Bag house filters and media
A bag filter having a support structure clothed in a filter bag. The cloth of the filter bag is a composite of at least one substrate layer and at least one nanoweb bonded thereto in a face-to-face relationship. The nanoweb is positioned at the surface of the filter bag first exposed to the hot particle laden gas stream and can have a basis weight of greater than about 2 gsm.
1. A bag filter comprising a support structure clothed in a filter bag, the cloth of said filter bag consisting of a composite of one substrate layer and a nanoweb layer having a basis weight of greater than about 3 gsm bonded thereto in a face-to-face relationship by needle punching, wherein the substrate layer and the nanoweb layer are needle punched on the substrate layer side with about 40 to 100 perforations/cm 2 , and 25% or less of the nanoweb layer is perforated.
2. The bag filter of claim 1 , wherein the nanoweb is positioned on the upstream side of the filter bag.
3. The bag filter of claim 1 , wherein the substrate layer and nanoweb layer remain bonded after the filter has been subjected to VDI 3926 for 30 cycles.
4. The bag filter of claim 1 , wherein the substrate layer independently comprises fiber selected from polyester fiber, carbon fiber, polyimide fiber, glass fiber, and mixtures thereof.
5. A bag filter comprising a support structure clothed in a filter bag, the cloth of said filter bag consisting of a composite of one substrate layer and a nanoweb layer having a basis weight of greater than about 3 gsm bonded thereto in a face-to-face relationship by needle punching, wherein the nanoweb is formed of nanofibers having a number average diameter of 800 nm or less, and wherein the substrate layer and the nanoweb layer are needle punched on the substrate layer side with about 40 to 100 perforations/cm 2 , and 25% or less of the nanoweb layer is perforated.