JP6680688B2 - モジュール式の流通式光化学反応器システム - Google Patents
モジュール式の流通式光化学反応器システム Download PDFInfo
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Description
i)中心の平面状の処理液層(30)とii)熱制御流体が内部を流れる2つの外側の平面状の熱制御流体層(40)とを各々が有する複数の流体モジュール(20)と、
複数の照射モジュール(50)と
を含むモジュール式光化学反応器システム(10)であって、
前記複数の照射モジュール(50)の各々が、第1および第2の主要な面(52,54)を有する平面状の形状を有し、前記複数の照射モジュール(50)の各々が、前記第1の主要な面(52)からまたは前記第1の主要な面(52)を通して放射するよう配置された、可視波長および/またはUV波長において放射可能な半導体エミッタ(70)の少なくとも第1のアレイ(60)を含み、該半導体エミッタ(70)の第1のアレイ(60)が、少なくとも、第1の中心波長において放射可能な第1のエミッタ(72)および該第1の中心波長と異なる第2の中心波長において放射可能な第2のエミッタ(74)を含む、モジュール式光化学反応器システム(10)。
前記第1のアレイ(60)が、少なくとも、前記第1および第2の各中心波長とは異なる第3の中心波長において放射可能な第3のエミッタ(76)を更に含む、請求項1記載のシステム(10)。
前記エミッタ(70)が、個別にパッケージされたエミッタ(78)を含む、実施形態1または2に記載のシステム(10)。
前記エミッタ(70)が、群(79)としてパッケージされたエミッタを含み、前記群(79)が、少なくとも1つの第1のエミッタ(72)および少なくとも1つの第2のエミッタ(74)を含む、実施形態1〜3のいずれか一つに記載のシステム(10)。
前記第1のアレイ(60)内の前記少なくとも1つの第1のエミッタ(72)が、第1の電源供給ラインまたは制御ライン(102a)に接続されており、前記第1のアレイ(60)内の前記少なくとも1つの第2のエミッタ(74)が、第2の電源供給ラインまたは制御ライン(102b)に接続されている、実施形態1〜4のいずれか一つに記載のシステム(10)。
前記複数の照射モジュール(50)が少なくとも1つの照射モジュール(50a)を含み、該少なくとも1つの照射モジュール(50a)が、前記第2の主要な面(54)からまたは前記第2の主要な面(54)を通して放射するよう配置された、可視波長および/またはUV波長において放射可能な半導体エミッタ(70)の第2のアレイ(80)を更に含み、該半導体エミッタ(70)の第2のアレイ(8)が、少なくとも第1のエミッタ(72)および第2のエミッタ(74)を含む、実施形態1〜5のいずれか一つに記載のシステム(10)。
前記複数の照射モジュール(50)の前記少なくとも1つの照射モジュール(50a)が、導入および排出ポート(94,96)を有する冷却流体通路(92)を内部に含む熱交換器(90)を更に含み、該熱交換器(90)が、前記第1のアレイ(60)の前記エミッタ(70)および前記第2のアレイ(80)の前記エミッタ(70)と熱的に接触している、実施形態6記載のシステム(10)。
前記複数の照射モジュール(50)の各々が、導入および排出ポート(94)を有する冷却流体通路(92)を内部に含む熱交換器(96)を更に含み、該熱交換器(96)が、前記第1のアレイ(60)の前記エミッタ(70)と熱的に接触している、実施形態1〜5のいずれか一つに記載のシステム(10)。
前記エミッタ(70)がLEDである、実施形態1〜8のいずれか一つに記載のシステム(10)。
前記LEDが、前記流体モジュール(20)の前記第1または第2の主要な面(22、24)の自由表面領域(22F、24F)に対して少なくとも40mW/cm2を供給できる、実施形態9記載のシステム(10)。
20 流体モジュール
22F、24F 自由表面領域
30 処理液層
40 熱制御流体層
50 照射モジュール
52 第1の主要な面
54 第2の主要な面
60 第1のアレイ
70 半導体エミッタ
72 第1のエミッタ
74 第2のエミッタ
76 第3のエミッタ
78 個別にパッケージされたエミッタ
79 群としてパッケージされたエミッタ
80 第2のアレイ
90 熱交換器
92 冷却流体通路
102a 第1の電源供給ラインまたは制御ライン
102b 第2の電源供給ラインまたは制御ライン
Claims (10)
- i)中心の平面状の処理液層(30)とii)熱制御流体が内部を流れる2つの外側の平面状の熱制御流体層(40)とを各々が有する複数の流体モジュール(20)と、
複数の照射モジュール(50)と
を含むモジュール式光化学反応器システム(10)であって、
前記複数の照射モジュール(50)の各々が、第1および第2の主要な面(52,54)を有する平面状の形状を有し、前記複数の照射モジュール(50)の各々が、前記第1の主要な面(52)からまたは前記第1の主要な面(52)を通して放射するよう配置されているとともに、前記流体モジュールの外側の平面状の熱制御流体層を通して前記流体モジュールの中心の平面状の処理液層に放射するよう配置された、可視波長および/またはUV波長において放射可能な半導体エミッタ(70)の少なくとも第1のアレイ(60)を含み、該半導体エミッタ(70)の第1のアレイ(60)が、少なくとも、第1の中心波長において放射可能な第1のエミッタ(72)および該第1の中心波長と異なる第2の中心波長において放射可能な第2のエミッタ(74)を含む、モジュール式光化学反応器システム(10)。 - 前記第1のアレイ(60)が、少なくとも、前記第1および第2の各中心波長とは異なる第3の中心波長において放射可能な第3のエミッタ(76)を更に含む、請求項1記載のシステム(10)。
- 前記エミッタ(70)が、個別にパッケージされたエミッタ(78)を含む、請求項1または2に記載のシステム(10)。
- 前記エミッタ(70)が、群(79)としてパッケージされたエミッタを含み、前記群(79)が、少なくとも1つの第1のエミッタ(72)および少なくとも1つの第2のエミッタ(74)を含む、請求項1〜3のいずれか一項に記載のシステム(10)。
- 前記第1のアレイ(60)内の前記少なくとも1つの第1のエミッタ(72)が、第1の電源供給ラインまたは制御ライン(102a)に接続されており、前記第1のアレイ(60)内の前記少なくとも1つの第2のエミッタ(74)が、第2の電源供給ラインまたは制御ライン(102b)に接続されている、請求項1〜4のいずれか一項に記載のシステム(10)。
- 前記複数の照射モジュール(50)が少なくとも1つの照射モジュール(50a)を含み、該少なくとも1つの照射モジュール(50a)が、前記第2の主要な面(54)からまたは前記第2の主要な面(54)を通して放射するよう配置された、可視波長および/またはUV波長において放射可能な半導体エミッタ(70)の第2のアレイ(80)を更に含み、該半導体エミッタ(70)の第2のアレイ(8)が、少なくとも第1のエミッタ(72)および第2のエミッタ(74)を含む、請求項1〜5のいずれか一項に記載のシステム(10)。
- 前記複数の照射モジュール(50)の前記少なくとも1つの照射モジュール(50a)が、導入および排出ポート(94,96)を有する冷却流体通路(92)を内部に含む熱交換器(90)を更に含み、該熱交換器(90)が、前記第1のアレイ(60)の前記エミッタ(70)および前記第2のアレイ(80)の前記エミッタ(70)と熱的に接触している、請求項6記載のシステム(10)。
- 前記複数の照射モジュール(50)の各々が、導入および排出ポート(94)を有する冷却流体通路(92)を内部に含む熱交換器(96)を更に含み、該熱交換器(96)が、前記第1のアレイ(60)の前記エミッタ(70)と熱的に接触している、請求項1〜5のいずれか一項に記載のシステム(10)。
- 前記エミッタ(70)がLEDである、請求項1〜8のいずれか一項に記載のシステム(10)。
- 前記LEDが、前記流体モジュール(20)の前記第1または第2の主要な面(22、24)の自由表面領域(22F、24F)に対して少なくとも40mW/cm2を供給できる、請求項9記載のシステム(10)。
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