CN111691235B - 一种灰板纸及其制备方法 - Google Patents

一种灰板纸及其制备方法 Download PDF

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CN111691235B
CN111691235B CN202010600307.0A CN202010600307A CN111691235B CN 111691235 B CN111691235 B CN 111691235B CN 202010600307 A CN202010600307 A CN 202010600307A CN 111691235 B CN111691235 B CN 111691235B
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CN111691235A (zh
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陈欢欢
李彩鹏
李文宾
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Zhejiang Jinli Environmental Paper Co ltd
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Abstract

本发明涉及一种灰板纸及其制备方法。本发明采用废弃物作为原料,对各层浆料的成分、配比进行限定,并创新性地使用环保填料对浆料进行改良,充分发挥组分之间的协同作用,提升了灰板纸的紧度、挺度、层间结合力等性能,得到性能优秀的灰板纸产品;本发明对废弃物进行资源化合理利用,工艺操作简单,节能环保,具有良好的市场前景。

Description

一种灰板纸及其制备方法
技术领域
本发明涉及制浆造纸技术领域,具体涉及一种灰板纸及其制备方法。
背景技术
灰板纸是一种环保型包装材料,可分为单灰、双灰和全灰,其制造过程主要采用废纸纸浆作为原料,不仅能降低生产成本、减少对生态环境的消耗,也响应国家节能减排的号召、实现可持续发展。因此,灰板纸成为印刷和包装行业基材的优选用纸。灰板纸的定量、厚度、紧度、挺度等性能指标是考察纸张性能的重要标准,传统造纸工艺仍存在一些不足,导致灰板纸的质量不稳定,强度性能不高。
发明内容
为克服现有技术存在的不足,本发明提供一种灰板纸及其制备方法。
本发明通过以下技术方案来实现:
一种灰板纸的制备方法,包括以下步骤:
A、制浆步骤
将回收的混合办公废纸经过脱墨处理后得到MOW浆;
将回收的废旧瓦楞箱板纸经过碎浆分级筛选后得到OCC浆,其中所得的长纤维浆为OCC浆,中纤维浆为OCC浆,短纤维浆为OCC浆
将木质废料经过热磨蒸煮处理得到机械木浆;
将造纸污泥经过净化调理后得到再利用污泥;
B、配浆步骤
面层浆料:采用MOW浆和再利用污泥的混合浆作为面层浆料,二者重量比为9-19:1,面层浆料占浆料总量的15-20%;
衬层浆料:采用100%OCC浆作为衬层浆料,衬层浆料占浆料总量的15-20%;
芯层浆料:采用OCC浆、机械木浆、再利用污泥与白水的混合浆作为芯层浆料,其中,OCC浆、机械木浆、再利用污泥在芯层浆料中的占比分别为25-35%、30-40%、10-25%,芯层浆料占浆料总量的40-55%;
底层浆料:采用采用100%OCC浆作为底层浆料,底层浆料占浆料总量的15-20%;
C、抄造步骤:将上网浆料经网部脱水成形、压榨、干燥后抄造出成纸。
进一步地,所述面层浆料和芯层浆料中均加入一定量的环保填料;
面层浆料中加入占面层浆料量1-2%的环保填料,芯层浆料中加入占芯层浆料量5-10%的环保填料;
所述环保填料为贝壳粉@海藻酸钠核壳结构材料,该核壳结构中贝壳粉与海藻酸钠的质量比例为1:0.5-1.0。
所述环保填料的制备方法为:将贝壳粉洗净,300-350℃下煅烧0.5-1.5h,冷却后研磨至100-200目,在600-700℃下进行二次煅烧,时间为2-4h;冷却后研磨至400-800目,得到煅烧贝壳粉备用;用水将海藻酸钠润湿溶解得到溶液,将煅烧贝壳粉添加到海藻酸钠溶液中分散均匀,煅烧贝壳粉与海藻酸钠的质量比例为1:0.5-1.0,干燥后得到贝壳粉@海藻酸钠核壳结构材料。
进一步地,所述面层浆料中MOW浆和再利用污泥的重量比为19:1;
进一步地,所述芯层浆料中OCC浆、机械木浆、再利用污泥的占比分别为35%、35%、20%;
进一步地,所述木质废料包括废旧木材、家具加工废料;
进一步地,所述OCC浆的叩解度为23-28°SR,所述OCC浆的叩解度为25-28°SR,所述OCC浆的叩解度为26-33°SR。
本发明同时还提供了一种采用上述方法制备得到的灰板纸。
进一步地,所述灰板纸定量400-700g/m2,紧度0.57-0.59g/cm3,层间结合力≥130J/m2,纵向挺度15-25mN·m。
本发明的积极效果如下:
1、本发明原料主要为废弃物,填料组分绿色环保,生产成本低、环境友好。
2、本发明对面、衬、芯、底四层浆料的成分及其比例进行优化选择,在面层浆料、芯层浆料中添加了相应比例的再利用造纸污泥,充分利用其中含有的氢键官能团对于纤维之间结合的促进作用,改善了层间结合力;
3、在面、芯层浆料中加入环保填料,填料分散在浆料中,由于其核壳结构及性质,不仅提高了产品的松厚度,同时也促进了纤维之间的结合;通过组分之间的协同作用,在节约纤维用量的基础上也提高了产品的强度。
具体实施方式
为详细说明技术方案的技术内容、构造特征、所实现目的及效果,以下结合具体实施例详予说明。应理解,这些实施例仅用于说明本申请而不用于限制本申请的范围。
本发明所用各浆料的制备流程如下:
1、MOW浆生产:使用混合办公废纸,通过链板式输送机送入水力碎浆机碎解分离,碎解好的浆被泵送入粗选机,再送到高浓除砂器,除去粗杂质后,通过纤维分离机粗筛后进行脱墨浮选、低浓除砂、压力筛选,筛后浆去浓缩机经浓缩后送进双盘磨浆机打浆,然后送浆池贮存;
2、OCC浆生产:使用废旧瓦楞箱纸板,通过链板式输送机送进水力碎浆机,碎解后进高浓除砂器除去砂子、石头、铁块等杂质,再经纤维分离机把浆与渣分离后,进行低浓除砂、一级三段低浓筛选后,良浆送入浓缩机经浓缩后接着进行纤维分级处理,分级后的短纤维浆、中纤维浆送浆池贮存;长纤维浆送热分散系统,再进磨浆机,然后送浆池贮存;
3、机械木浆生产:将废旧木材、家具加工废料送入木材削片机中切成不规则的小木片,通过多层振动筛除去大颗粒杂质,然后磁选去除铁质杂质,在150-170℃条件下用饱和蒸汽对木片进行蒸煮,待木片软化后送入热磨机中,在同样的温度下,1000-1500转/分的搅拌速度作用下,磨成木纤维,再经筛选、浓缩后得到机械木浆,送浆池贮存;
本发明再利用污泥的制备流程为:
将造纸过程产生的污水经过生化处理、沉降处理后泥水分离,得到污泥组分1,将废纸回收利用过程产生的脱墨污泥作为污泥组分2,将组分1和组分2合并作为造纸污泥,上述造纸污泥中加入调理剂搅拌反应后静置,调理剂与造纸污泥的混合比为1:50-150,固液分离后得到再利用污泥;其中调理剂为乳酸、纤维素酶与水的混合物,其中乳酸占比1.0-1.15%,纤维素酶占比0.08-0.10%。
实施例1
A、制浆步骤
将回收的混合办公废纸经过脱墨处理后得到MOW浆;
将回收的废旧国产瓦楞箱板纸经过碎浆分级筛选后得到OCC浆,其中所得的长纤维浆为OCC浆,中纤维浆为OCC浆,短纤维浆为OCC浆
将木质废料经过热磨处理得到机械木浆;
将造纸污泥经过净化调理后得到再利用污泥;
B、配浆步骤
面层浆料:采用MOW浆和再利用污泥的混合浆作为面层浆料,二者重量比为19:1,另外,面层浆料中还含有占其1%的贝壳粉@海藻酸钠核壳结构环保填料,所述面层浆料占浆料总量的20%;
衬层浆料:采用100%OCC浆作为衬层浆料,衬层浆料占浆料总量的15%;
芯层浆料:采用OCC浆、机械木浆、再利用污泥与白水的混合浆作为芯层浆料,其中,OCC浆、机械木浆、再利用污泥在芯层浆料中的占比分别为35%、35%、20%,另外,芯层浆料中还含有占其5%的贝壳粉@海藻酸钠核壳结构环保填料,所述芯层浆料占浆料总量的45%;
底层浆料:采用采用100%OCC浆作为底层浆料,底层浆料占浆料总量的20%;
C、抄造步骤:将上网浆料经网部脱水成形、压榨、干燥后抄造出成纸。
所述环保填料的制备方法为:将贝壳粉洗净,350℃下煅烧1h,冷却后研磨至150目,在650℃下进行二次煅烧,时间为3h;冷却后研磨至700目,得到煅烧贝壳粉备用;用水将海藻酸钠润湿溶解得到溶液,将煅烧贝壳粉添加到海藻酸钠溶液中分散均匀,煅烧贝壳粉与海藻酸钠的质量比例为1:1.0,干燥后得到贝壳粉@海藻酸钠核壳结构材料。
实施例2
A、制浆步骤
将回收的混合办公废纸经过脱墨处理后得到MOW浆;
将回收的废旧国产瓦楞箱板纸经过碎浆分级筛选后得到OCC浆,其中所得的长纤维浆为OCC浆,中纤维浆为OCC浆,短纤维浆为OCC浆
将木质废料经过热磨处理得到机械木浆;
将造纸污泥经过净化调理后得到再利用污泥;
B、配浆步骤
面层浆料:采用MOW浆和再利用污泥的混合浆作为面层浆料,二者重量比为9:1,另外,面层浆料中还含有占其1%的贝壳粉@海藻酸钠核壳结构环保填料,所述面层浆料占浆料总量的20%;
衬层浆料:采用100%OCC浆作为衬层浆料,衬层浆料占浆料总量的20%;
芯层浆料:采用OCC浆、机械木浆、再利用污泥与白水的混合浆作为芯层浆料,其中,OCC浆、机械木浆、再利用污泥在芯层浆料中的占比分别为30%、30%、25%,另外,芯层浆料中还含有占其7%的贝壳粉@海藻酸钠核壳结构环保填料,所述芯层浆料占浆料总量的40%;
底层浆料:采用采用100%OCC浆作为底层浆料,底层浆料占浆料总量的20%;
C、抄造步骤:将上网浆料经网部脱水成形、压榨、干燥后抄造出成纸。
所述环保填料的制备方法为:将贝壳粉洗净,300℃下煅烧1.5h,冷却后研磨至200目,在700℃下进行二次煅烧,时间为2h;冷却后研磨至500目,得到煅烧贝壳粉备用;用水将海藻酸钠润湿溶解得到溶液,将煅烧贝壳粉添加到海藻酸钠溶液中分散均匀,煅烧贝壳粉与海藻酸钠的质量比例为1:0.8,干燥后得到贝壳粉@海藻酸钠的核壳结构材料。
实施例3
A、制浆步骤
将回收的混合办公废纸经过脱墨处理后得到MOW浆;
将回收的废旧国产瓦楞箱板纸经过碎浆分级筛选后得到OCC浆,其中所得的长纤维浆为OCC浆,中纤维浆为OCC浆,短纤维浆为OCC浆
将木质废料经过热磨处理得到机械木浆;
将造纸污泥经过净化调理后得到再利用污泥;
B、配浆步骤
面层浆料:采用MOW浆和再利用污泥的混合浆作为面层浆料,二者重量比为18:1,另外,面层浆料中还含有占其2%的贝壳粉@海藻酸钠核壳结构环保填料,所述面层浆料占浆料总量的15%;
衬层浆料:采用100%OCC浆作为衬层浆料,衬层浆料占浆料总量的18%;
芯层浆料:采用OCC浆、机械木浆、再利用污泥与白水的混合浆作为芯层浆料,其中,OCC浆、机械木浆、再利用污泥在芯层浆料中的占比分别为35%、40%、15%,另外,芯层浆料中还含有占其5%的贝壳粉@海藻酸钠核壳结构环保填料,所述芯层浆料占浆料总量的52%;
底层浆料:采用采用100%OCC浆作为底层浆料,底层浆料占浆料总量的15%;
C、抄造步骤:将上网浆料经网部脱水成形、压榨、干燥后抄造出成纸。
所述环保填料的制备方法为:将贝壳粉洗净,300℃下煅烧1.5h,冷却后研磨至150目,在600℃下进行二次煅烧,时间为4h;冷却后研磨至600目,得到煅烧贝壳粉备用;用水将海藻酸钠润湿溶解得到溶液,将煅烧贝壳粉添加到海藻酸钠溶液中分散均匀,煅烧贝壳粉与海藻酸钠的质量比例为1:0.5,干燥后得到贝壳粉@海藻酸钠的核壳结构材料。
对比例1
A、制浆步骤
将回收的混合办公废纸经过脱墨处理后得到MOW浆;
将回收的废旧国产瓦楞箱板纸经过碎浆分级筛选后得到OCC浆,其中所得的长纤维浆为OCC浆,中纤维浆为OCC浆,短纤维浆为OCC浆
将造纸污泥经过净化调理后得到再利用污泥;
B、配浆步骤
面层浆料:采用MOW浆和再利用污泥的混合浆作为面层浆料,二者重量比为19:1,另外,面层浆料中还含有占其1%的贝壳粉@海藻酸钠核壳结构环保填料,面层浆料占浆料总量的20%;
衬层浆料:采用100%OCC浆作为衬层浆料,衬层浆料占浆料总量的15%;
芯层浆料:采用OCC浆、再利用污泥与白水的混合浆作为芯层浆料,其中,OCC浆、再利用污泥在芯层浆料中的占比分别为70%、20%,另外,芯层浆料中还含有占其5%的贝壳粉@海藻酸钠核壳结构环保填料,所述芯层浆料占浆料总量的45%;
底层浆料:采用采用100%OCC浆作为底层浆料,底层浆料占浆料总量的20%;
C、抄造步骤:将上网浆料经网部脱水成形、压榨、干燥后抄造出成纸。
环保填料的制备方法同实施例1。
对比例2
A、制浆步骤
将回收的混合办公废纸经过脱墨处理后得到MOW浆;
将回收的废旧国产瓦楞箱板纸经过碎浆分级筛选后得到OCC浆,其中所得的长纤维浆为OCC浆,中纤维浆为OCC浆,短纤维浆为OCC浆
将木质废料经过热磨处理得到机械木浆;
B、配浆步骤
面层浆料:采用100%MOW浆作为面层浆料,面层浆料占浆料总量的20%;
衬层浆料:采用100%OCC浆作为衬层浆料,衬层浆料占浆料总量的15%;
芯层浆料:采用OCC浆、机械木浆与白水的混合浆作为芯层浆料,其中,OCC浆、机械木浆在芯层浆料中的占比分别为55%、35%,另外,芯层浆料中还含有占其5%的贝壳粉@海藻酸钠核壳结构环保填料,所述芯层浆料占浆料总量的45%;
底层浆料:采用采用100%OCC浆作为底层浆料,底层浆料占浆料总量的20%;
C、抄造步骤:将上网浆料经网部脱水成形、压榨、干燥后抄造出成纸。
环保填料的制备方法同实施例1。
对比例3
A、制浆步骤
将回收的混合办公废纸经过脱墨处理后得到MOW浆;
将回收的废旧国产瓦楞箱板纸经过碎浆分级筛选后得到OCC浆,其中所得的长纤维浆为OCC浆,中纤维浆为OCC浆,短纤维浆为OCC浆
将木质废料经过热磨处理得到机械木浆;
将造纸污泥经过净化调理后得到再利用污泥;
B、配浆步骤
面层浆料:采用MOW浆和再利用污泥的混合浆作为面层浆料,二者重量比为19:1,面层浆料占浆料总量的20%;
衬层浆料:采用100%OCC浆作为衬层浆料,衬层浆料占浆料总量的15%;
芯层浆料:采用OCC浆、机械木浆、再利用污泥与白水的混合浆作为芯层浆料,其中,OCC浆、机械木浆、再利用污泥在芯层浆料中的占比分别为35%、35%、20%,芯层浆料占浆料总量的45%;
底层浆料:采用采用100%OCC浆作为底层浆料,底层浆料占浆料总量的20%;
C、抄造步骤:将上网浆料经网部脱水成形、压榨、干燥后抄造出成纸。
经过测试,实施例与对比例所得成纸的指标参数如表1所示
表1
Figure GDA0002946951990000081
由测试数据可见,再利用污泥、核壳结构环保填料等的使用对灰板纸的紧度、层间结合力等性能的提升产生了积极的作用,浆料之间组分的协同作用改善了产品整体强度性能,可获得高强度灰板纸产品,并具有经济的生产成本和良好的市场前景。

Claims (6)

1.一种灰板纸的制备方法,其特征在于包括以下步骤:
A、制浆步骤
将回收的混合办公废纸经过脱墨处理后得到MOW浆;
将回收的废旧瓦楞箱板纸经过碎浆分级筛选后得到OCC浆,其中所得的长纤维浆为OCC浆,中纤维浆为OCC浆,短纤维浆为OCC浆
将木质废料经过热磨蒸煮处理得到机械木浆;
将造纸污泥经过净化调理后得到再利用污泥;
B、配浆步骤
面层浆料:采用MOW浆和再利用污泥的混合浆作为面层浆料,面层浆料占浆料总量的15-20%;
衬层浆料:采用100%OCC浆作为衬层浆料,衬层浆料占浆料总量的15-20%;
芯层浆料:含有OCC浆、机械木浆、再利用污泥与白水的混合浆作为芯层浆料,芯层浆料占浆料总量的40-55%;
底层浆料:采用100%OCC浆作为底层浆料,底层浆料占浆料总量的15-20%;
所述面层浆料中还加入占面层浆料量1-2%的环保填料,芯层浆料中还加入占芯层浆料量5-10%的环保填料,所述环保填料为贝壳粉@海藻酸钠核壳结构材料,该核壳结构中贝壳粉与海藻酸钠的质量比例为1:0.5-1.0,所述环保填料的制备方法为:将贝壳粉洗净,300-350℃下煅烧0.5-1.5h,冷却后研磨至100-200目,在600-700℃下进行二次煅烧,时间为2-4h;冷却后研磨至400-800目,得到煅烧贝壳粉备用;用水将海藻酸钠润湿溶解得到溶液,将煅烧贝壳粉添加到海藻酸钠溶液中分散均匀,煅烧贝壳粉与海藻酸钠的质量比例为1:0.5-1.0,干燥后得到贝壳粉@海藻酸钠核壳结构材料;
C、抄造步骤:将上网浆料经网部脱水成形、压榨、干燥后抄造出成纸。
2.根据权利要求1所述的制备方法,其特征在于:
所述面层浆料中,MOW浆和再利用污泥的重量比为9-19:1;
所述芯层浆料中,OCC浆、机械木浆、再利用污泥的占比分别为25-35%、30-40%、10-25%。
3.根据权利要求2所述的制备方法,其特征在于:
所述面层浆料中,MOW浆和再利用污泥的重量比为19:1;
所述芯层浆料中,OCC浆、机械木浆、再利用污泥的占比分别为35%、35%、20%。
4.根据权利要求1-3任一项所述的制备方法,其特征在于:所述木质废料包括废旧木材、家具加工废料;所述OCC浆的叩解度为23-28°SR,所述OCC浆的叩解度为25-28°SR,所述OCC浆的叩解度为26-33°SR。
5.一种采用权利要求1-4任一项所述制备方法制得的灰板纸。
6.根据权利要求5所述的灰板纸,其特征在于:所述灰板纸定量400-700g/m2,紧度0.57-0.59g/cm3,层间结合力≥130J/m2,纵向挺度15-25mN·m。
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