keyword
https://read.qxmd.com/read/38518610/simultaneous-production-of-biofuel-and-removal-of-heavy-metals-using-marine-alga-turbinaria-turbinata-as-a-feedstock-in-neom-region-tabuk
#21
JOURNAL ARTICLE
Amenah S Alotaibi, Abrar M Alhumairi, Hanaa Ghabban, Asma Massad Alenzi, Ragaa A Hamouda
Depletion of fossil fuel and pollution by heavy metals are two major global issues. The cell wall of algae consists of polymers of polysaccharides such as cellulose, hemicellulose, alginate, starch, and many others that are readily hydrolyzed to monosaccharides and hence are amenable to fermentation into bioethanol. Moreover, algae contain lipids that may undergo trans-esterification to biodiesel, and can be absorbed by heavy metals. In this study, extraction of lipids from Turbinaria turbinata (common brown alga) from the beach of Sharma, NEOM, Tabuk, Saudi Arabia by different solvents hexane, methanol, and hexane: methanol (1:1), and trans-esterification was performed to obtain biodiesel and investigated by GC...
March 21, 2024: Ecotoxicology and Environmental Safety
https://read.qxmd.com/read/38503687/acid-catalyzed-activation-and-condensation-of-the-c5h-bond-of-furfural-on-aldehydes-an-entry-point-to-biobased-monomers
#22
JOURNAL ARTICLE
Sarah Behloul, Oscar Gayraud, Gilles Frapper, Frederic Guegan, Kanokon Upitak, Christophe Thomas, Zhen Yan, Karine De Oliveira Vigier, François Jérôme
Furfural is an industrially relevant biobased chemical platform. Unlike classical furan, or C-alkylated furans, which have been previously described in the current literature, the =C5H bond of furfural is unreactive. As a result, on a large scale, C=C and C=O bond hydrogenation/hydrogenolysis is mainly performed, with furfuryl alcohol and methyl tetrahydrofuran being the two main downstream chemicals. Here, we show that the derivatization of the -CHO group of furfural restores the reactivity of its =C5H bond, thus permitting its double condensation on various alkyl aldehydes...
March 19, 2024: ChemSusChem
https://read.qxmd.com/read/38503213/interlayer-manipulation-of-bio-inspired-ti-3-c-2-t-x-nanocontainer-through-intercalation-of-amino-acid-molecules-to-dramatically-boosting-uranyl-hijacking-capability-from-seawater
#23
JOURNAL ARTICLE
Chang Liu, Ye Li, Miao Lei, Dongxue Liu, Bolin Li, Chengbin Fu, Junpeng Guo
More than 4.5 billion tons of unconventional uranium resources [UO2 (CO3 )3 ]4- are uniformly dissolved in seawater, providing a sustainable and abundant fuel source for the development of nuclear energy. Herein, we presented a rational design and development of Ti3 C2 Tx nanocontainer inspired by the exceptional selectivity and affinity exhibited by superb-uranyl proteins through amino acid intercalation. The amino acid intercalation of Ti3 C2 Tx demonstrated exceptional UO2 2+ capture capacity (Arg-Ti3 C2 Tx , His-Ti3 C2 Tx , and Lys-Ti3 C2 Tx with qmax values of 594...
March 11, 2024: Journal of Hazardous Materials
https://read.qxmd.com/read/38501255/fundamental-drying-and-agglomeration-experiments-with-bio-fraction-and-refuse-derived-fuel-for-the-development-of-pyrolysis-reactor-feed
#24
JOURNAL ARTICLE
József Faitli, Zainab Nassr Abdulfattah, Daniel Kioko, Sándor Nagy
The EU's circular economy concept necessitates increasing the recycling ratio of municipal solid wastes. There are many existing mechanical-biological processing plants in Hungary for the preparation of residual municipal solid wastes (RMSWs). The two most important products of these plants are the bio-fraction and the refuse derived fuel (RDF). Currently, there are problems with both of these material streams in Hungary, since most of the bio-fraction is still landfilled, and the local thermal utilisation of the RDF has not been implemented yet...
March 19, 2024: Waste Management & Research
https://read.qxmd.com/read/38499256/multifaced-application-of-afex-pretreated-biomass-in-producing-second-generation-biofuels-ruminant-animal-feed-and-value-added-bioproducts
#25
REVIEW
Maedeh Mohammadi, Mahsa Alian, Bruce Dale, Bryan Ubanwa, Venkatesh Balan
Lignocellulosic biomass holds a crucial position in the prospective bio-based economy, serving as a sustainable and renewable source for a variety of biobased products. These products play a vital role in displacing fossil fuels and contributing to environmental well-being. However, the inherent recalcitrance of biomass poses a significant obstacle to the efficient access of sugar polymers. Consequently, the bioconversion of lignocellulosic biomass into fermentable sugars remains a prominent challenge in biorefinery processes to produce biofuels and biochemicals...
March 16, 2024: Biotechnology Advances
https://read.qxmd.com/read/38493599/a-review-on-machine-learning-approaches-for-microalgae-cultivation-systems
#26
REVIEW
Tehreem Syed, Felix Krujatz, Yob Ihadjadene, Gunnar Mühlstädt, Homa Hamedi, Jonathan Mädler, Leon Urbas
Microalgae plays a crucial role in biomass production within aquatic environments and are increasingly recognized for their potential in generating biofuels, biomaterials, bioactive compounds, and bio-based chemicals. This growing significance is driven by the need to address imminent global challenges such as food and fuel shortages. Enhancing the value chain of bio-based products necessitates the implementation of an advanced screening and monitoring system. This system is crucial for tailoring and optimizing the cultivation conditions, ensuring the lucrative and efficient production of the final desired product...
March 10, 2024: Computers in Biology and Medicine
https://read.qxmd.com/read/38492392/new-insights-into-changes-in-phosphorus-profile-at-sediment-water-interface-by-microplastics-role-of-benthic-bioturbation
#27
JOURNAL ARTICLE
Xiaojun Song, Jiannan Ding, Yunbo Zhang, Mingda Zhu, Yi Peng, Zhenyu Wang, Gang Pan, Hua Zou
Microplastics (MPs) have attracted increasing attention due to their ubiquitous occurrence in freshwater sediments and the detrimental effects on benthic invertebrates. However, a clear understanding of their downstream impacts on ecosystem services is still lacking. This study examines the effects of bio-based polylactic acid (PLA), fuel-based polyethylene terephthalate (PET), and biofilm-covered PET (BPET) MPs on the bioturbator chironomid larvae (Tanypus chinensis), and the influence on phosphorus (P) profiles in microcosms...
March 15, 2024: Journal of Hazardous Materials
https://read.qxmd.com/read/38491309/mechanism-of-formation-of-p-benzylenephenol-peroxide-radical-p-phc-o-2-%C3%A2-hphoh
#28
JOURNAL ARTICLE
Gregory A Poskrebyshev
CONTEXT: The reactions of radicals with O2 play the important role in the biological, medicinal, and industrial processes. The mechanism of this reaction is studied previously for the alkane, alkene, alkyne, phenols, and close-related radicals. According to these studies, the formation of intermediates in these reactions is predicted only for the aromatic radicals. Thus, the Van der Waals complexes of O2 with phenyl or benzyl radicals are predicted, as well as the π-π cluster for benzene...
March 16, 2024: Journal of Molecular Modeling
https://read.qxmd.com/read/38456762/nanoparticle-empowered-core-shell-microcapsules-from-architecture-design-to-fabrication-and-functions
#29
REVIEW
Bo Jiang, Manrui Mu, Yan Zhou, Jun Zhang, Wenle Li
Compartmentalization is a powerful concept to integrate multiscale components with diverse functionalities into miniature architectures. Inspired by evolution-optimized cell compartments, synthetic core-shell capsules enable storage of actives and on-demand delivery of programmed functions, driving scientific progress across various fields including adaptive materials, sustainable electronics, soft robotics, and precision medicine. To simultaneously maximize structural stability and environmental sensitivity, which are the two most critical characteristics dictating performance, diverse nanoparticles are incorporated into microcapsules with a dense shell and a liquid core...
March 8, 2024: Small
https://read.qxmd.com/read/38449639/impact-of-nanotechnology-at-heterogeneous-interphases-sustainability
#30
REVIEW
Pankaj Tomar
The 21st century information and communication industries have played the pivotal role of bio-sensing technologies, refining privacy policies for human performance, facilitating scientific innovation, shaping e-governance, and reinforcing public confidence using nanotechnology. Human body is a thermodynamic heat engine in providing effective mechanical work as a function of psyche, conventional fuel transformation into enriched protein meal, and balancing of work-life fulcrum. The triboelectric effect of rubbing surfaces, interfaces, and interphases is invincible from the large field of the planet to nanodomains...
March 15, 2024: Heliyon
https://read.qxmd.com/read/38445446/covalent-organic-frameworks-spotlight-on-applications-in-the-pharmaceutical-arena
#31
REVIEW
Pushpa Pilli, Hema Sree Kommalapati, Vijaya Madhyanapu Golla, Rahul Khemchandani, Roshitha Kunnath Ramachandran, Gananadhamu Samanthula
Covalent organic frameworks (COFs) have much potential in the field of analytical separation research due to their distinctive characteristics, including easy modification, low densities, large specific surface areas and permanent porosity. This article provides a historical overview of the synthesis and broad perspectives on the applications of COFs. The use of COF-based membranes in gas separation, water treatment (desalination, heavy metals and dye removal), membrane filtration, photoconduction, sensing and fuel cells is also covered...
March 6, 2024: Bioanalysis
https://read.qxmd.com/read/38441462/production-of-biomass-derived-p-hydroxybenzamide-synthesis-of-p-aminophenol-and-paracetamol
#32
JOURNAL ARTICLE
Steven D Karlen, Vitaliy I Timokhin, Canan Sener, Justin K Mobley, Troy Runge, John Ralph
As we work to transition the modern society that is based on non-renewable chemical feedstocks to a post-modern society built around renewable sources of energy, fuels, and chemicals, there is a need to identify the renewable resources and processes for converting them to platform chemicals. Herein, we explore a strategy for extracting the p-hydroxybenzoate from biomass feedstocks (e.g., poplar and palm trees) and converting it into a portfolio of commodity chemicals. The targeted bio-derived product in the first processing stage is p-hydroxybenzamide produced from p-hydroxybenzoate esters found in the plant...
March 5, 2024: ChemSusChem
https://read.qxmd.com/read/38437181/emerging-trends-of-bilirubin-oxidases-at-the-bioelectrochemical-interface-paving-the-way-for-self-powered-electrochemical-devices-and-biosensors
#33
REVIEW
Balamurugan Thangavel, Ganesh Venkatachalam, Joong Ho Shin
Bilirubin oxidases (BODs) [EC 1.3.3.5 - bilirubin: oxygen oxido-reductase] are enzymes that belong to the multicopper oxidase family and can oxidize bilirubin, diphenols, and aryl amines and reduce the oxygen by direct four-electron transfer from the electrode with almost no electrochemical overpotential. Therefore, BOD is a promising bioelectrocatalyst for (self-powered) biosensors and/or enzymatic fuel cells. The advantages of electrochemically active BOD enzymes include selective biosensing, biocatalysis for efficient energy conversion, and electrosynthesis...
March 4, 2024: ACS Applied Bio Materials
https://read.qxmd.com/read/38435738/data-set-of-production-of-castor-oil-and-characterization-of-cotton-and-castor-mixed-seed-oil-additives-with-diesel-fuel
#34
JOURNAL ARTICLE
Hailegebrel Zewdie Woldetensay, Dinku Seyoum Zeleke, Getachew Shunki Tibba
An important energy source for industry and transportation is diesel fuel. Nonetheless, the use of diesel fuel has been connected to a number of environmental problems, such as climate change and air pollution. The purpose of this data set research is to extract oil from castor seeds and cottonseeds using a mechanical press method to use as lubricant. The oil is refined to remove impurities and improve its quality once it is extracted. The next step was determining the fatty acid content of castor oil, cottonseed oil, and cottonseed oil (50%) mixed with castor seed oil (50%) using gas chromatography (Agilent 7890B) with a mass spectroscopy detector (Agilent 5977A MSD, USA) and the European standard (EN 14103:2011)...
April 2024: Data in Brief
https://read.qxmd.com/read/38430059/electron-transferring-metalloenzymes-and-their-potential-biotechnological-applications
#35
JOURNAL ARTICLE
Ross D Milton
Modern societies rely heavily on centralized industrial processes to generate a multitude of products ranging from electrical energy to synthetic chemical building blocks to construction materials. To date, these processes have relied extensively on energy produced from fossil fuels, which has led to dramatically increased quantities of greenhouse gases (including carbon dioxide) being released into the atmosphere; the effects of the ensuing change to our climate are easily observed in day-to-day life. Some of the reactions catalyzed by these industrial processes can be catalyzed in nature by metal-containing enzymes (metalloenzymes) that have evolved over the course of up to 3...
February 28, 2024: Chimia
https://read.qxmd.com/read/38401283/development-of-the-biobattery-a-novel-enzyme-fuel-cell-using-a-multicopper-oxidase-as-an-anodic-enzyme
#36
JOURNAL ARTICLE
Kartheek Batchu, David Probst, Takenori Satomura, Koji Sode
This work presents the development of an enzyme fuel cell, termed "BioBattery", that utilizes multicopper oxidases as the anodic enzyme in a non-diffusion limited system. We evaluated various enzyme variants as the anode, including multicopper oxidase from Pyrobaculum aerophilum, laccase from Trametes versicolor, and bilirubin oxidase from Myrothecium verrucaria. Several combinations of cathodes were also examined, focusing on the reduction of oxygen as the primary electron acceptor. The optimal pairing used multicopper oxidase from Pyrobaculum aerophilum as the anode and amine reactive phenazine ethosulfate modified bovine serum albumin as the cathode...
February 8, 2024: Biosensors & Bioelectronics
https://read.qxmd.com/read/38398584/sustainable-production-of-biofuels-and-biochemicals-via-electro-fermentation-technology
#37
REVIEW
María José Salar-García, Víctor Manuel Ortiz-Martínez, Sergio Sánchez-Segado, Raúl Valero Sánchez, Antonia Sáez López, Luis Javier Lozano Blanco, Carlos Godínez-Seoane
The energy crisis and climate change are two of the most concerning issues for human beings nowadays. For that reason, the scientific community is focused on the search for alternative biofuels to conventional fossil fuels as well as the development of sustainable processes to develop a circular economy. Bioelectrochemical processes have been demonstrated to be useful for producing bioenergy and value-added products from several types of waste. Electro-fermentation has gained great attention in the last few years due to its potential contribution to biofuel and biochemical production, e...
February 13, 2024: Molecules: a Journal of Synthetic Chemistry and Natural Product Chemistry
https://read.qxmd.com/read/38392155/bio-inspired-space-robotic-control-compared-to-alternatives
#38
JOURNAL ARTICLE
Timothy Sands
Controlling robots in space with necessarily low material and structural stiffness is quite challenging at least in part due to the resulting very low structural resonant frequencies or natural vibration. The frequencies are sometimes so low that the very act of controlling the robot with medium or high bandwidth controllers leads to excitation of resonant vibrations in the robot appendages. Biomimetics or biomimicry emulates models, systems, and elements of nature for solving such complex problems. Recent seminal publications have re-introduced the viability of optimal command shaping, and one recent instantiation mimics baseball pitching to propose control of highly flexible space robots...
February 12, 2024: Biomimetics
https://read.qxmd.com/read/38390075/current-significance-and-future-perspective-of-3d-printed-bio-based-polymers-for-applications-in-energy-conversion-and-storage-system
#39
REVIEW
Khoiria Nur Atika Putri, Varol Intasanta, Voravee P Hoven
The increasing global population has led to a surge in energy demand and the production of environmentally harmful products, highlighting the urgent need for renewable and clean energy sources. In this context, sustainable and eco-friendly energy production strategies have been explored to mitigate the adverse effects of fossil fuel consumption to the environment. Additionally, efficient energy storage devices with a long lifespan are also crucial. Tailoring the components of energy conversion and storage devices can improve overall performance...
February 29, 2024: Heliyon
https://read.qxmd.com/read/38389167/energy-saving-electrochemical-hydrogen-production-coupled-with-biomass-derived-isobutanol-upgrading
#40
JOURNAL ARTICLE
Ruiqi Du, Siqi Zhao, Kaizheng Zhang, Yuxin Chen, Yi Cheng
The widespread application of electrochemical hydrogen production faces significant challenges, primarily attributed to the high overpotential of the oxygen evolution reaction (OER) in conventional water electrolysis. To address this issue, an effective strategy involves substituting OER with the value-added oxidation of biomass feedstock, reducing the energy requirements for electrochemical hydrogen production while simultaneously upgrading the biomass. Herein, we introduce an electrocatalytic approach for the value-added oxidation of isobutanol, a high energy density bio-fuel, coupled with hydrogen production...
February 22, 2024: ChemSusChem
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