ENHANCED UV-EMITTING FLUORESCENT LAMP
An enhanced UV-emitting fluorescent lamp is described that provides a UV spectral emission for simultaneously tanning of the human skin and promotion of vitamin D production in the human body. The lamp contains a phosphor layer having a phosphor blend of three rare-earth-activated phosphors: SrB 4 O 7 :Eu, LaPO 4 :Ce and YPO 4 :Ce. Preferably, the phosphor blend comprises 25-27% SrB 4 O 7 :Eu, 23-26% LaPO 4 :Ce, and 47-52% YPO 4 :Ce by weight.
1 . An enhanced UV-emitting fluorescent lamp consisting of:
a sealed tubular envelope and at least one electrode for generating a discharge, the envelope containing an amount of mercury and having a phosphor layer on an interior surface;
wherein the phosphor layer consists essentially of a blend of three rare-earth-activated phosphors: SrB 4 O 7 :Eu, LaPO 4 :Ce and YPO 4 :Ce; and
wherein the enhanced UV spectral emission from the lamp provides for the simultaneous tanning of human skin and the promotion of vitamin D production in a human body.
2 . The enhanced UV-emitting fluorescent lamp of claim 1 , wherein the phosphor blend comprises 25-27% SrB 4 O 7 :Eu, 23-26% LaPO 4 :Ce, and 47-52% YPO 4 :Ce by weight.
3 . The lamp of claim 1 , wherein the lamp has a UV-reflective layer disposed between the phosphor layer and the lamp envelope, the UV-reflective layer extending partially around the circumference of the lamp envelope and comprising aluminum oxide.
4 . The lamp of claim 3 , wherein the UV-reflective layer extends about 180° to 240° around the circumference of the lamp envelope.
5 . The lamp of claim 4 , wherein the UV-reflective layer extends about 220° around the circumference of the lamp envelope.
6 . A UV-emitting fluorescent lamp, comprising:
a sealed tubular envelope and at least one electrode for generating a discharge, the envelope containing an amount of mercury and having a phosphor layer on an interior surface;
the phosphor layer containing a phosphor blend comprising a mixture of a SrB 4 O 7 :Eu phosphor, a LaPO 4 :Ce phosphor and a YPO 4 :Ce phosphor wherein the sum of the weight percentages of the phosphors in the blend is 100%; and
wherein the lamp, when operating, exhibits a vitamin D ratio of 1.5 to 2, a Hpi:Her ratio of 0.85 to 1, and a 0 h Te of 30 to 40 minutes.
7 . The lamp of claim 6 , wherein the phosphor blend comprises 25-27% SrB 4 O 7 :Eu, 23-26% LaPO 4 :Ce, and 47-52% YPO 4 :Ce by weight.
8 . The lamp of claim 6 , wherein the phosphor blend comprises 25.3% SrB 4 O 7 :Eu, 25.4% LaPO 4 :Ce and 49.3% YPO 4 :Ce by weight.
9 . The lamp of claim 6 , wherein the lamp has a 0 h UVA of >8000 μW/cm 2 .
10 . The lamp of claim 6 , wherein the lamp has a 100 h UVA maintenance of >85%.
11 . The lamp of claim 6 , wherein the lamp has a UV-reflective layer disposed between the phosphor layer and the lamp envelope, the UV-reflective layer extending partially around the circumference of the lamp envelope and comprising aluminum oxide.
12 . The lamp of claim 11 , wherein the UV-reflective layer extends about 180° to 240° around the circumference of the lamp envelope.
13 . The lamp of claim 12 , wherein the UV-reflective layer extends about 220° around the circumference of the lamp envelope.
14 . A UV-emitting fluorescent lamp, comprising:
a sealed tubular envelope and at least one electrode for generating a discharge, the envelope containing an amount of mercury and having a phosphor layer on an interior surface;
the phosphor layer containing a phosphor blend comprising 25-27% of a SrB 4 O 7 :Eu phosphor, 23-26% of a LaPO 4 :Ce phosphor, and 47-52% of a YPO 4 :Ce phosphor by weight, wherein the sum of the weight percentages of the phosphors in the blend is 100%.
15 . The lamp of claim 14 , wherein the phosphor blend comprises 25.3% SrB 4 O 7 :Eu, 25.4% LaPO 4 :Ce and 49.3% YPO 4 :Ce by weight.
16 . The lamp of claim 14 , wherein the lamp has a 0 h UVA of >8000 μW/cm 2 .
17 . The lamp of claim 14 , wherein the lamp has a 100 h UVA maintenance of >85%.
18 . The lamp of claim 14 , wherein the lamp has a UV-reflective layer disposed between the phosphor layer and the lamp envelope, the UV-reflective layer extending partially around the circumference of the lamp envelope and comprising aluminum oxide.
19 . The lamp of claim 18 , wherein the UV-reflective layer extends about 180° to 240° around the circumference of the lamp envelope.
20 . The lamp of claim 19 , wherein the UV-reflective layer extends about 220° around the circumference of the lamp envelope.