Good Quality for Elderberry Extract Supply to Haiti
Good Quality for Elderberry Extract Supply to Haiti Detail:
[Latin Name] Sambucus nigra
[Specification] Anthocyanidins15% 25% UV
[Appearance] Purple fine powder
Plant Part Used: Fruit
[Particle size] 80Mesh
[Loss on drying] ≤5.0%
[Heavy Metal] ≤10PPM
[Storage] Store in cool & dry area, keep away from the direct light and heat.
[Shelf life] 24 Months
[Package] Packed in paper-drums and two plastic-bags inside.
[Net weight] 25kgs/drum
[What is elderberry extract?]
Elderberry extract comes from the fruit of the Sambucus nigra or Black Elder, a species found in Europe, Western Asia, North Africa, and North America. Called “the medicine chest of the common people,” Elder flowers, berries, leaves, bark, and roots have all been used for centuries in traditional folk medicines.Elder fruit contains vitamins A, B and C, flavonoids, tannins, carotenoids, and amino acids. Elderberry is believed to possess therapeutic uses as an anti-inflammatory, diuretic, and immuno-stimulant.
[Function]
1. As medicine raw material: It can promote the healing of gastrointestinal ulcers; It can be used for acute and chronic hepatitis and hepatitis evocable hepatomegaly, hepatocirrhosis; promote the healing of liver function.
2. As foodstuff colorant: Widely used in cakes, beverage, candy, ice cream etc..
3. As chemical raw material for daily use: Widely used in many kinds of green medicine toothpastes and cosmetics.
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Our well-equipped facilities and exceptional good quality manage throughout all stages of production enables us to guarantee total shopper satisfaction for Good Quality for Elderberry Extract Supply to Haiti , The product will supply to all over the world, such as: Turkey, Tunisia, Argentina, Aiming to grow to be by far the most experienced supplier within this sector in Uganda, we keep researching on the creating procedure and raising the high quality of our principal merchandise. Till now, the merchandise list has been updated on a regular basis and attracted customers from around the globe. In depth data can be obtained in our web page and you'll be served with good quality consultant service by our after-sale team. They're about to make it possible for you to get complete acknowledge about our things and make a satisfied negotiation. Small business check out to our factory in Uganda can also be welcome at any time. Hope to obtain your inquiries to get a happy co-operation.
Professor Maureen McCann, Director of the Energy Center at Purdue University, addresses “A Roadmap for Selective Deconstruction of Lignocellulosic Biomass to Advanced Biofuels and Useful Co-Products” on February 11, 2013 as part of the Andlinger Center’s 2012-2013 Highlight Seminar Series.
ABSTRACT
Second-generation biofuels will be derived from lignocellulosic biomass using biological catalysis to use the carbon in plant cell wall polysaccharides for ethanol or other biofuels. However, this scenario is both carbon- and energy-inefficient. The major components of biomass are cellulose, hemicellulose and lignin. Biological conversion routes utilize only the polysaccharide moiety of the wall, and the presence of lignin interferes with the access of hydrolytic enzymes to the polysaccharides. Living micro-organisms, required to ferment released sugars to biofuels, utilize some sugars in their own growth and co-produce carbon dioxide. In contrast, chemical catalysis has the potential to transform biomass components directly to alkanes, aromatics, and other useful molecules with improved efficiencies. The Center for Direct Catalytic Conversion of Biomass to Biofuels (C3Bio) is a DOE-funded Energy Frontier Research Center, comprising an interdisciplinary team of plant biologists, chemists and chemical engineers. We are developing catalytic processes to enable the extraction, fractionation, and depolymerization of cellulose and hemicellulose coupled to catalytic transformation of hexoses and pentoses into hydrocarbons. Additional catalysts may cleave the ether bonds of lignin to release useful aromatic co-products or that may oxidize lignols to quinones. In a parallel approach, fast-hydropyrolysis is a relatively simple and scalable thermal conversion process. Our understanding of biomass-catalyst interactions require novel imaging and analysis platforms, such as mass spectrometry to analyze potentially complex mixtures of reaction products and transmission electron tomography to image the effects of applying catalysts to biomass and to provide data for computational modeling. By integrating biology, chemistry and chemical engineering, our data indicate how we might modify cell wall composition, or incorporate Trojan horse catalysts, to tailor biomass for physical and chemical conversion processes. We envision a road forward for directed construction and selective deconstruction of plant biomass feedstock.
BIOGRAPHY
Maureen McCann is the Director of Purdue’s Energy Center, part of the Global Sustainability Initiative in Discovery Park. She obtained her undergraduate degree in Natural Sciences from the University of Cambridge, UK, in 1987, and then a PhD in Botany at the John Innes Centre, Norwich UK, a government-funded research institute for plant and microbial sciences. She stayed at the John Innes Centre for a post-doctoral, partly funded by Unilever, and then as a project leader with her own group from 1995, funded by The Royal Society. In January 2003, she moved to Purdue University as an Associate Professor, and she is currently a Professor in the Department of Biological Sciences.
The goal of her research is to understand how the molecular machinery of the plant cell wall contributes to cell growth and specialization, and thus to the final stature and form of plants. Plant cell walls are the source of lignocellulosic biomass, an untapped and sustainable resource for biofuels production with the potential to reduce oil dependence, improve national security, and boost rural economies. She is also the Director of the Center for Direct Catalytic Conversion of Biomass to Biofuels (C3Bio), an interdisciplinary team of biologists, chemists and chemical engineers in an Energy Frontier Research Center funded by the US Department of Energy’s Office of Science.
Try Iron man Terenzo Bozzone’s quick and easy energy boosting smoothie recipe.
All you need is:
Sujon Blueberries,
Sujon Blackcurrant Powder,
sunflower seeds,
almond milk
Good green stuff
linseeds
and pumpkin seeds
Check out https://sujon.co.nz for more information
By Belinda from Vancouver - 2017.02.18 15:54
The sales manager is very patient, we communicated about three days before we decided to cooperate, finally, we are very satisfied with this cooperation!
By Miranda from Norwegian - 2017.04.08 14:55