Field of the Invention
[0001] This invention relates to methods for producing pulp, comprising microbial treatment,
in either or both of pulping process and bleaching process, using a microorganism
which grows well in a culture medium containing lignin as a single carbon source.
[0002] The present invention relates to methods for producing pulp, comprising microbial
treatment substantially without adding nutrients or inhibitors of cellulose degradation
at any one stage of the process of producing pulp.
[0003] The present invention enables to produce pulp in good quality, by microbial treatment
using a microorganism which grows well in a culture medium containing lignin as a
single carbon source at a process for producing pulp, thereby suppressing cellulose
degradation to the minimum.
[0004] The present invention enables pulping or bleaching, substantially without adding
nutrients or inhibitors of cellulose degradation, for example glucose, at a process
of producing pulp, by using a microorganism with excellent lignin-degrading activity
and a high selectivity, whereby the present invention can provide economical and industrial
methods for producing pulp in remarkably energy-saving manner.
Prior Art and Problems
[0005] Since considerably early days, a great number of research efforts have been carried
out on pulping or bleaching for the process of producing paper and pulp by using microorganisms.
[0006] The Japanese Patent Laid-open No. 46903/1975 proposes a method for producing cellulose
pulp, comprising degradation of lignin under the condition to substantially degrade
lignin, by using a microorganism having a production potential of a lignin-degrading
enzyme.
[0007] However, the method has never been put to industrial use, because the degree of lignin
degradation is so low due to the extremely low lignin-degrading activity of the microorganism
used, and because the addition of sugars and nitrogen compounds is required added
due to the suppression of cellulose assimilation by the microorganism.
[0008] The bleaching of pulp with
Phanerochaete chrysosporium has been also reported (Biotechnol Lett.,
1, 347-353(1979)), but it has neither been practiced industrially because of the low
lignin-degrading activity and the use of the large amount of an inhibitor of cellulose
degradation.
Means to Solve the Problems
[0009] The present inventors have investigated intensively in order to develop a method
for pulping or bleaching with microbial treatment, without causing cellulose degradation
and adding a nutrient and inhibitor of cellulose degradation. Consequently, they have
achieved the object in accordance with the present invention.
[0010] That is, in accordance with the present invention, it is the use of a microorganism
which grows well in a culture medium containing lignin as a single carbon source that
realizes pulping and bleaching of wood chips, pulp after refining and unbleached pulp,
substantially without adding nutrients or inhibitors of cellulose degradation, in
the economical and tremendously energy-saving manner.
Brief Description of the Drawings
[0011] Fig. 1 shows the increase in brightness (%) after the microbial treatment for 1 to
5 days in Example 5.
[0012] The microorganism to be used in the present invention is from a microbial strain,
well grown by inoculation and culture in a culture medium containing lignin as a single
carbon source.
[0013] As the culture medium, there may be prepared an agar medium to which is added as
a single carbon source, about 1 to 10% of lignin, preferably 2 to 4% of lignin.
[0014] An isolating source collected from a natural source is dispersed at an appropriate
concentration in the culture medium, and cultured at 25 to 35 °C, to collect a colony
exhibiting a good growth, which is to be an effective microorganism to be used in
the present invention.
[0015] The present inventors have previously isolated the strains NK-1148 (FERM BP-1859)
and NK-729W (FERM BP-1860), which are among the microorganisms very effective for
the present invention.
[0016] The mycological characteristics of NK-1148 strain (FERM BP-1859) are shown as follows.
(1) State of Growth in Culture Media
[0017]

(2) Physiological and Morphological Properties
[0018]
① pH range for the growth (Cultivation in a potato-glucose agar medium at 28 °C for
4 days)
Grows at pH near 3 - 9, but never grows at pH 2 or pH 10. The optimum pH is near 4
to 6.
② Temperature range for the growth (Cultivation in a potato-glucose agar medium at
pH 5 for 4 days)
Grows at temperatures near 10 - 45 °C, but never grows at 50 °C. The optimum temperature
range is near 28 - 37 °C.
③ Phenol oxidase reaction (Cultivation at 28 °C for 4 days)
Shows weak or negative response.
④ Morphology of colony (Cultivation in a potato-glucose agar medium at pH 5 at 28
°C for 4 days)
White and felt-like.
The mycological characteristics of NK-729W strain (FERM BP-1860) are shown as follows.
(1) State of Growth in Culture Media
[0019]

(2) Physiological and Morphological properties
[0020]
① pH range for the growth (Cultivation in a potato-glucose agar medium at 28 °C for
4 days)
Grows at pH near 3 - 7, but never grows at pH 2 or pH 8. The optimum pH is near 4
to 5.
② Temperature range for the growth (Cultivation in a potato-glucose agar medium at
pH 5 for 4 days)
Grows at temperatures near 10 - 32 °C, but never grows at 37 °C. The optimum temperature
range is near 20 - 30 °C.
③ Phenol oxidase reaction (Cultivation at 28 °C for 4 days)
Shows positive response.
④ Morphology of colony (Cultivation in a potato-glucose agar medium at pH 5 at 28
°C for 4 days)
White and hairy.
⑤ Morphology of fruit body
- Size :
- 2 - 5 mm diameter
- Shape :
- Inverted cup shape (nose shape)
- Edge or surface :
- Edge turned inwardly, surface color of yellow black, having brown fleece or hair over
the entire surface
- Surface of tubular pore :
- Pale white gray, recessed in an upturned dish shape, with small pore
- Texture :
- Soft leather-like texture, substantially white
⑥ Spore shape
About 3 - 4 x 1µm, sausage-like shape, colorless and smooth.
[0021] The microorganism to be used in the present invention may be NK-1148 strain or NK-729W
strain isolated by the present inventors, but preferably there may be used a selectively
isolated strain growing well using lignin as a single carbon source, obtained with
or without mutation of these two strains, or a strain growing well using lignin as
a single carbon source and having been isolated from nature.
[0022] In accordance with the present invention, the microorganism growing well using lignin
as a single carbon source, represents, for example, a microorganism capable of bleaching
an unbleached kraft pulp up to a brightness of 45 % or more, preferably 50 % or more,
more preferably 60 % or more, with no reduction in the strength of the pulp.
[0023] The microorganism to be used in the present invention can be cultured in any one
of a culture medium containing lignin as a single carbon source, a general culture
medium for basidiomycetes and fungi without containing lignin, and a culture medium
containing wood powder, wood chips and pulp.
[0024] The type of pulp is generally classified in the following three.
① Mechanical pulp fiberized by mechanical treatment of wood.
② Semichemical pulp obtained by chemical and mechanical treatments in combination.
③ Chemical pulp with most of lignin removed through chemical treatment.
[0025] The present invention is to produce individual pulp corresponding mechanical pulp
(the degree of lignin degradation below 35 %), semichemical pulp (the degree of lignin
degradation of not less than 35% to less than 75 %), and chemical pulp (the degree
of lignin degradation of not less than 75%), by replacing a part or the entire part
of the chemical treatment or mechanical treatment in the processes of producing pulp
i.e., ① to ③, with the microbial treatment of the present invention.
[0026] That is, the following processes are fundamentally included in the present invention.
A: Wood chips are directly treated with the microorganism of the present invention,
to degrade the lignin component in the wood chips to produce unbleached pulp.
B: Pulp from the wood chips refined at a light degree is treated with the microorganism
of the present invention, to degrade the lignin component in the pulp to produce unbleached
pulp.
C: The wood chips after chemical treatment at a light degree are treated with the
microorganism of the present invention, to degrade the lignin component in the pulp
described above to produce unbleached pulp.
D: The pulp obtained by lightly refining wood chips is chemically treated lightly,
and then are treated with the microorganism of the present invention, to degrade the
lignin component in the pulp to produce unbleached pulp.
E: The pulp obtained by chemically treating wood chips lightly and refining the wood
chips lightly is treated with the microorganism of the present invention, to degrade
the lignin component in the pulp to produce unbleached pulp.
F: The unbleached pulp obtained in any one of A to E is further treated by a light
chemical treatment and/or light refining to produce unbleached pulp.
[0027] In the microbial treatment in the processes A to F, there may be used the microorganism
growing well in the culture medium containing lignin as a single carbon source. The
microorganism can selectively degrade the lignin component in wood and uses the wood
lignin as a nutrient. It is therefore possible to carry out the aforementioned microbial
treatment without adding an inhibitor of cellulose degradation.
[0028] The degree of the chemical treatment to a light degree and the refining treatment
to a light degree in the processes A to F is appropriately determined by a predetermined
lignin content, depending on the type of the unbleached pulp including mechanical
pulp, semichemical pulp and chemical pulp, or in any type of the pulp.
[0029] The microorganism to be used in the present invention has a far greater lignin-degrading
activity than the lignin-degrading microorganisms conventionally known. Hence, the
present invention enables the substitution of all stages of the chemical treatment
and the refining in the conventional processes of producing mechanical pulp, semichemical
pulp and chemical pulp, with the microbial treatment, along with the marked decrease
in the degree of the chemical treatment and the refining. In other words, the process
of producing pulp in accordance with the present invention can decrease the amount
of chemicals, and is appropriate for production of high-quality pulp in energy-saving
manner.
[0030] As the fundamental processes in the process of producing pulp according to the present
invention, there have been described herein A to F. But they are just representative,
so it is possible to appropriately combine the microbial treatment with the microorganism
of the present invention, with other treatments.
[0031] Intensely colored lignin generally remains in unbleached chemical pulp and unbleached
semichemical pulp. In case of using these unbleached pulp for papers for the use requiring
a higher brightness, therefore, the pulp is transferred to the bleaching process to
remove the remaining lignin, to increase the brightness.
[0032] In such case, in accordance with the present invention, unbleached pulp is treated
with the microorganism growing well in a culture medium containing lignin as a single
carbon source, to degrade and remove the remaining lignin in the unbleached pulp,
for the bleaching of the unbleached pulp.
[0033] The unbleached pulp may be any one of the unbleached chemical pulp and unbleached
semichemical pulp by conventional methods, and the unbleached pulp corresponding to
chemical pulp and those corresponding to semichemical pulp, produced with the microbial
treatment of the present invention. The bleaching of the present invention may be
applied to the unbleached mechanical pulp by the conventional methods, and the unbleached
pulp corresponding to mechanical pulp produced through the microbial treatment of
the present invention. However, since a great amount of chlorine-based bleaching agents
is used for bleaching of unbleached chemical and semichemical pulp, the present bleaching
is effectively applied to the unbleached pulp corresponding to unbleached chemical
and semichemical pulp, from the standpoint of pollution control.
[0034] In accordance with the present invention, the bleaching process may be carried out
entirely as the bleaching with the use of the microorganism, but a combination of
the present bleaching with other bleaching methods may be also possible. The bleaching
of the present invention can achieve a high standard of safety due to its microbial
treatment.
[0035] Pulping and/or bleaching can be carried out through by adding the cultured microorganism
to about 1/10000 to 10/100 of wood chips or pulp, and culturing the mixture at about
20 to 35 °C for 3 to 90 days, without adding any nutrient or inhibitor of cellulose
degradation to wood chips or various pulp. Optional addition of a small amount of
inhibitors of cellulose degradation may be done.
Example 1
[0036] The culture medium containing 1.0 g of beech wood powder (60 - 80 mesh) and 2.5 mℓ
of water, placed in a 50 mℓ flask, is heated and sterilized at 120 °C for 15 minutes,
into which is inoculated NK-1148 strain (FERM BP-1859) and cultured at 28 °C for a
week. The resulting mycelia are suspended in water.
[0037] Alternatively, the culture medium containing 2.0 % of milled wood lignin from white
birch, 0.2 % of NH₄H₂PO₄ and 1.6 % of agar is heated and sterilized at 120 °C for
15 minutes, which is then aseptically divided by 20 mℓ each into petri dishes (90
mℓ in diameter).
[0038] The mycelia in suspension were added to the culture medium and cultured at 28 °C
for two weeks, to isolate a strain exhibiting good growth, which was defined an isolated
strain A. The isolated strain A was designated as NK-1148-3 strain and has been deposited
in Fermentation Research Institure, Agency of Industrial Science and Technology, under
the accession number of FERM BP-3220.
Example 2
[0039] The isolated strain NK-1148-3 obtained in Example 1 was inoculated into the culture
medium containing 1.2 % of potato-dextrose broth commercially available (DIFCO Co.,
Ltd.) after sterilization at 120 °C for 15 minutes, and cultured at 28 °C for a week,
which was used as a seed culture.
Example 3
[0040] In the process of producing mechanical pulp, 10 kg of pulp obtained through a first
refining of beech wood chips at a light degree was mixed with 24.5 ℓ of water, and
sterilized at 120 °C for 15 minutes, to which was added 0.5 kg of the seed culture
obtained in Example 2 and cultured under aeration at 28 °C for a week. Subsequently
after a second refining, a mechanical pulp with a high strength could be obtained
in an extremely energy-saving manner. The properties of the obtained biomechanical
pulp are shown in the following Table 1.

Example 4
[0041] NK-1148 strain and the isolated strain NK-1148-3, obtained in Example 1, were separately
inoculated into each culture medium mixed with 10 kg of an unbleached pulp (eucalyptus)
and 25 ℓ of water, which medium had been treated and sterilized in advance at 120
°C for 15 minutes, and
cultured under aeration at 28 °C for two weeks. The resulting cultures were individually
used as a seed culture.
Example 5
[0042] For bleaching of chemical pulp, 10 kg of a unbleached kraft pulp (eucalyptus) was
mixed with 25 ℓ of water and sterilized at 120 °C for 15 minutes, to which were separately
added 1 kg of each of the seed cultures obtained in Example 4, together with 0.5 kg
of glucose, and mixed for culture under, and cultured under aeration at 28 °C for
1 to 5 days, leading to the production of a bleached kraft pulp. The enhancement of
the brightness during the microbial treatment period for 1 to 5 days is shown in Fig.
1.
1. A method for producing pulp from wood by using a microorganism, comprising microbial
treatment, in either pulping process or bleaching process or both, using the microorganism
which grows well in a culture medium containing lignin as a single carbon source.
2. A method for producing unbleached pulp, comprising degrading at least partially lignin
present in wood chips by using a microorganism which grows well in a culture medium
containing lignin as a single carbon source.
3. A method for producing unbleached pulp, comprising refining wood chips to a light
degree to produce pulp and degrading at least partially the lignin present in the
obtained pulp by using a microorganism which grows well in a culture medium containing
lignin as a single carbon source.
4. A method for producing unbleached pulp, comprising treating wood chips with a chemical
to a light degree and degrading at least partially the lignin present in the resulting
wood chips by using a microorganism which grows well in a culture medium containing
lignin as a single carbon source.
5. A method for producing unbleached pulp, comprising refining wood chips to a light
degree to produce pulp, treating the obtained pulp with a chemical to a light degree,
and degrading at least partially the lignin present in the resulting pulp by using
a microorganism which grows well in a culture medium containing lignin as a single
carbon source.
6. A method for producing unbleached pulp, comprising treating wood chips with a chemical
to a light degree, refining the resulting wood chips to produce pulp, and degrading
at least partially the lignin present in the obtained pulp by using a microorganism
which grows well in a culture medium containing lignin as a single carbon source.
7. The method for producing pulp according to claims 2 to 6, wherein the unbleached pulp
is further treated with a chemical and/or refined after the microbial treatment.
8. The method for producing pulp according to claims 1 to 7, wherein the microbial treatmen
is carried out in the state where a nutrient or inhibitor of cellulose degradation
is not substantially added.
9. A method for producing bleached pulp, comprising carrying out at least a part of bleaching
treatment of unbleached pulp in bleaching process, using a microorganism which grows
well in a culture medium containing lignin as a single carbon source.
10. The method for producing bleached pulp according to claim 9, wherein the bleaching
treatment using the microorganism is carried out in the state where a nutrient or
inhibitor of cellulose degradation is not substantially added.