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Xylan-

The pentosan polysaccharides, xylan and arabinan, commonly known as hemiceUulose, are the principal precursors of furfural and are always found together with lignin and cellulose in plant materials. [Pg.77]

The plant is harvested by hand sickle and, after defoUation, is stripped and scraped by hand or machine decorticated. Because of the high gum (xylan and araban) content of up to 35%, retting is not possible. The fibers are separated chemically by boiling in an alkaline solution in open vats or under pressure, then washed, bleached with hypochlorite, neutralized, oiled to facUitate spinning, and dried. [Pg.361]

The common hemiceUulose components of arborescent plants are listed in Table 3. Xylans, arabinogalactans, and pectic substances are common to all while only traces (if at all) of glucomaimans are found in the cell walls of bamboo. Other polysaccharides are found in trace amounts in wood as well as in bark, growing tissues, and other specialized parts of trees. [Pg.30]

Fig. 1. A schematic representation of the xylan backbone of arborescent plants, where Xylp = xylopyranosyl unit ... Fig. 1. A schematic representation of the xylan backbone of arborescent plants, where Xylp = xylopyranosyl unit ...
Table 4. A Comparison of Isolated Xylans from Different Sources... Table 4. A Comparison of Isolated Xylans from Different Sources...
The amount of softwood xylan sorbed from alkati at kraft cooking temperatures (100—170°C) is proportional to the quantity of hemiceUulose present and inversely to the extent of branching (57). At neutral pH, the presence of carboxyl groups inhibits sorption compared to a control, but no difference is observed when ionization is suppressed (58). [Pg.31]

Both types of xyloglucans exhibit monolayer sorption onto cellulose (116) and tamarind xyloglucan exhibits maximum specific sorption onto cellulose less than that of coniferous xylan. By inference with other data, this is also less than that of glucomannan and hardwood xylan, but similar to many additives used in the paper industry. [Pg.32]

Derivatives of hemicellulose components have properties similar to the ceUulosic equivalents but modified by the effects of thek lower molecular weight, more extensive branching, labile constituents, and more heterogeneous nature. Acetates, ethers, carboxymethylxylan (184), and xylan—poly(sodium acrylate) (185) have been prepared. [Pg.34]

Xyhtol is synthesized by reduction of D-xylose catalyticahy (40), electrolyticahy (41), and by sodium amalgam (42). D-Xylose is obtained by hydrolysis of xylan and other hemiceUulosic substances obtained from such sources as wood, com cobs (43), almond shells, hazelnuts, or oHve waste (44). Isolation of xylose is not necessary xyhtol results from hydrogenation of the solution obtained by acid hydrolysis of cottonseed hulls (45). [Pg.48]

Scientific name/Common name Glucan Xylan Galactan Arabinan Man nan Uronic anhydride Acetyl Lignin Ash... [Pg.321]

The L-arabino-(4-0-methyl-D-glucurono)xylans are found in softwoods and annual plants. The L-arabinose is present primarily as a-L-arabinofuranosyl units, although P-L-arabinopyranosyl units may also be present. In either case, the arabinosyl units are often, but not always, present as single-unit side chains, as are the uronic acid units. [Pg.484]

P -D-xylan with 3-hnked a-L-arabiaose branches (1 4)-P -D-xylan with 2-Unked 4-0-methyl-a-D-glucuronic acid and arabiaose branches... [Pg.70]


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Accessibility xylan

Acetyl group xylan

Acetyl-(4-0-methylglucurono)xylans

Acidic xylan, methylation analysis

Aldobiouronic acids, from acidic xylans

Amorphous xylan

Anionic xylan

Application Potential of Xylans and Xylo-oligosaccharides

Arabino- xylans softwoods

Arabino- xylans structure

Arabino-(4-O-methylglucurono)xylans

Bamboo xylans

Barley xylan from straw

Barley xylans

Beechwood xylan

Biodegradation xylans

Biological xylans

Birch xylan

Birch, acidic xylan from

Birch, acidic xylan from holocellulose

Cationic xylan

Chitin-xylan hybrid polysaccharide

D-Xylan

Enzymic degradation xylans

Esparto grass, xylan

Extractive Isolation of Xylan

Exudate Gums with Xylan Cores

Fine Structure of Xylans

Forces between cellulose beads xylan solutions

Forces between xylan-coated

Grasses xylans, structure

Hemicellulose hydrolysis xylan removal

Hemicellulose xylan derivatives

Hemicellulose xylans

Hemicelluloses xylans

Hydrolysis of xylans

Interactions xylans

Kinetics of xylan adsorption

Mechanism of xylan retention cellulose

Of xylans

Oligosaccharides xylan —

Oxidized xylan derivatives

Pears, xylan from

Peeling reaction xylan

Pentosan fraction, xylan

Polysaccharides Xylan

Polysaccharides xylan group

Resources and Isolation of Xylans

Retention of xylan

Rheological xylans

Rhodymenia palmata, xylan

Rhodymenia palmata, xylans

Saccharification Xylan

Solids concentration xylan hydrolysis

Sprucewood xylan

Structure of xylans

Sulfite pulp from xylan

Synergy with Xylan Removal and Cellulases

The Xylan Group of Polysaccharides

Water, xylan extraction

Wheat straw, xylan

Wheat xylan

Wheat xylans

Whistler, Roy L., Xylan

Whistler, Xylan

Xylan VOLUME

Xylan acetate

Xylan acetylation

Xylan acidic

Xylan adsorption measurement

Xylan backbones

Xylan biodegradation

Xylan biosynthesis

Xylan butyrate

Xylan composition

Xylan composition and structure

Xylan crystalline

Xylan crystalline, properties

Xylan degradation

Xylan degradation rate

Xylan degrading enzymes

Xylan derivatives

Xylan determination

Xylan diacetate

Xylan digestibility

Xylan dimethyl

Xylan dinitrate

Xylan esparto

Xylan esters

Xylan ethers

Xylan extraction from wheat straw

Xylan extraction yields

Xylan fibers

Xylan forms

Xylan from birch

Xylan from corn cobs

Xylan from esparto grass

Xylan from plant cell-walls

Xylan furfural from

Xylan hemicellulosic

Xylan holocellulose as source

Xylan hydrolysis

Xylan isolation

Xylan neutral type

Xylan nitric acid oxidation

Xylan optical rotation

Xylan partial hydrolysis

Xylan pear cell-wall

Xylan periodate oxidation

Xylan purification

Xylan removal

Xylan resistant

Xylan seaweed

Xylan sources

Xylan straw

Xylan sulfated

Xylan sulfates

Xylan sulphates

Xylan uronic acid content

Xylan with lignin

Xylan, algal

Xylan, beech

Xylan, constitution

Xylan, fermentation

Xylan, fractionation

Xylan, hydration

Xylan, occurrence

Xylan, repeat unit

Xylan, spectra

Xylan, structure

Xylan, xylose

Xylan-containing

Xylane

Xylane

Xylans

Xylans Subject

Xylans acidic, acid hydrolysis

Xylans acidic, structure

Xylans analysis

Xylans and Mannans

Xylans application potential

Xylans arabino

Xylans arabinoxylans

Xylans bacterial

Xylans biological activity

Xylans biosynthesis

Xylans branching

Xylans complex heteroxylans

Xylans composition

Xylans constitution

Xylans corn, structure

Xylans degradation

Xylans ester, preparation

Xylans fine structure

Xylans from natural sources

Xylans from plant cell walls

Xylans glucuronoxylans

Xylans hemicellulosic

Xylans homoxylans

Xylans interaction with other polysaccharide

Xylans main structural features

Xylans methyl ethers

Xylans methylation

Xylans molecular-weight distribution

Xylans oligosaccharides

Xylans polysaccharides

Xylans seaweed

Xylans structural features

Xylans structure

Xylans types

Xylans wheat, structure

Xylans, acetates

Xylans, acetates acid side chains

Xylans, acetates esters

Xylans, acetates extraction

Xylans, acetates fractionation

Xylans, acetates hydrolysis

Xylans, acetates isolation

Xylans, acetates of silver birch

Xylans, acetates solubility

Xylans, synthesis

Xylo-oligosaccharides from xylans

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