin reinforced with crushed corn cob." BioResources 19, no. 1 (2024): 1757–76. http://dx.doi.org/10.15376/biores.19.1.1757-1776.

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Анотація:
The study focused on the potential use of agricultural waste (corn cob) in the manufacturing of composite materials. In the first stage, composite materials were manufactured and tested using synthetic matrices (epoxy and acrylic) and hybrid matrices based on dammar resin (50% dammar, 60% dammar, and 70% dammar). Since it was observed that the samples had low mechanical properties under tensile and bending loads, the study was expanded to the production of sandwich-type composites with silk fabric facings. It was found that, by utilizing silk fiber, both tensile and bending strength increased
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7

Mirițoiu, Cosmin Mihai. "Influence of crushed corn cob mass percentage on the compression breaking strength of composites with hybrid matrix based on dammar resin." BioResources 20, no. 2 (2025): 4394–415. https://doi.org/10.15376/biores.20.2.4394-4415.

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Анотація:
This study investigated the effect of crushed corn cob reinforcement on the compressive strength of composite materials with a hybrid matrix based on dammar (60%) and a synthetic epoxy (Resoltech 1050 with 1058s hardener). While previous research has explored mechanical and chemical properties of such composites, as well as the role of dammar resin, the specific impact of crushed corn cob on compressive strength had not yet been addressed. Materials with reinforcement mass fractions between 50% and 67% were fabricated, each with 15 samples. Power Analysis confirmed the sample size was statisti
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8

Purba, Resmayeti, and Maureen Chrisye Hadiatry. "Yield performance and farmers' responses to corn composite varieties in Pandeglang Regency, Banten Province." E3S Web of Conferences 361 (2022): 04013. http://dx.doi.org/10.1051/e3sconf/202236104013.

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Анотація:
The objective of the present study was to determine yield performance and farmers' preference to the Lamuru composite corn variety planted with the application of corn Integrated Crop Management (ICM) and non Integrated Crop Management (non-ICM). The study was conducted in Kadumadang Village of Pandeglang Regency on a dry land agro-ecosystem in February-May 2020. The composite corn variety used was the Lamuru variety. Data was gathered using direct observation of agronomic performance and production with 10 replications. The agronomic data observed were plant height, number of leaves, stem dia
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9

Palobo, Fransiskus, Siska Tirajoh, Merlin K. Rumbarar, and Muhammad Thamrin. "Performance of New Superior Varieties of Hybrid and Composite Corn in Papua." Journal of Agricultural Studies 8, no. 1 (2020): 111. http://dx.doi.org/10.5296/jas.v8i1.15445.

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Анотація:
One effort to increase corn production is through the use of new superior varieties (NSV) hybrid corn and composite corn. This study aims to determine the performance of growth and yields of four NSV hybrid corn and composite corn. The study was conducted in Merauke Regency, Papua since August to December 2018. The design used was Randomized Group Design (RGD) based on one factorial with 5 sub factors, each hybrid corn; HJ 21 Nasa variety, Nasa 29 variety and composite corn; Lamuru variety, Bisma variety, Sukmaraga variety. The results of the study at various ages of plant height were not affe
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10

Roman, Krisztina, and Gabriella Zsoldos. "MEASUREMENTS OF RHEOLOGYCAL AND MECHANICAL-, THERMO-MECHANICAL PROPERTIES OF PVC/CORN COB FOAM COMPOSITE." International Journal of Research -GRANTHAALAYAH 5, no. 10 (2017): 313–21. http://dx.doi.org/10.29121/granthaalayah.v5.i10.2017.2307.

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Анотація:
In this paper, the modification of PVC/Corn cob blends was investigated. Rheological and diffusion properties of blends are important to learn the behavior of blend’s in molten state, because it will provide information necessary for the processing. Nowadays, the development of biomaterials has become a primary goal for material engineers. Using materials from natural sources gives an option to modify PVC structures and properties. The following mechanical properties of the prepared composite were determined; tensile-, bending strength and hardness. The PVC/Corn cob blends have increased impac
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11

Krisztina, Roman, and Zsoldos Gabriella. "MEASUREMENTS OF RHEOLOGYCAL AND MECHANICAL-, THERMO-MECHANICAL PROPERTIES OF PVC/CORN COB FOAM COMPOSITE." International Journal of Research - Granthaalayah 5, no. 10 (2017): 313–21. https://doi.org/10.5281/zenodo.1043419.

Повний текст джерела
Анотація:
In this paper, the modification of PVC/Corn cob blends was investigated. Rheological and diffusion properties of blends are important to learn the behavior of blend’s in molten state, because it will provide information necessary for the processing. Nowadays, the development of biomaterials has become a primary goal for material engineers. Using materials from natural sources gives an option to modify PVC structures and properties. The following mechanical properties of the prepared composite were determined; tensile-, bending strength and hardness. The PVC/Corn cob blends have increased impac
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12

Yusri, Maulidya Fachra Nisa. "PROLIFIC CORN TEST UNIFORMITY TEST (COB TWO)." JERAMI : Indonesian Journal of Crop Science 5, no. 1 (2022): 20–27. http://dx.doi.org/10.25077/jijcs.5.1.20-27.2022.

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Анотація:
One of the efforts that can be done is to increase the national corn productivity by developing prolific composite corn varieties. This is done because prolific corn is a type of corn with a tendency to produce two or more cobs, so that it can increase the value of corn production. The purpose of this study was to obtain prolific corn candidates (two cobs) with high yield and uniformity. This research was conducted using the mass selection method. Mass selection is done by selecting plants that have the desired character, namely prolific corn (cob two). The observed variables were the diversit
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13

Oliveira, Mariana Lima de, Luiz Guilherme Meira De Souza, Raimundo Vicente Pereira Neto, and Jaciel Cardoso de Lima. "Obtaining and characterization of a composite with polymer matrix and corn cob waste filler." Research, Society and Development 9, no. 12 (2020): e32791210849. http://dx.doi.org/10.33448/rsd-v9i12.10849.

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Анотація:
It was studied the feasibility of using corn cob to obtain a polymer composite. It was used of the corn cob in Three-grain sizes, and some formulations of the composite of polyester resin and powders were used, and the most appropriate formulation was chosen. For the characterization of the composite thermal and mechanical properties were determined. The main advantage of the composite was the low density, about 1.06 kg/m³ for the thick powder formulation. The composite presented an inferior mechanical behavior concerning the resin for all the studied particle sizes and formulations. The compo
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14

NG, YEE SHUI, ZHONG XIAN OOI, YI PENG TEOH, MEI LEE OOI, and PENG YONG HOO. "OPTIMIZATION OF PURIFIED CELLULOSE EXTRACTION FROM CORN COB AND CHARACTERIZATION OF THE ISOLATED PRODUCT." Cellulose Chemistry and Technology 58, no. 5-6 (2024): 467–79. http://dx.doi.org/10.35812/cellulosechemtechnol.2024.58.44.

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This study reported the isolation of cellulose from corn cob by using microwave-assisted alkaline treatment and bleaching. The Central Composite Design (CCD) approach of Response Surface Methodology (RSM) was applied to study the effect of sodium hydroxide (NaOH) concentrations (1.5-2.5M), duration of alkaline treatment (4-8 min), hydrogen peroxide (H2O2) concentrations (7-9 wt%) and bleaching time (3-7 min) on the removal percent of non-cellulosic components and impurities from corn cob. The optimized conditions obtained from this study were 2.37M NaOH, 9 wt% H2O2, alkaline treatment time of
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15

Verdiansyah, Rovan, Lia Kristiana, and Ruly Awidiyantini. "Kombinasi Pemberian Pupuk Organik Dan Pupuk Npk Terhadap Pertumbuhan Dan Hasil Jagung Lokal Komposit Varietas Guluk-Guluk." Agrotekma: Jurnal Agroteknologi dan Ilmu Pertanian 7, no. 2 (2023): 95–113. https://doi.org/10.31289/agr.v7i2.9400.

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Анотація:
The Sumenep people adore the composite local corn of the Guluk-guluk variety (Zea mays saccharata Sturt) variety. Only 182,581.43 tons of corn are produced annually, for an average productivity of around 1.097 tons per hectare. Local corn var. is one variety of local corn that is grown by many Sumenep farmers. rumble. The typical amount of local maize that yields According to Sugiarti and Hayati (2009), the productivity of guluk-guluk is 3.5 tons/ha lower than that of superior corn varieties, which range from 4.5 to 5.7 tons/hectare. The amount of fertility, the amount of rain, and the use of
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16

Sanwijaya, Maulana, Afira Ainur Rosidah, and Muhammad Yunus. "PHYSICAL AND MORPHOLOGICAL PROPERTIES OF CORN COB ACTIVATED CARBON COMPOSITE." Scientific Journal of Mechanical Engineering Kinematika 9, no. 2 (2024): 191–99. https://doi.org/10.20527/sjmekinematika.v9i2.346.

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Анотація:
Corn cobs are included in agricultural waste that is not utilized optimally. This organic waste is one of the right candidates to be used as activated carbon with various promising uses. This is the background for this research to make activated carbon from corn cobs which is activated using ZnCl2 with activator variations of 0, 8, and 16%. FTIR testing was performed to confirm the functional groups that appeared on the carbon from corn cobs before and after activation. Additionally, the activated carbon that successfully made was mixed with sago starch in a ratio of 75:25 to become a composit
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17

Akinyemi, A. Banjo, J. O. Afolayan, and E. Ogunji Oluwatobi. "Some properties of composite corn cob and sawdust particle boards." Construction and Building Materials 127 (November 2016): 436–41. http://dx.doi.org/10.1016/j.conbuildmat.2016.10.040.

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18

Li, Chunrong, Zhounan Liu, Ligang Geng, et al. "The Establishment of a High-Moisture Corn Ear Model Based on the Discrete Element Method and the Calibration of Bonding Parameters." Agriculture 15, no. 7 (2025): 752. https://doi.org/10.3390/agriculture15070752.

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Establishing an accurate high-moisture corn ear fragmentation model using the Discrete Element Method is crucial for studying the processing and fragmentation of high-moisture corn ears. This study focuses on high-moisture corn ears during the early harvest stage, developing a fragmentable corn ear model and calibrating its bonding parameters. First, based on the Hertz–Mindlin method in the Discrete Element Method, a three-layer corn cob bonding model consisting of pith, woody ring structure, and glume was established. Through a combined experimental and simulation calibration approach, the bo
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19

Ye, An, Yanwei Sui, Yongpeng Han, et al. "Novel corn cob-like Fe3O4@Ni3S2 as high-performance electrode for supercapacitors." Functional Materials Letters 10, no. 05 (2017): 1750062. http://dx.doi.org/10.1142/s179360471750062x.

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Corn cob-like Fe3O4@Ni3S2 nanocomposites was synthesized through a facile two-step hydrothermal process. The precursor was obtained by a facile calcination of a Fe-MOF template, then, nickel sulfide coated on iron oxide composites were synthesized using a hydrothermal method. In addition, the fabricated Fe3O4@Ni3S2 electrode revealed a great electrical performances with a maximum specific capacitance of 1200[Formula: see text]F[Formula: see text]g[Formula: see text] at 1[Formula: see text]A[Formula: see text]g[Formula: see text], a capacitance retention of 83% could be observed after 1000 cycl
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20

Nahil, Mohamad A., Omar Aboelazayem, Scott Wiseman, et al. "Production and Optimisation of Oxygenated Biofuel Blend Components via the Ethanolysis of Lignocellulosic Biomass: A Response Surface Methodology." Energies 18, no. 11 (2025): 2985. https://doi.org/10.3390/en18112985.

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In this study, a response surface methodology (RSM) using a central composite design (CCD) was implemented to investigate the influence of process variables on ethyl levulinate (EL) production from the ethanolysis of waste corn cob samples, using sulphuric acid as a catalyst. The effects of four independent variables, namely, the temperature (A), the corn cob content (B), corn cob/H2SO4 mass ratio (C) and the reaction time (D) on the yields of EL (Y1), diethyl ether (DEE) (Y2) and solid residue (Y3) were explored. Using multiple regression analysis, the experimental results were fitted to quad
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21

Maghfiroh, Amalia Ma'rifatul, and Ardana Putri Farahdiansari. "Utilization of coconut fiber and corn cob waste as noise reducers." Journal of Energy, Mechanical, Material, and Manufacturing Engineering 8, no. 2 (2023): 83–92. https://doi.org/10.22219/jemmme.v8i2.29880.

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Анотація:
Noise is a very disturbing problem in residential, office, educational, industrial and other environments. Noise can be reduced by using materials that can dampen and absorb sound. The sound dampening materials that are widely used by the public generally use glasswool and rockwool, but they are expensive. The more expensive the price of goods including sound absorbers, the more alternatives are needed by utilizing materials derived from nature which are easy to obtain and cheaper, besides that by utilizing existing natural fibers it can also reduce waste in the surrounding community. One exam
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22

G, NALLATHAMBI, JAYARAMAN N, and RANGASAMY M. "COBc1-A NEW BABY CORN COMPOSITE FOR TAMIL NADU." Madras Agricultural Journal 85, December (1998): 644–45. http://dx.doi.org/10.29321/maj.10.a00825.

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Анотація:
BC 2, is a baby corn composite suitable for irrigated and rainfed situations. Each plant can yield 2 to 3 cobs and the tender cobs can be harvested between 50 and 65 days after sowing before fertilization. It has an yield potential of 8316 kg baby corn and 32.2 tonnes of green fodder per hectare. It is moderately resistant to sorghum downy mildew diseases and tolerant to major pest of maize. It possess high starch (7.1 per cent) and delightful sweet flavour (total sugars 1.3 per cent) than the local baby corn. It serve as a valuable nutritious energy source with the attractive standard size co
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23

Perlova, O. V., Yu S. Dzyazko, M. E. Karimova, O. V. Palchik, L. M. Ponomaryova та E. O. Kolomiiets. "Magnetite-containing сomposite based on corn cob cellulose for adsorption of U(VI) compounds". Himia, Fizika ta Tehnologia Poverhni 15, № 4 (2024): 561–73. http://dx.doi.org/10.15407/hftp15.04.561.

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Sources of U(VI) compounds in ground and surface water are uranium-containing minerals and anthropogenic activity: nuclear and thermal power plants, mineral processing plants, mines, testing nuclear weapon. Due to toxicity and radioactivity of the compounds of this metal, their content in water is strictly regulated. In order to remove small amount of U(VI) from water, adsorption and ion exchange look most attractively. In this work, magnetite-containing composite adsorbent based on cellulose, which was produced from corn cobs, has been developed. Its advantages over synthetic adsorbents are c
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24

Wan, Yiling, Haijie Wu, Langhuan Huang, Jingxian Zhang, Shaozao Tan, and Xiang Cai. "Preparation and characterization of corn cob/polypropylene composite reinforced by wood ash." Polymer Bulletin 75, no. 5 (2017): 2125–38. http://dx.doi.org/10.1007/s00289-017-2149-1.

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25

Stel’makh, S. A., A. N. Beskopylny, E. M. Shcherban’, et al. "Influence of corn cob ash additive on the structure and properties of cement concrete." Construction materials and products 7, no. 3 (2024): 2. http://dx.doi.org/10.58224/2618-7183-2024-7-3-2.

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In accordance with the Sustainable Development Goals (SDGs) concept, there is a need to find technologies that would help make concrete production less energy intensive and more environmentally friendly. One technology involves substituting some mineral components in concrete with rapidly renewable plant-based alternatives. This study aims to establish the essential patterns among the concrete composition, micro-structure, and properties of cementitious composites modified with corn waste. Additionally, it seeks to explore the potential for producing high-quality composites using this waste ma
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26

M., P. Neupane, P. Singh S., Sai Sravan U., and Singh Abhishek. "Effect of Soil and Foliar Nitrogen Application on Growth, Yield and Quality of Baby Corn Cultivars." Journal of Experimental Agriculture International 16, no. 3 (2017): 1–11. https://doi.org/10.9734/JEAI/2017/32574.

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Анотація:
An imperative nitrogen management schedule attempted for the first time using soil application fb (followed by) foliar application at harvest stage to improve productivity and quality of baby corn. A two year study carried out in winter season with three cultivars and six schedules of recommended dose of nitrogen (RDN) application. Nitrogen scheduling in two, three and four splits compared on composite and hybrid cultivars. Crop growth, productivity traits, picking wise cob and corn yields, quality, plant nutrient ratios and nutrient harvest indices were determined. Cultivars followed the orde
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27

Lam, Esmeralda Uribe, María Gabriela Gutiérrez Pliego, Víctor Gerardo Martínez Pérez, and Alejandro Manzano Ramirez. "Determination of Mechanical Properties of Biodegradable Composites Made by Pine Resin Corn Fibers and Henequen Fibers." Key Engineering Materials 517 (June 2012): 422–29. http://dx.doi.org/10.4028/www.scientific.net/kem.517.422.

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Анотація:
Flexion tests were performed (ASTM D790) for two biodegradable composites, the first one made of pine resin as matrix and henequen fibers as reinforcement, varying the percentage reinforcement. The second composite made of a matrix of cellulose obtained from a mixture of recycled paper and water and reinforced with maize bract fibers (the leaves that cover the corn cob) and infiltrated with pine resin. Five samples were evaluated for each compound in an Instron universal machine (load cell: 5 kN). For the henequen fibers and pine resin composite specimens were prepared according to standard by
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28

Karman, Joni, Suparwoto Suparwoto, and Yanter Hutapea. "The Productivity and Income of Corn Farming Business through the Application of Biological Fertilizers." SOCA: Jurnal Sosial, Ekonomi Pertanian 14, no. 3 (2020): 430. http://dx.doi.org/10.24843/soca.2020.v14.i03.p05.

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Анотація:
The use of microbes’ research as biological fertilizers in order to increase corn production had been performed, but the analysis of farming business related to this matter has not been conducted. This research aimed to determine the effect of one of the biological fertilizers, which was Agrimeth, on the seeds of various composite corns to the growth factors, the productivity of corn farming in dry land, and the amount of income that was obtained. This research was conducted in Betung Village, Betung Sub-District, Banyuasin Regency, South Sumatra. The corn varieties used were Bima 10, Bima 19,
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29

Oladele, Isiaka Oluwole, John Adeola Taiwo, Taiwo Ebenezer Abioye, and Olamide Emmanuel Ariwoola. "Development and wear resistance evaluation of epoxy resin composite reinforced with cow horn and corn cob." International Journal of Materials Engineering Innovation 12, no. 1 (2021): 56. http://dx.doi.org/10.1504/ijmatei.2021.10035708.

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30

Ariwoola, Olamide Emmanuel, John Adeola Taiwo, Taiwo Ebenezer Abioye, and Isiaka Oluwole Oladele. "Development and wear resistance evaluation of epoxy resin composite reinforced with cow horn and corn cob." International Journal of Materials Engineering Innovation 12, no. 1 (2021): 56. http://dx.doi.org/10.1504/ijmatei.2021.113217.

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31

Moreno, J. R. S. "EVALUATION OF THE MECHANICAL AND INSULATION PROPERTIES OF A POLYMERIC COMPOSITE WITH CORN COB LOADS TRITURATED." Revista Mexicana de Ingeniería Química 17, no. 2 (2018): 753–66. http://dx.doi.org/10.24275/uam/izt/dcbi/revmexingquim/2018v17n2/moreno.

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32

Sukirman, S. Ma’mun, S. Rusdi, A. Fahruli, and R. E. Yulpando. "Utilization of Corn Cob Waste as an Alternative Composite Material of Motorcycle Non-asbestos Brake Lining." IOP Conference Series: Materials Science and Engineering 778 (May 1, 2020): 012009. http://dx.doi.org/10.1088/1757-899x/778/1/012009.

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33

Moreno, J. R. S. "EVALUATION OF THE MECHANICAL AND INSULATION PROPERTIES OF A POLYMERIC COMPOSITE WITH CORN COB LOADS TRITURATED." Revista Mexicana de Ingeniería Química 17, no. 2 (2018): 753–66. http://dx.doi.org/10.24275/10.24275/uam/izt/dcbi/revmexingquim/2018v17n2/moreno.

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34

Lertwattanaruk, Pusit, and Kanyaluck Muktana-a-nun. "UTILIZING AGRICULTURAL RESIDUES AND PLASTIC WASTE IN THE PRODUCTION OF COMPOSITE BOARD FOR RESIDENTIAL CONSTRUCTION." Journal of Green Building 20, no. 2 (2025): 93–110. https://doi.org/10.3992/jgb.20.2.93.

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ABSTRACT Wood-based composites are a popular construction material, however, the use of formaldehyde adhesives as binders in their production can have toxic health effects. In addition, the increase in agricultural industry has resulted in an increase in agricultural waste, which often goes unprocessed and disposed of improperly. To address these issues, this study focuses on the production of composite boards made from a mix of agricultural residues and plastic waste, as a way to reduce the use of formaldehyde adhesives. The study aimed to determine the feasibility of using plastic waste as a
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35

Yang, Chao, and Peng Liu. "Core-shell attapulgite@polypyrrole composite with well-defined corn cob-like morphology via self-assembling and in situ oxidative polymerization." Synthetic Metals 159, no. 19-20 (2009): 2056–62. http://dx.doi.org/10.1016/j.synthmet.2009.07.022.

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36

Liang, Hui, Ruijuan Li, Tongjin Liu, Rumei Li, Yuxiao Zhu, and Feng Fang. "Rapid Degradation of Bisphenol F Using Magnetically Separable Bimetallic Biochar Composite Activated by Peroxymonosulfate." Molecules 29, no. 23 (2024): 5545. http://dx.doi.org/10.3390/molecules29235545.

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Peroxymonosulfate (PMS)-based advanced oxidation processes have shown potential for the removal of organic contaminants; however, the preparation of catalysts with high degradation efficiencies and rapid reaction rates remains a challenge. In this study, we have successfully synthesized CoFe bimetallic modified corn cob-derived biochar (CoFe/BC) for the activation of PMS, achieving the rapid and efficient degradation of bisphenol F (BPF). The synthesized CoFe/BC catalyst demonstrated excellent catalytic performance, achieving over 99% removal within 3 min and exhibiting a removal rate of 90.0%
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37

Ugwu, Emmanuel Ikechukwu, and Jonah Chukwuemeka Agunwamba. "Competitive Adsorption of Copper, Zinc, and Chromium from Wastewater Using Corn-Cob Ash: Optimization Approach." International Journal of Engineering Research in Africa 58 (January 11, 2022): 77–94. http://dx.doi.org/10.4028/www.scientific.net/jera.58.77.

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Corn Cob ash was used in competitive adsorption of copper, zinc, and chromium from wastewater. The central composite design; a sub-set of response surface methodology was used to optimize the adsorption of the heavy metals. The result of the statistical parameters showed the coefficient of determination (R2) of 1.000, 0.999, and 1.000 for copper, zinc, and chromium respectively. The optimal conditions obtained for adsorbent dosage, initial concentration, temperature, contact time, and particle size were 13.20 mg, 79.72 mg/l, 34.95 °C, 40.38 min, and 1400 µm, respectively with the desirability
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38

Radoi, Alexandru Ioan, Marius Marinel Stanescu, Dumitru Bolcu, et al. "About Some Mechanical Properties Regarding Sandwich Samples Reinforced with Poplar Strips and the Core from Crushed Corn Cobs with Hybrid Dammar-Based Matrix." Materiale Plastice 60, no. 2 (2023): 99–107. http://dx.doi.org/10.37358/mp.23.2.5666.

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In this research some composite materials built in sandwich type style are studied. The lower and upper layers, that reinforce the samples, are made from poplar strips. The core is made from crushed corn cob and the adhesion of all parts (layers and core) is made by using hybrid resins based on a combination from dammar resin and the synthetic acrylic one (with its hardener). The static and dynamic mechanical behaviour by testing the samples to tensile and bending were studied. Two types of hybrid resins were used: one abbreviated as type B with the percentage of 60% dammar and 40% acrylic res
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39

Ramli, M. R. M., N. F. Shoparwe, and M. A. Ahmad. "Adsorption of Acetaminophen onto activated carbon derived from corn cobs: Optimizations by using response surface methodology." Journal of Physics: Conference Series 2907, no. 1 (2024): 012012. https://doi.org/10.1088/1742-6596/2907/1/012012.

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Abstract Acetaminophen (ACN) is widely used for analgesic with antipyretic and analgesics applications. The presence of ACN in the aquatic environment contributes towards the degradation of the aromatic ring of carbon, which harms human health and the ecosystem. This research aims to optimize the preparation condition of corn cob based activated carbon (CCAC) for adsorption of acetaminophen (ACN) by employing response surface methodology (RSM). The faced centered central composite design (CCD) was used to study the correlation between CCAC preparation conditions and ACN removal, and CCAC’s yie
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40

Fathurrahman, Muhammad, Usep Suhendar, Ani Iryani, Diana Widiastuti, Sherin Nurhafidza Ahmad, and Esya Juniar. "Sintesis dan Karakterisasi Komposit Eugenol-Silika Gel dari Abu Tongkol Jagung serta Analisis Antibakteri dan Daya Serap terhadap Air." ALCHEMY Jurnal Penelitian Kimia 18, no. 1 (2022): 10. http://dx.doi.org/10.20961/alchemy.18.1.47161.10-18.

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&lt;p dir="ltr"&gt;Tongkol jagung mempunyai kandungan silika yang cukup tinggi, yaitu 67,41% dari total abunya yang memungkinkan untuk dimanfaatkan untuk pembuatan komposit eugenol-silika gel. Penelitian ini bertujuan mempelajari pembuatan komposit eugenol-silika gel dengan bahan dasar abu tongkol jagung menggunakan metode sol gel, diikuti dengan analisis daya serap air dan aktivitas antibakteri terhadap &lt;em&gt;E. coli&lt;/em&gt; dan &lt;em&gt;S. aureus&lt;/em&gt;. Komposit eugenol-silika gel ini dikarakterisasi menggunakan &lt;em&gt;Fourier Transform Infrared&lt;/em&gt; (FTIR), &lt;em&gt;X
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41

N Z, Nkomo, and Alugongo A A. "Development and Characterization of a Corn Cob Particulate/Polyester Resin Composite for Use as a Particle Board." International Journal of Mechanical Engineering 12, no. 3 (2025): 71–77. https://doi.org/10.14445/23488360/ijme-v12i3p106.

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42

Simanjuntak, Johan Oberlyn, Tiurma Elita Saragi, and Belinauli Teknika Lumban Gaol. "BETON BERMUTU DAN RAMAH LINGKUNGAN DENGAN MEMANFAATKAN LIMBAH TONGKOL JAGUNG (Penelitian Laboratorium)." Jurnal Visi Eksakta 1, no. 1 (2020): 79–98. http://dx.doi.org/10.51622/eksakta.v1i1.53.

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The need for housing is more higher along with the times and this is also a factor to increasing for concrete needed for building development. The more concrete that is produced, the more cement is needed for construction.Concrete is a composite material (mixture) of several materials, the main ingredient which consists of a mixture of cement, fine aggregate, coarse aggregate, water and or without other additives with a certain ratio.&#x0D; Utilization of waste carried out in this study is to utilize corn cobs waste which is commonly found in the outskirts of the city of Medan. By utilizing th
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43

Ahad, Nor Azwin, Fatin Zalila Rozali, Nurul Husna Rosli, Nur Idzwan Hafizi Hanif, and Noraziana Parimin. "Oil and Water Absorption Behavior of TPU/Natural Fibers Composites." Solid State Phenomena 280 (August 2018): 374–81. http://dx.doi.org/10.4028/www.scientific.net/ssp.280.374.

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Fruit skins are waste and natural fibers which are processed from it can be used as filler material in polymer composites. These natural fibers are surely inexpensive, non-toxic and environmentally friendly. In the other hand, natural fibers are chemically hydrophilic and absorb water. Their nature which are rich cellulose making it hydrophilic in nature. Besides their nature to water, the ability of natural fibers to absorb oil also interesting to be studied. In this paper, natural fibers from several types of fruit skin were used as filler in thermoplastic polyurethane (TPU) composites. The
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44

Zhang, Weiyi, Xianmei Zhang, Xiaoguang Zhang, et al. "Lauric-stearic acid eutectic mixture/carbonized biomass waste corn cob composite phase change materials: Preparation and thermal characterization." Thermochimica Acta 674 (April 2019): 21–27. http://dx.doi.org/10.1016/j.tca.2019.01.022.

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45

Odozi, T. O., S. Okele, and R. B. Lartey. "Studies on binding metal ions with polymerized corn cob and a composite resin with sawdust and onion skin." Agricultural Wastes 12, no. 1 (1985): 13–21. http://dx.doi.org/10.1016/0141-4607(85)90041-1.

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46

Mohammed, Omar, and Waleed Salih. "The Effect of Grain Size of Reinforcing Material (Corn Cob) on Some Mechanical Properties of the Composite Material." Journal of University of Anbar for Pure Science 17, no. 2 (2023): 203–9. http://dx.doi.org/10.37652/juaps.2023.181565.

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47

Hermansyah, Hermansyah, Maftuh Gozali, Julinar Julinar, Zainal Fanani, and Poedji Loekitowati Hariani. "Response Surface Methodology to Optimize Laccase Produced from Pleurotus ostreatus Using Corn Cob and Rice Bran as Substrate." Molekul 20, no. 1 (2025): 185. https://doi.org/10.20884/1.jm.2025.20.1.14472.

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ABSTRACT. Laccase is an industrially significant enzyme capable of oxidizing a broad range of phenolic compounds, making it valuable for applications such as bioremediation, textile dye decolorization, and pulp bleaching. Therefore, this study aimed to optimize laccase production from Pleurotus ostreatus using agricultural waste substrates corn cob (BJ), rice bran (DP), and their 1:1 mixture (BJ:DP) through Response Surface Methodology (RSM). Extracellular laccase was obtained by centrifuging the cultured medium, followed by ammonium sulfate precipitation and dialysis. The enzyme activity was
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48

Bassey, Perpetua G., and Erukaye, Damien Oghenevwegba. "Optimization of Ethylene Glycol Production Process from Bio Mass (Corn Cob) Using Response Surface Methodology (RSM)." International Research Journal of Pure and Applied Chemistry 25, no. 4 (2024): 10–20. http://dx.doi.org/10.9734/irjpac/2024/v25i4862.

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This study focuses on the increasing global demand for Monoethylene Glycol (MEG) and its production from corncob through Catalytic Hydrogenation. The process was optimized using Design of Experiment (DOE) and Response Surface Methodology (RSM). Physiochemical properties of the produced MEG were found to align with ASTM standards. Physiochemical properties of the produced Monoethylene glycol (MEG) was determined to have the following; density 2.19g/cm3, specific gravity 1.077 at 20 oC, flash point 116.20 oC and viscosity 12.32mm2/s at 40 oC, this values is in agreement with the ASTM standard va
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49

AC, Kieling, Santana GP, and Santos MC. "Wood plastic composites: General considerations." Scientia Amazonia 8, no. 1, 2019 (2019): b1—b14. https://doi.org/10.5281/zenodo.7049015.

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Plastic has become a world-class environmental liability and any solution will help reduce this problem. Among the existing solutions are wood plastic, a plastic composite and components of wood, such as fibers, sawdust, corn cob, rice husk, etc. This work aims to show some aspects of wood plastic as historical evolution, composition, production and application. Initially, a historical evolution of wood plastic is presented in the world and in Brazil. The data obtained from the literature show that the wood plastic can be produced of diverse materials, standing out the wood sawing being incorp
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E.V. Ratna Kumar G., K. Senthil Kumar, and J.A. Ranga Babu. "A Review on Fabrication and Mechanical Characterization of Particulate Reinforced Al-7075 Metal Matrix Composites/Hybrid Composites." Journal of Advanced Research in Applied Sciences and Engineering Technology 34, no. 2 (2023): 62–71. http://dx.doi.org/10.37934/araset.34.2.6271.

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Nowadays almost all the industries around the globe are using the composites instead of ferrous alloys to produce the low weight mechanical elements/components without scarifying the properties of the materials being used. The aluminium is a best substitute to conventional materials due to their ‘low weight’, ‘corrosion resistance’, ‘high strength’ and ‘low density’ properties/ characteristics. Aluminium Metal Matrix (AMM) composites are the trending materials to be used in various engineering applications having the capacity to accomplish the required demand. The specific/ desired properties
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