WaterVerge
Lithium Contamination

Lithium in New York Drinking Water

Ranked by max lithium detected (µg/L) · UCMR 5 data (2023–2025) · Data from EPA SDWIS & UCMR

80
Cities Tested
80
Detected
100%
% Detected
43.4 µg/L
State Avg
▼ 0% vs national
vs National
630
Health Violations

Lithium in New York: what the data shows

New York has 80 cities with lithium data from the EPA's UCMR 5 program (2023–2025). Lithium was detected in 80 of those cities. There is currently no federal MCL or health advisory for lithium — the state average max detected level is 43.4 µg/L. Nationally, lithium is detected in roughly 28% of sampled water systems. Lithium occurs naturally in groundwater, particularly in arid western states, and is concentrated in some surface waters near industrial discharge or geothermal sources. UCMR 5 added lithium monitoring in 2023, providing the first systematic national snapshot of public-water lithium levels. At therapeutic doses (administered as a medication), lithium is used to treat bipolar disorder. Chronic low-dose exposure from drinking water has been associated in some studies with effects on thyroid function and possibly mood. The most protective state guidance value is around 60 µg/L. Reverse osmosis and ion exchange are effective removal methods.

Cities exceeding No federal MCL or HA

New York
100%
80 of 80 cities
= Exactly at national rate
National avg
100%
2808 of 2808 cities

Lithium data across New York

Each dot is a city with UCMR 5 lithium testing data. Detected cities are shown — there is no federal limit, though some states use 60 µg/L as a screening level. Size reflects population served.

New York city water quality map

All New York cities ranked by lithium level

# City Level Level Detected? Violations Grade
1 Schoharie (T) 921.0 µg/L
Detected 94
B-
2 Fallsburg (T) 335.0 µg/L
Detected 2
F
3 Fallsburg (T) 335.0 µg/L
Detected 0
A-
4 Bethlehem (T) 141.0 µg/L
Detected 12
A-
5 Scotia (V) 141.0 µg/L
Detected 3
B
6 Hempstead (T) 139.0 µg/L
Detected 14
D
7 Chenango (T) 123.0 µg/L
Detected 17
F
8 Wappinger (T) 114.0 µg/L
Detected 9
D
9 Clifton Park (T) 95.7 µg/L
Detected 4
D
10 Ulster (T) 61.7 µg/L
Detected 3
F
11 Ilion (V) 61.2 µg/L
Detected 3
C+
12 Leray (T) 50.0 µg/L
Detected 4
B+
13 Kiryas Joel (V) 35.9 µg/L
Detected 3
D+
14 Friendship (T) 32.6 µg/L
Detected 38
C+
15 Washingtonville (V) 31.1 µg/L
Detected 0
B+
16 Long Beach (C) 28.4 µg/L
Detected 3
A
17 Baldwinsville (V) 22.1 µg/L
Detected 1
A
18 Greenport (T) 21.6 µg/L
Detected 1
C-
19 Woodbury (T) 21.3 µg/L
Detected 18
C+
20 Montgomery (V) 21.1 µg/L
Detected 0
A+
21 Clarkstown (T) 19.1 µg/L
Detected 11
B-
22 Johnson City (V) 19.0 µg/L
Detected 2
A-
23 Crawford (T) 16.8 µg/L
Detected 3
C-
24 Binghamton (C) 16.5 µg/L
Detected 5
A-
25 Hyde Park (T) 15.8 µg/L
Detected 37
F
26 Harriman (V) 15.3 µg/L
Detected 22
B+
27 Hempstead (T) 14.9 µg/L
Detected 3
B
28 Bath (V) 14.3 µg/L
Detected 1
C+
29 Mount Kisco (V) 13.6 µg/L
Detected 5
A-
30 Alfred (V) 13.6 µg/L
Detected 2
C
31 Vestal (T) 13.2 µg/L
Detected 2
A-
32 Waterloo (V) 13.1 µg/L
Detected 1
A-
33 Wappinger Falls (V) 12.7 µg/L
Detected 0
B+
34 Geneva (C) 12.2 µg/L
Detected 2
A
35 Wheatland (T) 12.1 µg/L
Detected 3
B
36 Wheatland (T) 12.1 µg/L
Detected 2
B+
37 Wheatland (T) 12.1 µg/L
Detected 1
C+
38 Wheatland (T) 12.1 µg/L
Detected 3
B
39 Wheatland (T) 12.1 µg/L
Detected 1
B
40 Wheatland (T) 12.1 µg/L
Detected 4
B+
41 Wheatland (T) 12.1 µg/L
Detected 3
B
42 Wheatland (T) 12.1 µg/L
Detected 4
B+
43 Wheatland (T) 12.1 µg/L
Detected 5
C+
44 Wheatland (T) 12.1 µg/L
Detected 2
B
45 Wheatland (T) 12.1 µg/L
Detected 1
B
46 Wheatland (T) 12.1 µg/L
Detected 1
B
47 Wheatland (T) 12.1 µg/L
Detected 1
B
48 Wheatland (T) 12.1 µg/L
Detected 1
B
49 Wheatland (T) 12.1 µg/L
Detected 1
B
50 Wheatland (T) 12.1 µg/L
Detected 1
B
51 Wheatland (T) 12.1 µg/L
Detected 1
B
52 Wheatland (T) 12.1 µg/L
Detected 1
B
53 Wheatland (T) 12.1 µg/L
Detected 1
B
54 Wheatland (T) 12.1 µg/L
Detected 1
B
55 Wheatland (T) 12.1 µg/L
Detected 1
B
56 Wheatland (T) 12.1 µg/L
Detected 1
B
57 Wheatland (T) 12.1 µg/L
Detected 1
B
58 Wheatland (T) 12.1 µg/L
Detected 1
B
59 Wheatland (T) 12.1 µg/L
Detected 1
B
60 Wheatland (T) 12.1 µg/L
Detected 1
B
61 Wheatland (T) 12.1 µg/L
Detected 1
B
62 Wheatland (T) 12.1 µg/L
Detected 1
B
63 Wheatland (T) 12.1 µg/L
Detected 1
B
64 Wheatland (T) 12.1 µg/L
Detected 1
B
65 Wheatland (T) 12.1 µg/L
Detected 1
B
66 Wheatland (T) 12.1 µg/L
Detected 1
B
67 Wheatland (T) 12.1 µg/L
Detected 1
B
68 Batavia (C) 12.1 µg/L
Detected 0
A+
69 Endicott (V) 12.0 µg/L
Detected 0
A-
70 Cazenovia (V) 11.6 µg/L
Detected 0
A-
71 Walden (V) 11.5 µg/L
Detected 0
A
72 Catskill (V) 10.6 µg/L
Detected 102
F
73 Hoosick Falls (V) 10.0 µg/L
Detected 1
A-
74 Voorheesville (V) 9.8 µg/L
Detected 1
C-
75 Goshen (V) 9.6 µg/L
Detected 10
B+
76 Eaton (T) 9.2 µg/L
Detected 12
B+
77 Springville (V) 9.2 µg/L
Detected 0
A-
78 Cortlandville (T) 9.1 µg/L
Detected 2
A+
79 Gloversville (C) 9.0 µg/L
Detected 2
A-
80 Norwich (C) 9.0 µg/L
Detected 24
A

Frequently asked questions about lithium in New York

Is lithium in New York tap water harmful?

Lithium has no federal MCL or health advisory. Some state agencies use 60 µg/L as a screening level. 80 cities in New York had detectable lithium in UCMR 5 testing. Therapeutic lithium doses (used to treat bipolar disorder) are far higher than typical drinking-water levels, but chronic low-level exposure has been studied for potential thyroid and mood effects.

Where does lithium in tap water come from?

Lithium occurs naturally in groundwater, especially in arid western states with lithium-bearing geology (parts of Nevada, California, North Carolina, Texas). It can also enter water from industrial sources such as battery manufacturing, ceramics, and lithium-mining wastewater. Geothermal hot springs are another natural source.

How can I remove lithium from my drinking water?

Reverse osmosis is highly effective at removing lithium, typically reducing it by 90% or more. Ion exchange systems and distillation also work well. Standard activated carbon filters are NOT effective against lithium. If you rely on a private well in a lithium-rich geological area, consider testing.