AMD RX 6700 XT — 挖矿
AMD RX 6700 XT 每天净亏 $0.28 挖 Octopus 算力 11.7651 Mh/s 功耗 186.0 W. 这是在扣除 $0.1/kWh 电费后的结果 — 按当前行情暂未回本。
AMD RX 6700 XT 挖 Octopus 效率最高。本页包含完整的算法排行榜、联合挖矿选项、推荐矿池,以及可点击任意一行切换的历史收益图表。
此 GPU 仅有 ? GB 显存 — 大多数 AI 市场要求至少 12 GB。
每日预测
每日各收入流的胜出值 — 来自该矿机的历史记录,在 $0.1/kWh 下计算的平均值
| 周期 | /日 | /月 |
|---|---|---|
| 收入 | $0.27 | $8.02 |
|
成本
$0.1/kWh
|
$0.45 | $13.50 |
| 利润 | $-0.18 | $-5.48 |
算法收益历史 ▶ Octopus
若以 $0.1/kWh 持续挖该算法,每日净收益 $/天。点击上方任意算法可切换。
每日预测
| 周期 | /日 | /月 |
|---|---|---|
| 收入 | $0.17 | $5.10 |
|
成本
$0.1/kWh
|
$0.45 | $13.50 |
| 利润 | $-0.28 | $-8.40 |
| Coin | Algorithm | 收入 | 成本 | 利润 |
|---|---|---|---|---|
CFX
⚠
Conflux
|
Octopus
11.7651Mh · 186.0W
|
$0.17 | $0.45 | $-0.28 |
|
BEAM
⚠
Beam
|
BeamHashIII
21.69Hh · 170.0W
|
$0.09 | $0.41 | $-0.32 |
|
RVN
Ravencoin
|
KAWPOW
25.44Mh · 140.0W
|
$0.08 | $0.34 | $-0.26 |
|
AE
⚠
Aeternity
|
CuckooCycle
4.907Hh · 163.0W
|
$0.07 | $0.39 | $-0.32 |
ERG
⚠
Ergo
|
Autolykos2
89.0896Mh · 101.0W
|
$0.05 | $0.24 | $-0.19 |
|
ETC
Ethereum Classic
|
Etchash
47.0245Mh · 121.0W
|
$0.04 | $0.29 | $-0.25 |
NEXA
⚠
Nexa
|
NexaPoW
27.3079Mh · 187.0W
|
$0.02 | $0.45 | $-0.43 |
|
MONA
⚠
Monacoin
|
Lyra2REv2
62.2781Mh · 178.0W
|
$0.01 | $0.43 | $-0.42 |
KAS
Kaspa
|
KHeavyHash
236.6964Mh · 45.0W
|
— | $0.11 | — |
|
—
|
KangarooTwelve
1.9055Gh · 177.0W
|
— | $0.42 | — |
|
—
|
Equihash192_7
34.76Hh · 103.0W
|
— | $0.25 | — |
|
GRIN
⚠
Grin
|
Cuckatoo32
0.0136Hh · 207.0W
|
— | $0.50 | — |
|
—
|
BCD
20.9768Mh · 174.0W
|
— | $0.42 | — |
|
—
|
Padihash
17.1586Mh · 187.0W
|
— | $0.45 | — |
|
—
|
Phi5
7.225Hh · 185.0W
|
— | $0.44 | — |
CKB
Nervos
|
Eaglesong
868.3691Mh · 70.0W
|
— | $0.17 | — |
|
—
|
X21S
12.1882Mh · 168.0W
|
— | $0.40 | — |
|
—
|
X25X
2.4332Mh · 99.0W
|
— | $0.24 | — |
|
—
|
SHA-256csm
2.0407Gh · 88.0W
|
— | $0.21 | — |
|
—
|
X16Rv2
17.8931Mh · 90.0W
|
— | $0.22 | — |
|
—
|
Lyra2vc0ban
59.9438Mh · 159.0W
|
— | $0.38 | — |
|
—
|
Circcash
1.7841Mh · 59.0W
|
— | $0.14 | — |
|
—
|
C11
24.8285Mh · 95.0W
|
— | $0.23 | — |
|
—
|
Equihash(125,4)
33.99Hh · 183.0W
|
— | $0.44 | — |
|
—
|
Blake (2s)
6.4134Gh · 176.0W
|
— | $0.42 | — |
|
—
|
ProgPowZ
21.1574Mh · 186.0W
|
— | $0.45 | — |
|
—
|
HMQ1725
11.2425Mh · 171.0W
|
— | $0.41 | — |
|
—
|
Dedal
17.7914Mh · 184.0W
|
— | $0.44 | — |
|
—
|
GhostRider
1.316Kh · 127.0W
|
— | $0.30 | — |
|
—
|
X16RT
18.2284Mh · 166.0W
|
— | $0.40 | — |
|
—
|
BeamHashII
31.903Hh · 173.0W
|
— | $0.42 | — |
|
—
|
Mike
1.467Gh · 128.0W
|
— | $0.31 | — |
|
—
|
Radiant
587.0293Mh · 77.0W
|
— | $0.18 | — |
|
—
|
X16R
18.2042Mh · 167.0W
|
— | $0.40 | — |
|
—
|
X17
18.2041Mh · 169.0W
|
— | $0.41 | — |
|
—
|
Cuckarood29
5.63Hh · 167.0W
|
— | $0.40 | — |
|
—
|
ProgPowSERO
21.7975Mh · 158.0W
|
— | $0.38 | — |
|
VRSC
⚠
Verus
|
VerusHash
12.8129Mh · 186.0W
|
— | $0.45 | — |
|
—
|
X22i
10.011Mh · 160.0W
|
— | $0.38 | — |
|
—
|
Argon2d-16000
9.0621Kh · 190.0W
|
— | $0.46 | — |
|
—
|
SonoA
2.4413Mh · 162.0W
|
— | $0.39 | — |
|
—
|
EvrProgPow
23.2861Mh · 186.0W
|
— | $0.45 | — |
FIRO
Firo
|
FiroPoW
20.94Mh · 120.0W
|
— | $0.29 | — |
|
—
|
vProgPow
8.8132Mh · 136.0W
|
— | $0.33 | — |
|
—
|
Ethash
47.0245Mh · 121.0W
|
— | $0.29 | — |
|
VTC
⚠
Vertcoin
|
Lyra2REv3
56.6798Mh · 85.0W
|
— | $0.20 | — |
|
—
|
Cuckaroo29b
4.666Hh · 165.0W
|
— | $0.40 | — |
|
—
|
SHA256DT
2.3467Gh · 171.0W
|
— | $0.41 | — |
|
—
|
X16S
18.3109Mh · 166.0W
|
— | $0.40 | — |
|
—
|
Memehash
55.5767Mh · 123.0W
|
— | $0.30 | — |
|
—
|
Jeonghash
15.125Mh · 173.0W
|
— | $0.42 | — |
|
—
|
X17R
15.535Mh · 160.0W
|
— | $0.38 | — |
|
—
|
Pufferfish2
1.493Gh · 101.0W
|
— | $0.24 | — |
|
—
|
Cuckaroo29S
4.697Hh · 160.0W
|
— | $0.38 | — |
|
—
|
Blake3
932.1064Mh · 95.0W
|
— | $0.23 | — |
|
LTZ
⚠
Litecoinz
|
Zhash
60.2Hh · 103.0W
|
— | $0.25 | — |
|
—
|
HoneyComb
40.0658Mh · 81.0W
|
— | $0.19 | — |
|
—
|
Pawelhash
12.0676Mh · 156.0W
|
— | $0.37 | — |
|
—
|
X11k
3.2808Mh · 148.0W
|
— | $0.36 | — |
|
—
|
Astralhash
30.6633Mh · 172.0W
|
— | $0.41 | — |
|
—
|
CNReverseWaltz
1.4788Kh · 139.0W
|
— | $0.33 | — |
|
—
|
Equihash(144,5)
60.66Hh · 185.0W
|
— | $0.44 | — |
|
—
|
Tribus
104.3123Mh · 102.0W
|
— | $0.24 | — |
|
—
|
TimeTravel10
39.3285Mh · 97.0W
|
— | $0.23 | — |
|
—
|
Skein2
593.9236Mh · 97.0W
|
— | $0.23 | — |
|
—
|
0x10
24.9543Mh · 161.0W
|
— | $0.39 | — |
|
—
|
Argon2d-ninja
0.142Hh · 185.0W
|
— | $0.44 | — |
|
—
|
Equihash210_9
189.16Hh · 132.0W
|
— | $0.32 | — |
|
—
|
HeavyHash
419.171Mh · 73.0W
|
— | $0.18 | — |
|
—
|
Skydoge
18.0396Th · 185.0W
|
— | $0.44 | — |
|
—
|
Chukwa2
31.0558Kh · 186.0W
|
— | $0.45 | — |
|
—
|
Globalhash
70.7899Mh · 139.0W
|
— | $0.33 | — |
|
—
|
Hex
16.119Mh · 97.0W
|
— | $0.23 | — |
|
—
|
PHI1612
29.326Mh · 162.0W
|
— | $0.39 | — |
|
—
|
Skunkhash
32.3687Mh · 79.0W
|
— | $0.19 | — |
|
—
|
X18
13.4743Mh · 180.0W
|
— | $0.43 | — |
|
—
|
Ubqhash
43.706Mh · 158.0W
|
— | $0.38 | — |
|
—
|
Xevan
5.7983Mh · 189.0W
|
— | $0.45 | — |
|
—
|
ProgPowVeil
23.3Mh · 186.0W
|
— | $0.45 | — |
|
—
|
Chukwa
92.1977Kh · 194.0W
|
— | $0.47 | — |
|
—
|
X16RTVEIL
18.0772Mh · 158.0W
|
— | $0.38 | — |
|
—
|
Curvehash
11.0006Mh · 186.0W
|
— | $0.45 | — |
净算力市场收入历史
| 周期 | /日 | /月 |
|---|---|---|
| 收入 | $0.27 | $8.02 |
|
成本
$0.1/kWh
|
$0.45 | $13.50 |
| 利润 | $-0.18 | $-5.48 |
| Rigs × Qty | Share | Rev /rig/day | Cost /rig/day | Profit /rig/day | Total profit /day |
|---|---|---|---|---|---|
| — | — | — | — | — | — |
AMD RX 6700 XT 的回本周期
测算此设备的回本周期、电费和首年收益。
曲线穿过零点即回本。之后全是利润。
| Month | Earned (mo) | Cost burned (mo) | Cumulative earned | Cumulative cost | Net | % ROI |
|---|
按能源来源的年度排放
基于年度耗电量和常见电网的碳强度。
| 能源来源 | CO₂e / 年 |
|---|---|
| Wind | 17.68 kg |
| Nuclear | 19.28 kg |
| Hydroelectric | 38.57 kg |
| Geothermal | 61.07 kg |
| Solar | 72.32 kg |
| Biofuels | 369.62 kg |
| Gas | 787.45 kg |
| Coal | 1,317.77 kg |
仅为估算 — 实际排放因硬件、冷却和电网而异。
这意味着什么?
At the world-average grid intensity of about 475 g CO₂e/kWh, AMD RX 6700 XT running 24/7 for a year releases about 763 kg of carbon dioxide equivalent. Here's what that looks like in everyday terms:
你在哪里接电很重要
Electricity is not one thing. A kilowatt-hour from a coal plant carries roughly 820 g of CO₂; the same kilowatt-hour from a hydro reservoir carries about 24 g. That's a 34× difference — large enough that AMD RX 6700 XT's annual footprint swings from roughly 1,318 kg on coal-heavy grids down to about 39 kg on hydro-dominated grids. The single biggest lever a miner has on their carbon footprint is choosing where to plug in.
Regions commonly used for low-carbon crypto mining include Quebec and British Columbia (hydro-dominated, typically <50 g CO₂/kWh), Iceland and Norway (geothermal + hydro, often <30 g), Paraguay (Itaipú hydro), and parts of the US Pacific Northwest. Coal-heavy grids — Kazakhstan, Inner Mongolia, Poland, parts of Australia — sit at the opposite end, often above 700 g CO₂/kWh.
Some operators also reduce their net impact by using otherwise-wasted energy: flare gas at oil wells (burning methane that would be vented anyway), curtailed renewables (wind or solar that the grid can't absorb), or behind-the-meter hydro during off-peak hours. These arrangements can drop effective emissions below the local grid average because the energy would have been wasted or flared without the mining load.
如何减少该矿机的碳足迹
- Pick a greener ASIC. The efficiency column above matters as much as the grid: a 15 J/TH rig emits roughly half the CO₂ of a 30 J/TH rig for the same hashrate.
- Choose a low-carbon host. Data centres advertising hydro, geothermal, or nuclear power typically sit at <100 g CO₂/kWh.
- Look for stranded or curtailed energy. Flare-gas miners, wind-curtailment co-location, and off-peak hydro arrangements use energy that would otherwise be wasted.
- Use heat recovery. Capturing the heat for greenhouse agriculture, pool heating, or district warmth offsets fossil-fuel heating that would have been burned anyway.
- Time-shift your uptime. In grids with high daytime solar, running more during the day and less at night lowers your effective intensity even if you don't switch providers.
- Purchase verifiable offsets. Treat this as a last resort, not a substitute — and favour additional, permanent, third-party-verified projects (Gold Standard, Verra VCS).
常见问题
Yearly electricity use = rig power (W) × 24 × 365 ÷ 1000. We multiply that by each row's grid intensity in grams CO₂-equivalent per kWh and convert to kilograms. Intensities are representative averages — real emissions depend on your specific utility mix, time of day, and local transmission losses.
It depends almost entirely on where the electricity comes from. A single rig plugged into hydro in Quebec emits less over a year than an average family's two cars in a month. The same rig on a coal-dominated grid can exceed that in a few days. The hardware is the same — the grid is what changes the answer.
Network-wide estimates vary by methodology; the Cambridge Centre for Alternative Finance's Bitcoin Electricity Consumption Index is the most widely cited reference. As of recent reporting, the network's sustainable-energy share has grown as more hashrate migrates to hydro, wind, solar, and stranded-gas sites. This page just estimates a single rig — for the big picture, CCAF's dashboard is the best source.
Not directly. The rig draws the same wattage regardless of which pool it joins or how difficulty trends — so its electricity use, and therefore its emissions, stay constant. Those factors change revenue, not power consumption.
此 GPU 仅有 ? GB 显存 — 大多数 AI 市场要求至少 12 GB。
每日预测
每日各收入流的胜出值 — 来自该矿机的历史记录,在 $0.1/kWh 下计算的平均值
| 周期 | /日 | /月 |
|---|---|---|
| 收入 | $0.27 | $8.02 |
|
成本
$0.1/kWh
|
$0.45 | $13.50 |
| 利润 | $-0.18 | $-5.48 |
算法收益历史 ▶ Octopus
若以 $0.1/kWh 持续挖该算法,每日净收益 $/天。点击上方任意算法可切换。
每日预测
| 周期 | /日 | /月 |
|---|---|---|
| 收入 | $0.17 | $5.10 |
|
成本
$0.1/kWh
|
$0.45 | $13.50 |
| 利润 | $-0.28 | $-8.40 |
| Coin | Algorithm | 收入 | 成本 | 利润 |
|---|---|---|---|---|
CFX
⚠
Conflux
|
Octopus
11.7651Mh · 186.0W
|
$0.17 | $0.45 | $-0.28 |
|
BEAM
⚠
Beam
|
BeamHashIII
21.69Hh · 170.0W
|
$0.09 | $0.41 | $-0.32 |
|
RVN
Ravencoin
|
KAWPOW
25.44Mh · 140.0W
|
$0.08 | $0.34 | $-0.26 |
|
AE
⚠
Aeternity
|
CuckooCycle
4.907Hh · 163.0W
|
$0.07 | $0.39 | $-0.32 |
ERG
⚠
Ergo
|
Autolykos2
89.0896Mh · 101.0W
|
$0.05 | $0.24 | $-0.19 |
|
ETC
Ethereum Classic
|
Etchash
47.0245Mh · 121.0W
|
$0.04 | $0.29 | $-0.25 |
NEXA
⚠
Nexa
|
NexaPoW
27.3079Mh · 187.0W
|
$0.02 | $0.45 | $-0.43 |
|
MONA
⚠
Monacoin
|
Lyra2REv2
62.2781Mh · 178.0W
|
$0.01 | $0.43 | $-0.42 |
KAS
Kaspa
|
KHeavyHash
236.6964Mh · 45.0W
|
— | $0.11 | — |
|
—
|
KangarooTwelve
1.9055Gh · 177.0W
|
— | $0.42 | — |
|
—
|
Equihash192_7
34.76Hh · 103.0W
|
— | $0.25 | — |
|
GRIN
⚠
Grin
|
Cuckatoo32
0.0136Hh · 207.0W
|
— | $0.50 | — |
|
—
|
BCD
20.9768Mh · 174.0W
|
— | $0.42 | — |
|
—
|
Padihash
17.1586Mh · 187.0W
|
— | $0.45 | — |
|
—
|
Phi5
7.225Hh · 185.0W
|
— | $0.44 | — |
CKB
Nervos
|
Eaglesong
868.3691Mh · 70.0W
|
— | $0.17 | — |
|
—
|
X21S
12.1882Mh · 168.0W
|
— | $0.40 | — |
|
—
|
X25X
2.4332Mh · 99.0W
|
— | $0.24 | — |
|
—
|
SHA-256csm
2.0407Gh · 88.0W
|
— | $0.21 | — |
|
—
|
X16Rv2
17.8931Mh · 90.0W
|
— | $0.22 | — |
|
—
|
Lyra2vc0ban
59.9438Mh · 159.0W
|
— | $0.38 | — |
|
—
|
Circcash
1.7841Mh · 59.0W
|
— | $0.14 | — |
|
—
|
C11
24.8285Mh · 95.0W
|
— | $0.23 | — |
|
—
|
Equihash(125,4)
33.99Hh · 183.0W
|
— | $0.44 | — |
|
—
|
Blake (2s)
6.4134Gh · 176.0W
|
— | $0.42 | — |
|
—
|
ProgPowZ
21.1574Mh · 186.0W
|
— | $0.45 | — |
|
—
|
HMQ1725
11.2425Mh · 171.0W
|
— | $0.41 | — |
|
—
|
Dedal
17.7914Mh · 184.0W
|
— | $0.44 | — |
|
—
|
GhostRider
1.316Kh · 127.0W
|
— | $0.30 | — |
|
—
|
X16RT
18.2284Mh · 166.0W
|
— | $0.40 | — |
|
—
|
BeamHashII
31.903Hh · 173.0W
|
— | $0.42 | — |
|
—
|
Mike
1.467Gh · 128.0W
|
— | $0.31 | — |
|
—
|
Radiant
587.0293Mh · 77.0W
|
— | $0.18 | — |
|
—
|
X16R
18.2042Mh · 167.0W
|
— | $0.40 | — |
|
—
|
X17
18.2041Mh · 169.0W
|
— | $0.41 | — |
|
—
|
Cuckarood29
5.63Hh · 167.0W
|
— | $0.40 | — |
|
—
|
ProgPowSERO
21.7975Mh · 158.0W
|
— | $0.38 | — |
|
VRSC
⚠
Verus
|
VerusHash
12.8129Mh · 186.0W
|
— | $0.45 | — |
|
—
|
X22i
10.011Mh · 160.0W
|
— | $0.38 | — |
|
—
|
Argon2d-16000
9.0621Kh · 190.0W
|
— | $0.46 | — |
|
—
|
SonoA
2.4413Mh · 162.0W
|
— | $0.39 | — |
|
—
|
EvrProgPow
23.2861Mh · 186.0W
|
— | $0.45 | — |
FIRO
Firo
|
FiroPoW
20.94Mh · 120.0W
|
— | $0.29 | — |
|
—
|
vProgPow
8.8132Mh · 136.0W
|
— | $0.33 | — |
|
—
|
Ethash
47.0245Mh · 121.0W
|
— | $0.29 | — |
|
VTC
⚠
Vertcoin
|
Lyra2REv3
56.6798Mh · 85.0W
|
— | $0.20 | — |
|
—
|
Cuckaroo29b
4.666Hh · 165.0W
|
— | $0.40 | — |
|
—
|
SHA256DT
2.3467Gh · 171.0W
|
— | $0.41 | — |
|
—
|
X16S
18.3109Mh · 166.0W
|
— | $0.40 | — |
|
—
|
Memehash
55.5767Mh · 123.0W
|
— | $0.30 | — |
|
—
|
Jeonghash
15.125Mh · 173.0W
|
— | $0.42 | — |
|
—
|
X17R
15.535Mh · 160.0W
|
— | $0.38 | — |
|
—
|
Pufferfish2
1.493Gh · 101.0W
|
— | $0.24 | — |
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—
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Cuckaroo29S
4.697Hh · 160.0W
|
— | $0.38 | — |
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—
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Blake3
932.1064Mh · 95.0W
|
— | $0.23 | — |
|
LTZ
⚠
Litecoinz
|
Zhash
60.2Hh · 103.0W
|
— | $0.25 | — |
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—
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HoneyComb
40.0658Mh · 81.0W
|
— | $0.19 | — |
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—
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Pawelhash
12.0676Mh · 156.0W
|
— | $0.37 | — |
|
—
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X11k
3.2808Mh · 148.0W
|
— | $0.36 | — |
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—
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Astralhash
30.6633Mh · 172.0W
|
— | $0.41 | — |
|
—
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CNReverseWaltz
1.4788Kh · 139.0W
|
— | $0.33 | — |
|
—
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Equihash(144,5)
60.66Hh · 185.0W
|
— | $0.44 | — |
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—
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Tribus
104.3123Mh · 102.0W
|
— | $0.24 | — |
|
—
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TimeTravel10
39.3285Mh · 97.0W
|
— | $0.23 | — |
|
—
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Skein2
593.9236Mh · 97.0W
|
— | $0.23 | — |
|
—
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0x10
24.9543Mh · 161.0W
|
— | $0.39 | — |
|
—
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Argon2d-ninja
0.142Hh · 185.0W
|
— | $0.44 | — |
|
—
|
Equihash210_9
189.16Hh · 132.0W
|
— | $0.32 | — |
|
—
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HeavyHash
419.171Mh · 73.0W
|
— | $0.18 | — |
|
—
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Skydoge
18.0396Th · 185.0W
|
— | $0.44 | — |
|
—
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Chukwa2
31.0558Kh · 186.0W
|
— | $0.45 | — |
|
—
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Globalhash
70.7899Mh · 139.0W
|
— | $0.33 | — |
|
—
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Hex
16.119Mh · 97.0W
|
— | $0.23 | — |
|
—
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PHI1612
29.326Mh · 162.0W
|
— | $0.39 | — |
|
—
|
Skunkhash
32.3687Mh · 79.0W
|
— | $0.19 | — |
|
—
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X18
13.4743Mh · 180.0W
|
— | $0.43 | — |
|
—
|
Ubqhash
43.706Mh · 158.0W
|
— | $0.38 | — |
|
—
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Xevan
5.7983Mh · 189.0W
|
— | $0.45 | — |
|
—
|
ProgPowVeil
23.3Mh · 186.0W
|
— | $0.45 | — |
|
—
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Chukwa
92.1977Kh · 194.0W
|
— | $0.47 | — |
|
—
|
X16RTVEIL
18.0772Mh · 158.0W
|
— | $0.38 | — |
|
—
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Curvehash
11.0006Mh · 186.0W
|
— | $0.45 | — |
净算力市场收入历史
| 周期 | /日 | /月 |
|---|---|---|
| 收入 | $0.27 | $8.02 |
|
成本
$0.1/kWh
|
$0.45 | $13.50 |
| 利润 | $-0.18 | $-5.48 |
| Rigs × Qty | Share | Rev /rig/day | Cost /rig/day | Profit /rig/day | Total profit /day |
|---|---|---|---|---|---|
| — | — | — | — | — | — |
AMD RX 6700 XT 的回本周期
测算此设备的回本周期、电费和首年收益。
曲线穿过零点即回本。之后全是利润。
| Month | Earned (mo) | Cost burned (mo) | Cumulative earned | Cumulative cost | Net | % ROI |
|---|
按能源来源的年度排放
基于年度耗电量和常见电网的碳强度。
| 能源来源 | CO₂e / 年 |
|---|---|
| Wind | 17.68 kg |
| Nuclear | 19.28 kg |
| Hydroelectric | 38.57 kg |
| Geothermal | 61.07 kg |
| Solar | 72.32 kg |
| Biofuels | 369.62 kg |
| Gas | 787.45 kg |
| Coal | 1,317.77 kg |
仅为估算 — 实际排放因硬件、冷却和电网而异。
这意味着什么?
At the world-average grid intensity of about 475 g CO₂e/kWh, AMD RX 6700 XT running 24/7 for a year releases about 763 kg of carbon dioxide equivalent. Here's what that looks like in everyday terms:
你在哪里接电很重要
Electricity is not one thing. A kilowatt-hour from a coal plant carries roughly 820 g of CO₂; the same kilowatt-hour from a hydro reservoir carries about 24 g. That's a 34× difference — large enough that AMD RX 6700 XT's annual footprint swings from roughly 1,318 kg on coal-heavy grids down to about 39 kg on hydro-dominated grids. The single biggest lever a miner has on their carbon footprint is choosing where to plug in.
Regions commonly used for low-carbon crypto mining include Quebec and British Columbia (hydro-dominated, typically <50 g CO₂/kWh), Iceland and Norway (geothermal + hydro, often <30 g), Paraguay (Itaipú hydro), and parts of the US Pacific Northwest. Coal-heavy grids — Kazakhstan, Inner Mongolia, Poland, parts of Australia — sit at the opposite end, often above 700 g CO₂/kWh.
Some operators also reduce their net impact by using otherwise-wasted energy: flare gas at oil wells (burning methane that would be vented anyway), curtailed renewables (wind or solar that the grid can't absorb), or behind-the-meter hydro during off-peak hours. These arrangements can drop effective emissions below the local grid average because the energy would have been wasted or flared without the mining load.
如何减少该矿机的碳足迹
- Pick a greener ASIC. The efficiency column above matters as much as the grid: a 15 J/TH rig emits roughly half the CO₂ of a 30 J/TH rig for the same hashrate.
- Choose a low-carbon host. Data centres advertising hydro, geothermal, or nuclear power typically sit at <100 g CO₂/kWh.
- Look for stranded or curtailed energy. Flare-gas miners, wind-curtailment co-location, and off-peak hydro arrangements use energy that would otherwise be wasted.
- Use heat recovery. Capturing the heat for greenhouse agriculture, pool heating, or district warmth offsets fossil-fuel heating that would have been burned anyway.
- Time-shift your uptime. In grids with high daytime solar, running more during the day and less at night lowers your effective intensity even if you don't switch providers.
- Purchase verifiable offsets. Treat this as a last resort, not a substitute — and favour additional, permanent, third-party-verified projects (Gold Standard, Verra VCS).
常见问题
Yearly electricity use = rig power (W) × 24 × 365 ÷ 1000. We multiply that by each row's grid intensity in grams CO₂-equivalent per kWh and convert to kilograms. Intensities are representative averages — real emissions depend on your specific utility mix, time of day, and local transmission losses.
It depends almost entirely on where the electricity comes from. A single rig plugged into hydro in Quebec emits less over a year than an average family's two cars in a month. The same rig on a coal-dominated grid can exceed that in a few days. The hardware is the same — the grid is what changes the answer.
Network-wide estimates vary by methodology; the Cambridge Centre for Alternative Finance's Bitcoin Electricity Consumption Index is the most widely cited reference. As of recent reporting, the network's sustainable-energy share has grown as more hashrate migrates to hydro, wind, solar, and stranded-gas sites. This page just estimates a single rig — for the big picture, CCAF's dashboard is the best source.
Not directly. The rig draws the same wattage regardless of which pool it joins or how difficulty trends — so its electricity use, and therefore its emissions, stay constant. Those factors change revenue, not power consumption.