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  2. Lignocellulosic biomass - Wikipedia

    en.wikipedia.org/wiki/Lignocellulosic_biomass

    lignin is a heterogeneous, highly crosslinked polymer akin to phenol-formaldehyde resins. It is derived from 3-4 monomers, the ratio of which varies from species to species. The crosslinking is extensive. Being rich in aromatics, lignin is hydrophobic and relatively rigid. Lignin confers structural integrity to plants.

  3. Lignin - Wikipedia

    en.wikipedia.org/wiki/Lignin

    Idealized structure of lignin from a softwood. Lignin is a class of complex organic polymers that form key structural materials in the support tissues of most plants. [1] Lignins are particularly important in the formation of cell walls, especially in wood and bark, because they lend rigidity and do not rot easily.

  4. Lignin-modifying enzyme - Wikipedia

    en.wikipedia.org/wiki/Lignin-modifying_enzyme

    Lignin-modifying enzymes benefit industry as they can break down lignin; a common waste product of the paper and pulp industry. These enzymes have been used in the refinement of poplar as lignin inhibits the enzymatic hydrolysis of treated poplar and Lignin-modifying enzymes can efficiently degrade the lignin thus fixing this problem. [4]

  5. Sulfite process - Wikipedia

    en.wikipedia.org/wiki/Sulfite_process

    The lignin is converted to lignosulfonates, which are soluble and can be separated from the cellulose fibers. For the production of cellulose, the sulfite process competes with the Kraft process which produces stronger fibers and is less environmentally costly. idealized scheme for lignin depolymerization by the Sulfite process.

  6. Biorefinery - Wikipedia

    en.wikipedia.org/wiki/Biorefinery

    The Alpena biorefinery plant in the USA. A biorefinery is a refinery that converts biomass to energy and other beneficial byproducts (such as chemicals). The International Energy Agency Bioenergy Task 42 defined biorefining as "the sustainable processing of biomass into a spectrum of bio-based products (food, feed, chemicals, materials) and bioenergy (biofuels, power and/or heat)". [1]

  7. Cellulose - Wikipedia

    en.wikipedia.org/wiki/Cellulose

    The major combustible component of non-food energy crops is cellulose, with lignin second. Non-food energy crops produce more usable energy than edible energy crops (which have a large starch component), but still compete with food crops for agricultural land and water resources. [ 74 ]

  8. Lignan - Wikipedia

    en.wikipedia.org/wiki/Lignan

    Flax seeds and sesame seeds contain high levels of lignans. [1] [8] The principal lignan precursor found in flaxseeds is secoisolariciresinol diglucoside.[1] [8] Other foods containing lignans include cereals (rye, wheat, oat and barley), soybeans, tofu, cruciferous vegetables, such as broccoli and cabbage, and some fruits, particularly apricots and strawberries. [1]

  9. List of power stations in Maryland - Wikipedia

    en.wikipedia.org/wiki/List_of_power_stations_in...

    This is a list of electricity-generating power stations in the U.S. state of Maryland, sorted by type and name. In 2022, Maryland had a total summer capacity of 11,908 MW through all of its power plants, and a net generation of 37,139 GWh. [ 2 ]

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