JP5798337B2 - Spiral cylinder and aerobic tank equipped with the same - Google Patents

Spiral cylinder and aerobic tank equipped with the same Download PDF

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JP5798337B2
JP5798337B2 JP2011038401A JP2011038401A JP5798337B2 JP 5798337 B2 JP5798337 B2 JP 5798337B2 JP 2011038401 A JP2011038401 A JP 2011038401A JP 2011038401 A JP2011038401 A JP 2011038401A JP 5798337 B2 JP5798337 B2 JP 5798337B2
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diffuser
air
cylinder
diffusion
holes arranged
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JP2012170946A (en
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教市 真鍋
教市 真鍋
祐子 本多
祐子 本多
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Sumitomo Heavy Industries Environment Co Ltd
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    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
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    • Y02WCLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO WASTEWATER TREATMENT OR WASTE MANAGEMENT
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Description

本発明は、散気筒及びこれを備えた好気槽に関する。   The present invention relates to a dispersion cylinder and an aerobic tank provided with the same.

排水処理施設において排水を好気性微生物により浄化するために、反応タンク内の好気性微生物に空気を供給するための散気装置を水中に設置するのが一般的である。このような散気装置では、送風機からライザー管及びヘッダー管を通じて散気装置に圧入された空気が、散気装置の散気面に多数設けられた散気孔から微細気泡として水中に供給され、排水への酸素溶解が行われる。散気装置を構成する散気部材の形状としては、板状(特許文献1)、筒状(特許文献2)等、様々な形状が知られている。   In order to purify wastewater with aerobic microorganisms in a wastewater treatment facility, it is common to install a diffuser for supplying air to the aerobic microorganisms in the reaction tank. In such an air diffuser, air that is pressed into the air diffuser from the blower through the riser pipe and the header pipe is supplied into the water as fine bubbles from the air diffuser holes provided on the air diffuser surface of the air diffuser. Oxygen dissolution is performed. Various shapes, such as a plate shape (Patent Document 1) and a cylindrical shape (Patent Document 2), are known as the shape of the air diffuser constituting the air diffuser.

特開2005−103387号公報JP 2005-103387 A 特開2007−14842号公報JP 2007-14842 A

筒状の散気部材(以下、散気筒という)を長期間使用した場合、何らかの原因により散気孔の目詰まりが発生し、圧力損失が増大することがある。そこで本発明は、散気孔の目詰まりが防止でき、圧力損失の低減を達成することができる散気筒、及び、これを備える好気槽を提供することを目的とする。   When a cylindrical air diffuser (hereinafter referred to as “air diffuser”) is used for a long time, the air diffuser may be clogged for some reason, and the pressure loss may increase. Therefore, an object of the present invention is to provide a diffusion cylinder capable of preventing clogging of the air diffusion holes and achieving a reduction in pressure loss, and an aerobic tank including the same.

ここで、散気孔の目詰まりが発生し、圧力損失が増大する原因について本発明者等が鋭意検討した結果、次のことが判明した。すなわち、水中に設置された散気筒では、その上側と下側との間に散気筒の直径分の水深差があることから、水圧の低い上側からは発泡しやすく、水圧の高い下側からは発泡しにくい。このため、特に発泡しにくい下側の散気孔に汚水等が入り込み散気装置内部に浸入した汚水が乾燥して乾燥汚泥片となり、散気孔の目詰まりが発生し、圧力損失の増大を引き起こすことが分かった。更に、このような状況は、発泡させる空気量が少ない場合に特に顕著となることが分かった。   Here, as a result of intensive studies by the present inventors on the cause of the clogging of the air diffusion holes and the increase in pressure loss, the following has been found. That is, in the spread cylinder installed in the water, there is a difference in water depth by the diameter of the spread cylinder between the upper side and the lower side, so it is easy to foam from the upper side where the water pressure is low, and from the lower side where the water pressure is high Difficult to foam. For this reason, sewage enters the lower diffuser holes that are particularly difficult to foam, and the sewage that has entered the diffuser becomes dry and becomes sludge fragments, causing clogging of the diffuser holes and increasing pressure loss. I understood. Furthermore, it has been found that such a situation becomes particularly remarkable when the amount of air to be foamed is small.

そこで本発明は、伸縮性を有する素材から成り、支持管の外周面に設けられた散気膜に軸線方向及び軸線回りに複数の散気孔が並設された散気筒であって、軸線回りの方向の任意の位置において、軸線方向に複数並設された散気孔の開口面積の合計は、散気筒を設置したときの鉛直方向下側の並びの合計のほうが、これより上側の並びの合計よりも大きい散気筒を提供する。このような散気筒によれば、水圧の高い下側の散気孔からの発泡が容易となり、水圧の低い上側と同程度に発泡させることができる。すなわち、発泡を散気面全体で均一にすることができ、散気孔の目詰まりが防止でき、圧力損失の低減を達成することができる。
Therefore, the present invention is a diffusion cylinder comprising a material having elasticity, and a diffusion film provided on the outer peripheral surface of the support tube, in which a plurality of diffusion holes are provided in parallel in the axial direction and around the axial line. At any position in the direction, the total opening area of a plurality of diffused holes arranged side by side in the axial direction is the sum of the lower rows in the vertical direction when the diffusion cylinder is installed than the sum of the upper rows Also provide a larger cylinder. According to such a diffusion cylinder, foaming from the lower air diffusion hole having a high water pressure is facilitated, and foaming can be performed to the same extent as the upper side having a low water pressure. That is, foaming can be made uniform over the entire diffuser surface, clogging of the diffuser holes can be prevented, and a reduction in pressure loss can be achieved.

ここで、鉛直方向下側の並びの散気孔は、これより上側の並びの散気孔よりも、孔径が大きい、又は、孔を構成するスリット長及びスリット幅の少なくとも一方が大きいことが好ましい。散気孔の形状をこのような構成とすることにより、水圧の高い下側の散気孔からの発泡がより容易なものとなる。   Here, it is preferable that the arrangement of the diffuser holes on the lower side in the vertical direction has a larger hole diameter or at least one of the slit length and the slit width constituting the hole than the diffuser holes on the upper side. By adopting such a configuration of the shape of the diffuser holes, foaming from the lower diffuser holes having a high water pressure becomes easier.

また、鉛直方向下側の並びの散気孔は、これより上側の並びの散気孔よりも数が多いことが好ましい。このような構成によれば、散気孔の形状等が散気筒の上側と下側とでたとえ同一である場合であっても、水圧の高い下側の散気孔からの発泡がより容易なものとなる。   Moreover, it is preferable that the number of the diffused holes arranged in the lower side in the vertical direction is larger than the number of diffused holes arranged in the upper side. According to such a configuration, even if the shape and the like of the diffuser holes are the same on the upper and lower sides of the diffuser cylinder, foaming from the lower diffuser holes with high water pressure is easier. Become.

これによって、発泡させる空気量が少ない場合であっても、水圧の高い下側から発泡がしやすくなり、発生した気泡は水圧の低い上側の表面に沿って上昇して、目詰まり抑制の効果が期待できる。   As a result, even when the amount of air to be foamed is small, foaming easily occurs from the lower side of the high water pressure, and the generated bubbles rise along the upper surface of the low water pressure, which has the effect of suppressing clogging. I can expect.

また、本発明は、上記散気筒を備えた好気槽を提供する。本発明の散気筒は、上述のように、散気筒の散気面全体から均一に発泡され、散気孔の目詰まりが防止でき、圧力損失の低減を達成することができるため、排水を好気性微生物により浄化する好気槽に対して好適に用いることができる。   Moreover, this invention provides the aerobic tank provided with the said dispersion cylinder. As described above, the diffuser cylinder of the present invention is uniformly foamed from the entire diffuser surface of the diffuser cylinder, can prevent clogging of the diffuser holes, and can achieve a reduction in pressure loss. It can be suitably used for an aerobic tank to be purified by microorganisms.

本発明によれば、散気孔の目詰まりを防止でき、圧力損失の低減を達成することができる散気筒、及び、これを備える好気槽を提供することができる。   According to the present invention, it is possible to provide a diffusion cylinder that can prevent clogging of the air diffusion holes and achieve a reduction in pressure loss, and an aerobic tank including the same.

本実施形態の散気筒の一部破断側面図である。It is a partially broken side view of the dispersion cylinder of this embodiment. 図1のII−II線に沿った端面図である。FIG. 2 is an end view taken along line II-II in FIG. 1. 本実施形態の散気筒の散気膜の展開図である。It is an expanded view of the diffuser film of the diffuser cylinder of this embodiment.

以下、本発明の好適な実施形態について図面を参照しながら説明する。なお、図面の説明において同一要素には同一の符号を付し、重複する説明は省略する。   Preferred embodiments of the present invention will be described below with reference to the drawings. In the description of the drawings, the same elements are denoted by the same reference numerals, and redundant descriptions are omitted.

図1は、本実施形態の散気筒5の一部破断側面図、図2は、図1のII−II線に沿った端面図である。図1に示すように、散気装置1は、送風機に通じ上下方向に延びるライザー管(図示せず)と連結され水平方向(図1の紙面垂直方向)に延びる空気供給管3と、その空気供給管3の軸線に略直交する水平方向(図1の左右方向)に延びる散気筒5とを含んで構成されている。この散気筒5は、空気供給管3に対し、紙面垂直方向に複数が並設されている。   FIG. 1 is a partially broken side view of a dust cylinder 5 of the present embodiment, and FIG. 2 is an end view taken along line II-II in FIG. As shown in FIG. 1, the air diffuser 1 is connected to a riser pipe (not shown) that extends in the vertical direction through the blower and extends in the horizontal direction (vertical direction in FIG. 1), and its air And a dispersion cylinder 5 extending in a horizontal direction (left-right direction in FIG. 1) substantially orthogonal to the axis of the supply pipe 3. A plurality of the scattering cylinders 5 are arranged in parallel to the air supply pipe 3 in the direction perpendicular to the paper surface.

空気供給管3と散気筒5との連結部には、通気孔3aが形成されており、空気供給管3は、ライザー管を通して送風されてきた空気を通気孔3aを通して散気筒5に供給する。   A vent hole 3a is formed in a connecting portion between the air supply pipe 3 and the diffuser cylinder 5, and the air supply pipe 3 supplies air blown through the riser pipe to the diffuser cylinder 5 through the vent hole 3a.

散気筒5は、円筒状の支持管7を有すると共に、外筒を成す散気膜31を有する。空気供給管3からの空気は、上記通気孔3aを介し、支持管7と散気膜31との間の隙間35に導入される。   The diffusion cylinder 5 has a cylindrical support tube 7 and an air diffusion membrane 31 that forms an outer cylinder. Air from the air supply pipe 3 is introduced into the gap 35 between the support pipe 7 and the diffuser membrane 31 through the vent hole 3a.

散気膜31は、例えばゴム等の伸縮性を有する素材から構成されており、散気膜31にあっては、散気孔として散気スリットSが複数形成されている。   The diffuser film 31 is made of a stretchable material such as rubber, and the diffuser film 31 has a plurality of diffuser slits S as diffuser holes.

ここで、散気膜31に形成された散気スリットSについて説明する。図3は、本実施形態の散気筒5の散気膜31の展開図である。この展開図は、散気膜31を支持管7の下側から切り開いて展開した様子を示している。   Here, the diffuser slit S formed in the diffuser film 31 will be described. FIG. 3 is a development view of the diffuser film 31 of the diffusion cylinder 5 of the present embodiment. This development view shows a state where the diffuser membrane 31 is cut open from the lower side of the support tube 7 and developed.

散気スリットSは、軸線方向(図示左右方向)及び軸線回り(図示上下方向)に複数並設されている。そして、軸線回りの方向の任意の位置において、軸線方向に複数並設された散気スリットSの開口面積の合計について、散気筒5を設置したときの鉛直方向下側の並びの合計のほうが、これより上側の並びの合計よりも大きくなるように散気スリットSが形成されている。   A plurality of aeration slits S are arranged side by side in the axial direction (left-right direction in the figure) and around the axis (up-down direction in the figure). And, at any position in the direction around the axis, the total of the opening areas of the plurality of aeration slits S arranged side by side in the axial direction is the sum of the arrangement on the lower side in the vertical direction when the diffusion cylinder 5 is installed, The diffuser slit S is formed so as to be larger than the total of the upper side of the array.

言い換えると、散気膜31の表面のうち、散気スリットSを有する領域を、散気筒5を設置したときに鉛直方向上側となる部分から下側となる部分へ沿って複数の領域に等分して複数の等分領域に分割したことを想定した場合に、散気時の散気スリットSの開口面積について、下側に位置する等分領域における開口面積の合計が、上側に位置する等分領域における開口面積の合計よりも大きくなるように散気スリットSが形成されている。   In other words, the region having the diffuser slit S on the surface of the diffuser membrane 31 is equally divided into a plurality of regions along the portion located on the upper side in the vertical direction when the diffuser cylinder 5 is installed. Assuming that it is divided into a plurality of equally divided regions, the total of the opening areas in the equally divided regions located on the lower side of the diffused slit S at the time of aeration is located on the upper side, etc. The air diffusion slit S is formed so as to be larger than the total opening area in the partial region.

具体的には、軸線回りの方向の任意の位置における鉛直方向下側の並び(例えば1列)の散気スリットSが、これより上側の並び(例えば1列)の散気スリットSよりもスリット幅(図示上下方向幅)が大きい形状とされている。すなわち、当該スリット幅は、散気筒5の鉛直方向上側となる部分から下側となる部分へ向かって徐々に大きくなる態様とされている。   Specifically, the aerial slits S arranged in the lower vertical direction (for example, one row) at any position in the direction around the axis are slits than the aerial slits S arranged in the upper side (eg, one row). The width (the vertical width in the figure) is large. In other words, the slit width gradually increases from the upper part of the dust cylinder 5 in the vertical direction toward the lower part.

上記構成の散気装置1では、送風機からの送風により通気孔3aを介して送られてきた空気は、支持管7の外周面と散気膜31との隙間35に入り、散気膜31を膨張させて散気スリットSから被処理水中に微細気泡として拡散される。そのため、支持管7の長手方向にわたって微細気泡が均等に散気されやすくなっている。   In the air diffuser 1 having the above configuration, the air sent through the vent hole 3a by the air blown from the blower enters the gap 35 between the outer peripheral surface of the support tube 7 and the air diffuser film 31, and the air diffuser film 31 passes through the air diffuser film 31. It is expanded and diffused as fine bubbles from the air diffusion slit S into the water to be treated. Therefore, fine bubbles are easily diffused evenly over the longitudinal direction of the support tube 7.

特に、本実施形態では、軸線方向に複数並設された散気スリットSの開口面積の合計について、鉛直方向下側の並びの合計のほうが、これより上側の並びの合計よりも大きくなるように散気スリットSが形成されているため、水圧の高い下側の散気孔からの発泡が容易となり、水圧の低い上側と同程度に発泡する。このため、発泡が散気面全体で均一となり、散気孔の目詰まりが防止でき、圧力損失の低減が達成される。   In particular, in the present embodiment, regarding the total of the opening areas of the plurality of aeration slits S arranged in parallel in the axial direction, the total of the arrangement in the lower side in the vertical direction is larger than the total of the arrangement in the upper side. Since the air diffusion slit S is formed, foaming from the lower air diffusion hole having a high water pressure is facilitated, and foaming is performed to the same extent as the upper side having a low water pressure. For this reason, foaming is uniform over the entire air diffusion surface, clogging of the air diffusion holes can be prevented, and a reduction in pressure loss is achieved.

また、従来は、発泡させる空気量が少ない場合(送風機の駆動回転数を低く設定している場合)等においては、水圧の低い上側の散気孔からの発泡のみで水圧の高い下側の散気孔からの発泡が不十分で、下側の散気孔に目詰まりが発生しやすかったが、本実施形態によれば、発泡させる空気量が少ない場合等であっても発泡が散気面全体で均一とすることができるため、そのような問題が生じにくい。   Further, conventionally, when the amount of air to be foamed is small (when the driving speed of the blower is set low), the lower air diffuser with a high water pressure only by foaming from the upper air diffuser with a low water pressure. However, according to the present embodiment, even if the amount of air to be foamed is small, the foam is uniform over the entire diffused surface. Therefore, such a problem is unlikely to occur.

また、例えばメンテナンス等により、送風機からの送風を停止した場合には、散気膜31は、散気膜31自体の伸縮性(弾性)と、被処理水の圧力により散気スリットSが閉じた状態で支持管7に密着する。このとき、散気膜31の伸縮性により散気スリットSの開口が狭くなるため、散気装置1の運転停止時における散気スリットSの目詰まりが一層防止される。   For example, when the blowing from the blower is stopped due to maintenance or the like, the diffuser film 31 is closed by the stretchability (elasticity) of the diffuser film 31 itself and the pressure of the water to be treated. In close contact with the support tube 7. At this time, since the opening of the air diffusion slit S becomes narrow due to the stretchability of the air diffusion film 31, clogging of the air diffusion slit S when the operation of the air diffusion device 1 is stopped is further prevented.

本実施形態の散気筒5は、上述のように、散気筒5の散気面全体から均一に発泡され、散気孔Sの目詰まりが防止でき、圧力損失の低減を達成することができるため、排水を好気性微生物により浄化する好気槽に対して好適に用いることができる。   Since the diffuser cylinder 5 of the present embodiment is uniformly foamed from the entire diffuser surface of the diffuser cylinder 5 as described above, clogging of the diffuser holes S can be prevented, and a reduction in pressure loss can be achieved. It can be suitably used for an aerobic tank that purifies wastewater with an aerobic microorganism.

以上、本発明の好適な実施形態について説明したが、本発明は上記実施形態に何ら限定されるものではない。例えば、図3では、開口面積の合計に関して、散気筒を設置したときの鉛直方向下側の並びの合計のほうをこれより上側の並びの合計よりも大きくさせる手段として、スリット幅を調整する態様を示したが、孔を構成するスリット長(図3の左右方向長)について、鉛直方向下側の並びの散気スリットのほうが、これより上側の並びの散気スリットよりも大きい態様とする手段を用いてもよい。また、スリット幅及びスリット長の両方について、鉛直方向下側の並びの散気スリットのほうが、これより上側の並びの散気スリットよりも大きくする態様としてもよい。また、散気孔がスリット状でなく円形や針穴等である場合は、孔径を大きくする態様としてもよい。更に、上記スリット幅、スリット長、及び孔径は、鉛直方向上側となる部分から下側となる部分へ向かって徐々に大きくなる態様であってもよく、段階的に大きくなる態様であってもよい。   The preferred embodiment of the present invention has been described above, but the present invention is not limited to the above embodiment. For example, in FIG. 3, with respect to the total opening area, the slit width is adjusted as a means for increasing the total of the lower alignment in the vertical direction when the spread cylinders are installed to be larger than the total of the upper alignment. However, with respect to the slit length (length in the left-right direction in FIG. 3) constituting the hole, the arrangement is such that the diffuser slits arranged in the lower vertical direction are larger than the diffuser slits arranged in the upper side. May be used. Further, with respect to both the slit width and the slit length, the diffuser slits arranged on the lower side in the vertical direction may be larger than the diffuser slits arranged on the upper side. In addition, when the diffuser holes are not slit-like but circular or needle holes, the diameter of the holes may be increased. Further, the slit width, the slit length, and the hole diameter may be gradually increased from a portion on the upper side in the vertical direction toward a portion on the lower side, or may be an embodiment in which the width is increased stepwise. .

また、鉛直方向下側の並びの散気孔は、これより上側の並びの散気孔よりも数が多い態様としてもよく、この場合、散気孔の形状等が散気筒の上側と下側とでたとえ同一である場合であっても、水圧の高い下側の散気孔からの発泡を容易なものとすることができる。   In addition, the number of the diffuser holes arranged in the lower side in the vertical direction may be larger than the number of the diffuser holes arranged in the upper side. In this case, the shape of the diffuser holes is the same between the upper side and the lower side of the diffuser cylinder. Even if they are the same, foaming from the lower air diffuser with high water pressure can be facilitated.

また、上記開口面積が本発明の構成を満たすものである限り、散気筒の材質やその剛性等は適宜変更することができる Moreover, as long as the said opening area satisfy | fills the structure of this invention, the material of the scattering cylinder, its rigidity, etc. can be changed suitably .

さらに、本発明の散気筒は、被処理水の好気性処理を行う目的に限られず、被処理水の撹拌装置としても使用することができる。すなわち本発明の散気筒によれば、上述のように散気筒の散気面全体から空気が均一に発泡し、対流が効率的に形成されるため、槽内の被処理水を効率的に撹拌することができる。   Furthermore, the dust cylinder of the present invention is not limited to the purpose of performing the aerobic treatment of the water to be treated, and can also be used as a stirring device for the water to be treated. That is, according to the diffusion cylinder of the present invention, air is uniformly foamed from the entire diffusion surface of the diffusion cylinder as described above, and convection is efficiently formed, so that the water to be treated in the tank is efficiently stirred. can do.

1…散気装置、5…散気筒、31…散気膜、S…散気スリット(散気孔)。   DESCRIPTION OF SYMBOLS 1 ... Air diffuser, 5 ... Air diffuser, 31 ... Air diffuser film, S ... Air diffuser slit (air diffuser hole).

Claims (4)

伸縮性を有する素材から成り、支持管の外周面に設けられた散気膜に軸線方向及び軸線回りに複数の散気孔が並設された散気筒であって、
前記軸線回りの方向の任意の位置において、前記軸線方向に複数並設された前記散気孔の開口面積の合計は、前記散気筒を設置したときの鉛直方向下側の並びの合計のほうが、これより上側の並びの合計よりも大きい、散気筒。
A diffusion cylinder made of a stretchable material and having a plurality of aeration holes arranged in parallel in the axial direction and around the axis on an aeration film provided on the outer peripheral surface of the support tube ,
At any position in the direction around the axis, the total opening area of the air holes arranged side by side in the axial direction is the sum of the arrangement on the lower side in the vertical direction when the diffusion cylinder is installed. Large cylinders that are larger than the sum of the upper rows.
鉛直方向下側の並びの前記散気孔は、これより上側の並びの前記散気孔よりも、孔径が大きい、又は、孔を構成するスリット長及びスリット幅の少なくとも一方が大きい、請求項1に記載の散気筒。   2. The diffused holes arranged in the lower side in the vertical direction have a larger diameter than the diffused holes arranged in the upper side, or at least one of a slit length and a slit width constituting the holes, 2. Cylinders. 鉛直方向下側の並びの前記散気孔は、これより上側の並びの前記散気孔よりも数が多い、請求項1又は2に記載の散気筒。   The diffuser cylinder according to claim 1 or 2, wherein the number of the air holes arranged in the lower side in the vertical direction is larger than the number of the air holes arranged in the upper side. 請求項1〜3のいずれか一項に記載の散気筒を備えた、好気槽。
An aerobic tank provided with the dust cylinder according to any one of claims 1 to 3.
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