ENERGY STORAGE DEVICE
An energy storage device. The energy storage device includes a battery and a processing mechanism. The processing mechanism is connected to the battery, and the processing mechanism is configured to process emissions discharged to the processing mechanism during thermal runaway of the battery when the battery experiences thermal runaway caused by abnormality.
1 . An energy storage device, comprising:
a battery; and
a processing mechanism connected to the battery, the processing mechanism being configured to process emissions discharged to the processing mechanism during thermal runaway of the battery.
2 . The energy storage device according to claim 1 , wherein the processing mechanism comprises:
a processing box connected to the battery, a processing chamber being formed inside the processing box, and the processing chamber being configured to accommodate the emissions; and
a processing unit disposed inside the processing chamber, the processing unit being configured to process the emissions.
3 . The energy storage device according to claim 2 , wherein the processing unit is configured to:
adsorb a combustible gas in the emissions;
catalyze a combustible gas in the emissions; or
ignite a combustible gas in the emissions.
4 . The energy storage device according to claim 1 , wherein the battery has a pressure relief mechanism, the pressure relief mechanism being connected to the processing mechanism, and the pressure relief mechanism being configured to release internal pressure of the battery during thermal runaway of the battery, such that the emissions inside the battery are discharged to the processing mechanism.
5 . The energy storage device according to claim 1 , wherein the emissions comprise an exhaust gas, and a percentage of a combustible gas in the exhaust gas processed by the processing mechanism is smaller than or equal to 1.2%.
6 . The energy storage device according to claim 1 , further comprising:
a cabinet;
wherein the battery is disposed inside the cabinet, and the processing mechanism is disposed inside or outside the cabinet.
7 . The energy storage device according to claim 1 , further comprising:
a flow limiting mechanism configured to limit a flow rate of the emissions discharged from the battery to the processing mechanism.
8 . The energy storage device according to claim 7 , wherein the flow limiting mechanism is a flow limiting check valve.
9 . The energy storage device according to claim 1 , further comprising:
a gas storage mechanism connected to the battery, wherein both the gas storage mechanism and the battery are connected to the processing mechanism, the gas storage mechanism being configured to buffer the emissions discharged by the battery and provide the emissions to the processing mechanism.
10 . The energy storage device according to claim 1 , wherein the energy storage device comprises a plurality of batteries, wherein all of the plurality of batteries are connected to one processing mechanism.
11 . The energy storage device according to claim 10 , further comprising:
a main pipeline connected to the processing mechanism, the main pipeline being provided with a flow limiting mechanism; and
a plurality of branch pipelines, each branch pipeline being connected to the main pipeline and one of the batteries.
12 . The energy storage device according to claim 11 , further comprising:
a gas storage mechanism connected to the branch pipelines, the gas storage mechanism being configured to buffer the emissions discharged by the battery and provide the emissions to the main pipeline.
13 . The energy storage device according to claim 12 , wherein the flow limiting mechanism has a flow limiting opening for the emissions to pass through, and a total gas volume V 1 inside the plurality of batteries, a space volume V 2 inside the gas storage mechanism, and an area S of the flow limiting opening satisfy 0.01 L/mm 2 <(V 1 +V 2 )/S<30 L/mm 2 .
14 . The energy storage device according to claim 11 , wherein the flow limiting mechanism has a flow limiting opening for the emissions to pass through, and a total electric capacity C 1 of the plurality of batteries and an area S of the flow limiting opening satisfy 0.002 Ah/mm 2 <C 1 /S<250 Ah/mm 2 .
15 . The energy storage device according to claim 11 , wherein the flow limiting mechanism is a flow limiting check valve.
16 . The energy storage device according to claim 1 , wherein the energy storage device comprises a plurality of batteries and a plurality of processing mechanisms, wherein each of the batteries is connected to one of the processing mechanisms.
17 . The energy storage device according to claim 16 , further comprising:
a plurality of communication pipelines, one of the batteries being connected to one of the processing mechanisms through one of the communication pipelines, and each communication pipeline being provided with a flow limiting mechanism.
18 . The energy storage device according to claim 17 , wherein the flow limiting mechanism has a flow limiting opening for the emissions to pass through, and a gas volume V 3 inside one of the batteries and an area S of the flow limiting opening satisfy 0.01 L/mm 2 <V 3 /S<30 L/mm 2 .
19 . The energy storage device according to claim 17 , wherein the flow limiting mechanism has a flow limiting opening for the emissions to pass through, and an electric capacity C 2 of one of the batteries and an area S of the flow limiting opening satisfy 0.002 Ah/mm 2 <C 2 /S<250 Ah/mm 2 .
20 . The energy storage device according to claim 17 , wherein the flow limiting mechanism is a flow limiting check valve.