JP5582599B2 - Weed control method - Google Patents

Weed control method Download PDF

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JP5582599B2
JP5582599B2 JP2010030334A JP2010030334A JP5582599B2 JP 5582599 B2 JP5582599 B2 JP 5582599B2 JP 2010030334 A JP2010030334 A JP 2010030334A JP 2010030334 A JP2010030334 A JP 2010030334A JP 5582599 B2 JP5582599 B2 JP 5582599B2
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melting furnace
granulated slag
waste melting
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JP2011163088A (en
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寿博 宮谷
光也 村田
勇治 関
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Nippon Steel Engineering Co Ltd
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Description

本発明は、雑草の成長を抑制する防草工法に関する。   The present invention relates to a herbicidal construction method that suppresses the growth of weeds.

公園の植栽部や舗装されていない通路、あるいは道路の中央分離帯などの植栽部などにおいては、雑草が生え、放置すると雑草が成長して蔓延してしまう。   In a planting part of a park, an unpaved passage, or a planting part such as a median strip of a road, weeds grow, and if left untreated, weeds grow and spread.

従来、このような雑草の成長を抑制する防草工法として、植栽の周りを防草シートで覆う方法が知られている。しかし、この方法では、植栽周りへの降雨などによる吸水に支障が出る懸念がある。   2. Description of the Related Art Conventionally, as a herbicidal construction method that suppresses the growth of weeds, a method of covering a planting area with a herbicidal sheet is known. However, there is a concern that this method may interfere with water absorption due to rainfall around the planting.

また、地面上に天然砂や土を敷設施工して日光を遮断することで、雑草の成長を抑制する方法もある。しかし、天然砂や土には雑草の種が混入していることがあり、そのため敷設施工した天然砂や土から雑草が生え成長することがある。天然砂や土を高温で熱処理すれば雑草の種を除くことはできるが、そうすると材料費用が高価となる。   In addition, there is a method of suppressing the growth of weeds by laying natural sand or soil on the ground and blocking sunlight. However, there are cases where weed seeds are mixed in natural sand and soil, so weeds may grow and grow from the natural sand and soil laid. Weed seeds can be removed by heat treating natural sand or soil at high temperatures, but this increases the material costs.

一方、特許文献1には、銅の精錬の残滓として得られる銅精錬スラグを敷設施工する防草工法が開示されている。銅精錬スラグには雑草の種の混入の問題はない。しかし、銅精錬スラグは金属鉄を含むから、すぐに表面がさびて赤くなり、そのさびによる赤い汁が施工場所に流れ出したり、さびによる赤い粉が飛び散ったりして、施工場所の美観や環境を損ねることがある。また、敷設施工した銅精錬スラグに触れるとさびによって身体や衣服を汚す可能性もある。さらに、銅精錬スラグは金属鉄を含むこともあってとげとげしい形状を有するので、作業者の手に刺さったりして作業性が悪い。また、とげとげしい形状であることから、敷設施工時に転圧しにくく、また転圧すると粉塵が舞い上がり、作業環境が悪化する。銅精錬スラグを磨砕すれば作業性は改善されるが、銅精錬スラグに新しい表面ができてさびが進行し、上述の赤い汁や赤い粉が発生する可能性が増す。   On the other hand, Patent Document 1 discloses a herbicidal construction method for laying and constructing copper smelting slag obtained as a residue of copper refining. Copper refining slag has no problem of weed seeds. However, since copper smelting slag contains metallic iron, the surface immediately rusts and becomes red, and red juice from the rust flows out to the construction site, and red powder from the rust scatters, which improves the aesthetics and environment of the construction site. It may be damaged. In addition, if you touch the smelted copper slag, rust may contaminate your body and clothes. Furthermore, since the copper smelting slag includes a metallic iron and has a dignified shape, the workability is poor due to being stuck in the hand of the operator. Moreover, since it is a terrible shape, it is hard to roll at the time of laying construction, and when it rolls, dust rises and a working environment deteriorates. Grinding copper refining slag improves workability, but the copper refining slag has a new surface and rust progresses, increasing the likelihood that the above red juice and red powder will be generated.

また、特許文献2には、高炉スラグに樹脂を被覆したものを雑草抑制材粒子として敷設施工する防草工法が開示されているが、高炉スラグに樹脂を被覆するため、その工程が複雑となり材料費用が高価となる。   Patent Document 2 discloses a herbicidal construction method in which a blast furnace slag coated with a resin is laid and constructed as weed control material particles. However, since the resin is coated on the blast furnace slag, the process becomes complicated. Expense becomes expensive.

特開2003−219783号公報Japanese Patent Laid-Open No. 2003-219783 特許第2933566号公報Japanese Patent No. 2933566

本発明が解決しようとする課題は、材料費用が安価であり、施工性にも優れ、施工後の美観や環境も良好に維持できる防草工法を提供することにある。   The problem to be solved by the present invention is to provide a herbicidal construction method that is inexpensive in material, excellent in workability, and can maintain good aesthetics and environment after construction.

本発明の防草工法は、一般廃棄物及び産業廃棄物を廃棄物溶融炉にて1200℃以上の高温で溶融処理し発生する溶融物を水で急速粉砕し、磁選で金属鉄分を除くことにより得られる廃棄物溶融炉水砕スラグを所定厚みに敷設施工することで、下部からの雑草成長を抑制するものである。なお、廃棄物溶融炉水砕スラグの鉄の含有率は、金属鉄で1質量%以下であり、酸化鉄を含む全鉄で6質量%以下である。   The herbicidal construction method of the present invention is a method of melting general waste and industrial waste at a high temperature of 1200 ° C. or higher in a waste melting furnace, rapidly pulverizing the generated melt with water, and removing metallic iron by magnetic separation. By laying and constructing the obtained waste melting furnace granulated slag to a predetermined thickness, weed growth from the lower part is suppressed. In addition, the content rate of iron of waste melting furnace granulated slag is 1 mass% or less with metal iron, and is 6 mass% or less with the total iron containing iron oxide.

このように本発明では、廃棄物溶融炉水砕スラグを使用する。この廃棄物溶融炉水砕スラグは一般廃棄物及び産業廃棄物の溶融物から得られるので、材料費用は極めて安価である。また、廃棄物溶融炉水砕スラグは1200℃以上の高温処理を経て得られることから、雑草の種がないので、これを所定厚みに敷設施工することで下部からの雑草成長を抑制することができるとともに、その敷設層からの雑草の発生も抑制することができる。さらに、廃棄物溶融炉水砕スラグは、磁選で金属鉄分を除くことにより得られるので、上述の銅精錬スラグのようにさびて赤い汁や赤い粉が発生することはない。また、廃棄物溶融炉水砕スラグは、上述の銅精錬スラグのようなとげとげしい形状ではないので、銅精錬スラグに比べて転圧しやすく作業性も良好である。   Thus, in this invention, a waste melting furnace granulated slag is used. Since this waste melting furnace granulated slag is obtained from the melt of general waste and industrial waste, the material cost is extremely low. In addition, since the waste melting furnace granulated slag is obtained through a high-temperature treatment of 1200 ° C or higher, there is no seed of weeds, so that it is possible to suppress weed growth from below by laying and constructing it to a predetermined thickness. In addition, the generation of weeds from the laying layer can be suppressed. Furthermore, since the waste melting furnace granulated slag is obtained by removing metallic iron by magnetic separation, it does not rust and produce red juice or red powder unlike the above-described copper refining slag. In addition, since the waste melting furnace granulated slag is not a rugged shape like the above-described copper smelting slag, it is easier to roll and has better workability than the copper smelting slag.

また、本発明の防草工法では、表層部に使用する廃棄物溶融炉水砕スラグの保水機能により、降雨後に表層部温度が低下する効果があり、ヒートアイランド対策にも期待できる。   Moreover, in the herbicidal construction method of the present invention, the water retention function of the waste melting furnace granulated slag used for the surface layer portion has an effect of lowering the surface layer temperature after the rain, and can be expected as a countermeasure for heat island.

本発明の防草工法では、廃棄物溶融炉水砕スラグの機械的な粉砕処理と磨砕処理の少なくとも一方の処理を行うことにより、廃棄物溶融炉水砕スラグの粒度調整を行い、粒度調整された廃棄物溶融炉水砕スラグを所定厚みに敷設施工することが好ましい。機械的な粉砕処理は、回転軸を持った装置にて回転歯と固定歯の間で廃棄物溶融炉水砕スラグを粉砕することにより行うことができる。また、機械的な磨砕処理は、廃棄物溶融炉水砕スラグを回転ドラムに投入して廃棄物溶融炉水砕スラグを磨砕することにより行うことができる。   In the herbicidal construction method of the present invention, the particle size of the waste melting furnace granulated slag is adjusted by performing at least one of mechanical grinding and grinding of the waste melting furnace granulated slag to adjust the particle size. It is preferable that the waste melting furnace granulated slag is laid and constructed to a predetermined thickness. The mechanical pulverization treatment can be performed by pulverizing the waste melting furnace granulated slag between the rotating teeth and the fixed teeth with an apparatus having a rotating shaft. The mechanical grinding treatment can be performed by putting the waste melting furnace water granulated slag into a rotating drum and grinding the waste melting furnace water granulated slag.

廃棄物溶融炉水砕スラグは、破砕処理や磨砕処理により比較的容易に粒度調整を行うことができ、その結果、廃棄物溶融炉水砕スラグの粒度が微粒から粗粒まで万遍なく分布するようになり、転圧性が向上する。また、廃棄物溶融炉水砕スラグは角張った形状を有するが、磨砕処理を行うと角張った形状が丸まり、作業者の手にも優しくなって作業性が向上し、転圧性もさらに向上する。さらに、磨砕処理により角張った形状を丸めた廃棄物溶融炉水砕スラグを敷設施工することにより、とくに人が通行する施工現場では、その人にも優しくなり、転倒などによるケガが発生しにくくなる。なお、廃棄物溶融炉水砕スラグは、磁選で金属鉄分を除くことにより得られるので、破砕処理や磨砕処理によって新しい表面ができても上述の銅精錬スラグのようにさびが発生することはない。   Waste melting furnace granulated slag can be adjusted in particle size relatively easily by crushing and grinding processes. As a result, the particle size of waste melting furnace granulated slag is uniformly distributed from fine to coarse particles. Thus, the rolling property is improved. In addition, the waste melting furnace granulated slag has an angular shape, but when the grinding process is performed, the angular shape is rounded, and it becomes gentler to the operator's hand, improving the workability and further improving the rolling property. . Furthermore, by laying and constructing waste melting furnace water granulated slag rounded into a square shape by grinding, it becomes gentler to the person, especially at construction sites where people pass, and is less likely to cause injury due to falls. Become. In addition, because waste melting furnace granulated slag is obtained by removing metallic iron by magnetic separation, even if a new surface is created by crushing or grinding, rust is generated like the above-mentioned copper refining slag. Absent.

本発明の防草工法では、廃棄物溶融炉水砕スラグにセメント又は液状樹脂を混合したものを、少なくとも表層に敷設施工することが好ましい。セメントを混合する場合は、敷設施工後、表層に水を散布することで、表層を適度に一体化させることができる。液状樹脂を混合する場合は、その液状樹脂の粘性により、表層を適度に一体化させることができる。液状樹脂としては自然乾燥により固化するものが好ましい。このように、廃棄物溶融炉水砕スラグにセメント又は液状樹脂を混合したものを、少なくとも表層に敷設施工することで、表層からの廃棄物溶融炉水砕スラグの飛散を防止することができる。   In the herbicidal construction method of the present invention, it is preferable to lay and construct at least the surface layer of a waste melting furnace granulated slag mixed with cement or liquid resin. When mixing cement, after laying construction, the surface layer can be appropriately integrated by spraying water on the surface layer. When mixing the liquid resin, the surface layer can be appropriately integrated by the viscosity of the liquid resin. The liquid resin is preferably one that solidifies by natural drying. As described above, the waste melting furnace granulated slag mixed with cement or liquid resin is laid and constructed on at least the surface layer, whereby scattering of the waste melting furnace granulated slag from the surface layer can be prevented.

また、敷設施工した廃棄物溶融炉水砕スラグの表層に液状樹脂を散布して廃棄物溶融炉水砕スラグの表層に樹脂をコーティングすることによっても、表層を適度に一体化させることができ、表層からの廃棄物溶融炉水砕スラグの飛散を防止することができる。液状樹脂としては、上述のように自然乾燥により固化するものが好ましい。   Also, the surface layer can be appropriately integrated by spraying a liquid resin on the surface layer of the waste melting furnace granulated slag that has been laid and coating the resin on the surface layer of the waste melting furnace granulated slag, Scattering of the waste melting furnace granulated slag from the surface layer can be prevented. As the liquid resin, those which are solidified by natural drying as described above are preferable.

本発明の防草工法では廃棄物溶融炉水砕スラグを使用するので、材料費用が安価であり、施工性にも優れ、施工後の美観や環境も良好に維持できる。また、本発明によって廃棄物溶融炉水砕スラグの新規用途を開拓でき、廃棄物溶融炉水砕スラグの有効利用を図ることができる。   Since the waste-melting furnace granulated slag is used in the herbicidal construction method of the present invention, the material cost is low, the workability is excellent, and the aesthetics and environment after construction can be maintained well. Moreover, the novel use of a waste melting furnace granulated slag can be exploited by this invention, and the effective utilization of a waste melting furnace granulated slag can be aimed at.

本発明の防草工法の実施形態を示す説明図である。It is explanatory drawing which shows embodiment of the herbicidal construction method of this invention.

以下、図面を参照して本発明の実施形態を示す。   Embodiments of the present invention will be described below with reference to the drawings.

図1は、本発明の防草工法の実施形態を示す説明図である。本発明では、公園の植栽部や舗装されていない通路、あるいは道路の中央分離帯などの植栽部などに、廃棄物溶融炉水砕スラグを所定厚みに敷設施工することで、下部からの雑草成長を抑制する。廃棄物溶融炉水砕スラグは、一般廃棄物及び産業廃棄物を廃棄物溶融炉にて1200℃以上の高温で溶融処理し発生する溶融物を水で急速粉砕し、磁選で金属鉄分を除くことにより得られる。好ましい実施形態では、この廃棄物溶融炉水砕スラグを回転ドラムに投入して廃棄物溶融炉水砕スラグを磨砕する磨砕処理を行ったものを廃棄物溶融炉水砕スラグ1として使用する。なお、本発明では、磨砕処理に代えて破砕処理を行ってもよく、破砕処理に続けて磨砕処理を行ってもよい。また、破砕処理及び磨砕処理を行うことなく、敷設施工してもよい。   FIG. 1 is an explanatory view showing an embodiment of the herbicidal construction method of the present invention. In the present invention, the waste melting furnace granulated slag is laid and constructed in a predetermined thickness on a planting part of a park, a non-paved passage, or a planting part such as a median strip of a road. Suppresses weed growth. Waste smelting furnace granulated slag is a process of melting general waste and industrial waste in a waste melting furnace at a high temperature of 1200 ° C or higher, rapidly pulverizing the melt with water, and removing metallic iron by magnetic separation. Is obtained. In a preferred embodiment, the waste melting furnace water granulated slag is used as the waste melting furnace water granulated slag 1 after the waste melting furnace water granulated slag is put into a rotating drum and subjected to grinding treatment for grinding the waste melting furnace water granulated slag. . In the present invention, the crushing process may be performed instead of the crushing process, or the crushing process may be performed following the crushing process. Moreover, you may lay construction without performing a crushing process and a grinding process.

図1(a)は、廃棄物溶融炉水砕スラグ1を転圧して所定厚みに敷設施工する実施形態である。廃棄物溶融炉水砕スラグ1の施工厚みは3〜20cm程度が適当であるが、その施工厚みは日光を遮断して下部からの雑草成長を抑制できる程度であればよく、具体的には3cm以上あればよい。施工厚みの上限はとくに規定されないが、あまり厚くしても意味がないので、現実的には20cm程度が上限と考えてよい。   FIG. 1A shows an embodiment in which a waste melting furnace granulated slag 1 is rolled and laid to a predetermined thickness. The construction thickness of the waste melting furnace granulated slag 1 is suitably about 3 to 20 cm, but the construction thickness only needs to be enough to block sunlight and suppress weed growth from below, specifically 3 cm. That's all you need. Although the upper limit of the construction thickness is not particularly defined, it is meaningless to make it too thick, so in practice it may be considered that the upper limit is about 20 cm.

図1(b)は、廃棄物溶融炉水砕スラグ1を所定厚みに敷設施工し、さらにその表層に廃棄物溶融炉水砕スラグにセメント又は液状樹脂を混合したもの(以下「廃棄物溶融炉水砕スラグ混合物1a」という。)を敷設施工する実施形態である。廃棄物溶融炉水砕スラグ1の施工厚みは3〜20cm程度、廃棄物溶融炉水砕スラグ混合物1aの施工厚みは1〜5cm程度が適当である。   Fig. 1 (b) shows a construction in which waste melting furnace granulated slag 1 is laid and constructed to a predetermined thickness, and further, cement or liquid resin is mixed with waste melting furnace granulated slag on the surface layer (hereinafter referred to as "waste melting furnace" This is an embodiment in which the granulated slag mixture 1a ") is laid and constructed. The construction thickness of the waste melting furnace granulated slag 1 is about 3 to 20 cm, and the construction thickness of the waste melting furnace granulated slag mixture 1a is about 1 to 5 cm.

セメントを混合する場合は、敷設施工後、表層に水を散布することで、表層を適度に一体化させる。セメントの混合割合は適宜決定することができるが、廃棄物溶融炉水砕スラグ1の100質量部に対してセメントを3〜20質量部混合するのが適当である。一方、液状樹脂を混合する場合は、その液状樹脂の粘性により、表層を適度に一体化させる。液状樹脂としては自然乾燥により固化するものが好ましい。例えば日本製紙ケミカル(株)製の「サンローズ」(カルボキシメチルセルロースナトリウム)を使用することができる。液状樹脂の混合割合は廃棄物溶融炉水砕スラグ1の100質量部に対して液状樹脂を3〜10質量部混合するのが適当である。液状樹脂は、液状樹脂用粉末:水=100:10の割合で混合して製作した。   When mixing cement, after laying construction, the surface layer is appropriately integrated by spraying water on the surface layer. The mixing ratio of the cement can be appropriately determined, but it is appropriate to mix 3 to 20 parts by mass of cement with respect to 100 parts by mass of the waste melting furnace granulated slag 1. On the other hand, when liquid resin is mixed, the surface layer is appropriately integrated by the viscosity of the liquid resin. The liquid resin is preferably one that solidifies by natural drying. For example, “Sunrose” (sodium carboxymethylcellulose) manufactured by Nippon Paper Chemicals Co., Ltd. can be used. As for the mixing ratio of the liquid resin, it is appropriate to mix 3 to 10 parts by mass of the liquid resin with respect to 100 parts by mass of the waste melting furnace granulated slag 1. The liquid resin was prepared by mixing at a ratio of powder for liquid resin: water = 100: 10.

このように廃棄物溶融炉水砕スラグ混合物1aを表層に敷設施工することで、表層からの廃棄物溶融炉水砕スラグの飛散を防止することができる。なお、図1(b)の実施形態では、表層にのみ廃棄物溶融炉水砕スラグ混合物1aを施工したが、全体を廃棄物溶融炉水砕スラグ混合物1aで施工してもよい。ただし、表層からの廃棄物溶融炉水砕スラグの飛散を防止するには、表層に廃棄物溶融炉水砕スラグ混合物1aを施工すれば十分であり、材料費用や透水性確保の点から、廃棄物溶融炉水砕スラグ1を所定厚みに敷設施工し、その表層に廃棄物溶融炉水砕スラグ混合物1aを敷設施工するのが好ましい。   Thus, by laying and constructing the waste melting furnace granulated slag mixture 1a on the surface layer, scattering of the waste melting furnace granulated slag from the surface layer can be prevented. In addition, in embodiment of FIG.1 (b), although the waste melting furnace granulated slag mixture 1a was constructed only to the surface layer, you may construct the whole with the waste melting furnace granulated slag mixture 1a. However, in order to prevent dispersion of the waste melting furnace granulated slag from the surface layer, it is sufficient to construct the waste melting furnace granulated slag mixture 1a on the surface layer. It is preferable that the material melting furnace granulated slag 1 is laid and constructed to a predetermined thickness, and the waste melting furnace granulated slag mixture 1a is laid and constructed on the surface layer.

図1(c)は廃棄物溶融炉水砕スラグ1を所定厚みに敷設施工し、その表層に液状樹脂2を散布して廃棄物溶融炉水砕スラグの表層に樹脂をコーティングする実施形態である。この形態によっても、廃棄物溶融炉水砕スラグ1の表層を適度に一体化させることができ、表層からの廃棄物溶融炉水砕スラグの飛散を防止することができる。液状樹脂としては図1(b)の実施形態と同様に自然乾燥により固化するものが好ましく、例えば日本製紙ケミカル(株)製の「サンローズ」を使用することができる。液状樹脂の散布量は、5〜80g/m(液状樹脂用粉末のみの重量)程度が好ましい。 FIG. 1C shows an embodiment in which a waste melting furnace granulated slag 1 is laid and constructed to a predetermined thickness, and a liquid resin 2 is sprayed on the surface layer to coat the resin on the surface of the waste melting furnace granulated slag. . Also according to this embodiment, the surface layer of the waste melting furnace granulated slag 1 can be appropriately integrated, and scattering of the waste melting furnace granulated slag from the surface layer can be prevented. The liquid resin is preferably one that is solidified by natural drying as in the embodiment of FIG. 1B. For example, “Sunrose” manufactured by Nippon Paper Chemicals Co., Ltd. can be used. The spray amount of the liquid resin is preferably about 5 to 80 g / m 2 (weight of the liquid resin powder alone).

図1(a)の実施形態に基づき、磨砕処理後の廃棄物溶融炉水砕スラグを公園の未舗装の通路に転圧して5cmの厚みに敷設施工した。敷設施工後の設計CBRは20%以上で、十分に締まっており、転圧性も良好であった。そして、敷設施工後、1年4ヶ月を経過しても、雑草の発生は見られなかった。施工面には、自動車の通過によるタイヤの跡は見られたが、強度は保たれていた。また、施工現場周辺に赤い汁の流れ出しや赤い粉の飛散は見られなかった。   Based on the embodiment of FIG. 1 (a), the waste melting furnace granulated slag after the grinding treatment was laid down and laid to a thickness of 5 cm by rolling it into an unpaved passage in the park. The design CBR after laying construction was 20% or more, sufficiently tightened, and the rolling property was also good. And even if 1 year and 4 months passed after laying construction, generation | occurrence | production of the weed was not seen. On the construction surface, there were traces of tires due to the passage of automobiles, but the strength was maintained. In addition, no red juice flowed out or red powder scattered around the construction site.

1 廃棄物溶融炉水砕スラグ
1a 廃棄物溶融炉水砕スラグ混合物
2 液状樹脂
1 Waste melting furnace granulated slag 1a Waste melting furnace granulated slag mixture 2 Liquid resin

Claims (4)

一般廃棄物及び産業廃棄物を廃棄物溶融炉にて1200℃以上の高温で溶融処理し発生する溶融物を水で急速粉砕し、磁選で金属鉄分を除き、その金属鉄分の含有率を金属鉄で1質量%以下とした廃棄物溶融炉水砕スラグを所定厚みに敷設施工することで、下部からの雑草成長を抑制する防草工法。 Municipal waste and industrial waste waste melt melting furnace by melt processing at a high temperature of at least 1200 ° C. occur rapidly triturated with water, Except the metal iron in magnetic separation, metal content of the metal iron A herbicidal construction method that suppresses the growth of weeds from the lower part by laying and constructing a waste melting furnace granulated slag of 1 mass% or less with iron to a predetermined thickness. 廃棄物溶融炉水砕スラグの機械的な粉砕処理と磨砕処理の少なくとも一方の処理を行うことにより、廃棄物溶融炉水砕スラグの粒度調整を行い、粒度調整された廃棄物溶融炉水砕スラグを所定厚みに敷設施工する請求項1に記載の防草工法。   The particle size of the waste melting furnace granulated slag is adjusted by performing at least one of mechanical grinding and grinding of the waste melting furnace granulated slag. The herbicidal construction method according to claim 1, wherein the slag is laid and constructed to a predetermined thickness. 廃棄物溶融炉水砕スラグにセメント又は液状樹脂を混合したものを、少なくとも表層に敷設施工する請求項1又は2に記載の防草工法。   The herbicidal construction method according to claim 1 or 2, wherein at least a surface layer of a waste melting furnace granulated slag mixed with cement or a liquid resin is laid and constructed. 敷設施工した廃棄物溶融炉水砕スラグの表層に液状樹脂を散布して廃棄物溶融炉水砕スラグの表層に樹脂をコーティングする請求項1又は2に記載の防草工法。   The herbicidal construction method according to claim 1 or 2, wherein the resin layer is coated on the surface layer of the waste melting furnace granulated slag by spraying a liquid resin on the surface layer of the waste melting furnace granulated slag that has been laid and constructed.
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